Shihezi University

China

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IPC Class
G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups 4
C12N 15/81 - Vectors or expression systems specially adapted for eukaryotic hosts for fungi for yeasts 3
A01C 23/04 - Distributing under pressureDistributing mudAdaptation of watering systems for fertilising-liquids 2
A01D 45/00 - Harvesting of standing crops 2
A01G 25/02 - Watering arrangements located above the soil which make use of perforated pipe-lines or pipe-lines with dispensing fittings, e.g. for drip irrigation 2
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Registered / In Force 36
Found results for  patents

1.

Self-propelled residual film recycling integrated machine

      
Application Number 18749787
Grant Number 12250907
Status In Force
Filing Date 2024-06-21
First Publication Date 2025-03-18
Grant Date 2025-03-18
Owner
  • JANGSU UNIVERSITY (China)
  • SHIHEZI UNIVERSITY (China)
Inventor
  • Chen, Xuegeng
  • Zhou, Maile
  • Yan, Limin
  • Wen, Haojun
  • Wang, Xinzhong
  • Gou, Haixiao
  • Yin, Jianjun
  • Zhao, Yan

Abstract

A self-propelled residual film recycling integrated machine is provided, which includes a straw crushing device, a picking and impurity cleaning device, a cab, an air intake system, a film removing and conveying device, a round bale baler, a suspension system, a traveling chassis, and a film unloading bracket. The straw crushing device is assembled at a front end of the traveling chassis in a three-point suspension mode, the picking and impurity cleaning device is installed at a belly of the traveling chassis, and the film removing and conveying device is installed diagonally upwards and backwards of the picking and impurity cleaning device. The round bale baler is installed at a tail of the traveling chassis and is behind the film removing and conveying device, the film unloading bracket is installed below the round bale baler, and the suspension system is arranged on the traveling chassis.

IPC Classes  ?

  • A01G 13/02 - Protective coverings for plants; Devices for laying-out coverings
  • A01B 43/00 - Gatherers for removing stones, undesirable roots or the like from the soil, e.g. tractor-drawn rakes
  • A01F 15/07 - Rotobalers, i.e. machines for forming cylindrical bales by winding and pressing

2.

PLANT FACTORY TEMPERATURE REGULATION AND CONTROL SYSTEM AND METHOD BASED ON WASTE HEAT RECOVERY

      
Application Number CN2024114072
Publication Number 2025/040161
Status In Force
Filing Date 2024-08-23
Publication Date 2025-02-27
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • E, Reaihan
  • Chen, Cuizhong
  • Wang, Qiugang
  • Ren, Yucheng
  • Li, Junfeng
  • Liu, Shengbao
  • Lan, Mingju
  • Li, Jing
  • Jiang, Yu

Abstract

The present application relates to the field of waste heat recovery. Disclosed is a plant factory temperature regulation and control system based on waste heat recovery. The system comprises at least one heat providing area, which is used for providing a heat source, and at least one plant factory, wherein the heat providing area is connected to an evaporator I; a refrigerant is provided in the evaporator I to absorb waste heat of the heat providing area; an outlet of the evaporator I is connected to a compressor, an outlet of the compressor is connected to a condenser I, and a liquid outlet of the condenser I is connected to the evaporator I, thus implementing circulation of the refrigerant; and an air outlet of the condenser I is connected to a heat supply pipeline of the plant factory. In the present application, with regard to the problem of stable waste heat of the heat providing area such as a data center being greatly wasted while winter heating and summer cooling in the plant factory still consume a lot of energy, the waste heat of the data center can be recovered to heat the plant factory in the winter, and heat in the plant factory and the waste heat of the data center can be absorbed and supplied to surrounding buildings in the summer.

IPC Classes  ?

  • F25B 5/00 - Compression machines, plants or systems, with several evaporator circuits, e.g. for varying refrigerating capacity
  • A01G 9/24 - Devices for heating, ventilating, regulating temperature, or watering, in greenhouses, forcing-frames, or the like

3.

JUJUBE HARVESTING APPARATUS WITH ADJUSTABLE SUCTION VECTOR AND METHOD THEREFOR

      
Application Number 18761804
Status Pending
Filing Date 2024-07-02
First Publication Date 2025-01-16
Owner Shihezi University (China)
Inventor
  • Li, Jingbin
  • Li, Yang
  • Nie, Jing
  • Ding, Longpeng
  • Wang, Xianfei
  • Chao, Xuewei
  • Li, Hongwei
  • Yuan, Yichen
  • Jiang, Jiashun
  • Liu, Changguo
  • Chen, Jiguo
  • Wang, Yi

Abstract

A jujube harvesting apparatus with adjustable suction vector includes: an air duct assembly, where one end of which is arranged with an air duct inlet; a wind power device arranged on one end of the air duct assembly deviating from the air duct inlet and connected to the air duct assembly, where the wind power device is used for generating wind power; an ionization device arranged on the air duct assembly and positioned between the air duct inlet and the wind power device, where the ionization device is used for ionizing air in the air duct assembly to generate plasma; a magnetic field generating device including a first strip-shaped permanent magnet and a second strip-shaped permanent magnet; and a suction vector adjustable device including two moving assemblies, two rotating assemblies, an electromagnetic sensor component, and a control module.

IPC Classes  ?

  • A01D 46/00 - Picking of fruits, vegetables, hops, or the likeDevices for shaking trees or shrubs

4.

METHOD FOR CONTROLLING MOTION PARAMETERS OF PEPPER HARVESTER BASED ON COMBINATION OF POINT CLOUDS AND IMAGES

      
Application Number 18523943
Status Pending
Filing Date 2023-11-30
First Publication Date 2024-12-19
Owner Shihezi University (China)
Inventor
  • Qin, Xinyan
  • Lei, Jin
  • Cheng, Chenming
  • Zhang, Xinyu
  • Wang, Bingpeng
  • Jia, Wenxing
  • Zhai, Zhiyuan

Abstract

A method for controlling motion parameters of a pepper harvester based on combination of point clouds and images, including: (1) performing space-time calibration on a radar and a camera, constructing a data collection platform, and pre-processing image and point cloud data; (2) acquiring a real-time number of pepper in front of a harvester and an average height from canopies of pepper plants to soil through a point cloud, acquiring a cutting width and a pepper fruit proportion in front of the harvester through an image, and acquiring a comprehensive lowermost location of pepper fruits by combination of the point cloud and the image; (3) acquiring real-time motion parameters of the pepper harvester; and (4) controlling a real-time rotation speed, operation speed, and height of a drum using a fuzzy PID control method based on the comprehensive lowermost location of the pepper fruits and a predicted value of a feeding quantity.

IPC Classes  ?

  • A01D 45/00 - Harvesting of standing crops
  • A01B 69/00 - Steering of agricultural machines or implementsGuiding agricultural machines or implements on a desired track
  • G01S 17/86 - Combinations of lidar systems with systems other than lidar, radar or sonar, e.g. with direction finders

5.

A Monitoring And Evaluation Method For Comprehensive Evaluation Index Of Machine-Harvested Cotton Defoliation Effect And System Thereof

      
Application Number 18030888
Status Pending
Filing Date 2022-08-23
First Publication Date 2024-12-05
Owner
  • Shihezi University (China)
  • Agricultural Technology Extension Station of the Fourth Division of Xinjiang Production (China)
Inventor
  • Zhang, Ze
  • Ma, Yiru
  • Chen, Aiqun
  • Lv, Xin
  • Hou, Tongyu
  • Chen, Xiangyu
  • Ma, Lulu
  • Zhang, Qiang

Abstract

A monitoring and evaluation method for comprehensive evaluation index of machine-harvested cotton defoliation effect and system thereof relates to the field of monitoring and evaluation of cotton-harvested indexes. The RGB images of the machine-harvested cotton canopy are firstly acquired to extract visible-light vegetation index features, color component features and texture features of machine-harvested cotton canopy RGB images; the visible-light vegetation index features, color component features and texture features are input to the trained comprehensive evaluation model of machine-harvested cotton defoliation effect, to output the defoliation effect evaluation value; finally, the harvesting timing of machine-harvested cotton is determined according to the defoliation effect evaluation value. The invention can improve the accuracy and efficiency of monitoring and evaluating the comprehensive evaluation index of the machine-harvested cotton defoliation effect and provide a reference for the machine-harvested cotton defoliation effect research and the machine-harvested cotton best harvesting time determination.

IPC Classes  ?

  • G06T 7/00 - Image analysis
  • G01N 21/27 - ColourSpectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands using photo-electric detection
  • G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups
  • G06T 7/40 - Analysis of texture
  • G06T 7/90 - Determination of colour characteristics

6.

VERTICAL SIMPLE HOSE PUMP BASED ON WELDING PROCESS

      
Application Number CN2023141732
Publication Number 2024/212593
Status In Force
Filing Date 2023-12-26
Publication Date 2024-10-17
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Lixin
  • Hu, Xue
  • Wang, Mengfan
  • Zhang, Xiongye
  • Zhao, Jiawei
  • Dong, Wancheng

Abstract

A vertical simple hose pump based on a welding process, comprising a fixed plate (13) having a main shaft (11), the fixed plate (13) being mounted on the main shaft (11). Roller shafts (10) are connected to the fixed plate (13). Bearings (14) are respectively mounted at two ends of each roller shaft (10), and a roller (12) is mounted on the bearings (14). An output shaft of a helical gear reducer (3) is mounted on the main shaft (11), the helical gear reducer (3) being fitted to a rear baffle (16) welded on a round housing (1). A hose (7) is mounted on the round housing (1), the hose (7) being fixed to bosses (17) by means of fixing frames (6) using bolts (5) and nuts (4). The housing of the hose pump is free of casting, thus avoiding common defects and material waste of casting processes, simplifying the structure and reducing the weight of the hose pump. In addition, using vertical mounting saves the space for mounting.

IPC Classes  ?

  • F04B 43/12 - Machines, pumps, or pumping installations having flexible working members having peristaltic action

7.

EQUIDISTANT PIT MARKING DEVICE FOR BLUEBERRY CULTIVATION IN SOLAR GREENHOUSE

      
Application Number CN2023087727
Publication Number 2024/192825
Status In Force
Filing Date 2023-04-12
Publication Date 2024-09-26
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Shah, Sulaiman
  • Ge, Jianbing
  • Halifu, Siayaremu
  • Huang, Xiang
  • He, Mengyao

Abstract

An equidistant pit marking device for blueberry cultivation in a solar greenhouse, comprising a trigger rod (3). The trigger rod (3) is of an L-shaped structure; four groups of moving rods (307) are arranged on an inner rod (305); the moving rods (307) are of rhombic structures and are made of a plastic material; an abutting member (308) is fixed outside each group of moving rods (307) the abutting member (308) is of an annular structure; the upper side and the lower side of the outer portion of the abutting member (308) are of inclined structures; and the abutting member (308) is made of a plastic material.

IPC Classes  ?

  • A01C 14/00 - Methods or apparatus for planting not provided for in other groups of this subclass
  • B02C 1/00 - Crushing or disintegrating by reciprocating members

8.

ENGINEERED SACCHAROMYCES CEREVISIAE BACTERIUM FOR PRODUCING VANILLYLAMINE AND CONSTRUCTION METHOD THEREFOR AND USE THEREOF, AND ENGINEERED SACCHAROMYCES CEREVISIAE BACTERIUM FOR PRODUCING CAPSAICIN AND CONSTRUCTION METHOD THEREFOR AND USE THEREOF

      
Application Number CN2023086755
Publication Number 2024/178787
Status In Force
Filing Date 2023-04-07
Publication Date 2024-09-06
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Genlin
  • Li, Yuanyuan
  • Zhao, Jinyu
  • Qiu, Di
  • Zhang, Yan

Abstract

Provided are an engineered Saccharomyces cerevisiae bacterium for producing vanillylamine and a construction method therefor and a use thereof, and an engineered Saccharomyces cerevisiae bacterium for producing capsaicin and a construction method therefor and a use thereof. A synthesis pathway of heterologous expression of vanillylamine in Saccharomyces cerevisiae is realized, and the de novo biosynthesis of vanillylamine is realized. By means of precursor supply optimization and SAM circulation ring optimization, the yield of vanillylamine reaches 16.48 g/L, and the synthesis efficiency of vanillylamine is improved by nearly 155%, which is the improved optimization efficiency obtained by a SAM cofactor optimization strategy. Vanillylamine is synthesized on the basis of Saccharomyces cerevisiae, a synthesis pathway of 8-methyl-6-enoyl-CoA is heterologously constructed, and capsaicin synthase AT3 is heterologously expressed, such that the de novo biological total synthesis of capsaicin is realized, and the yield of capsaicin reaches 80.23 μg/L.

IPC Classes  ?

  • C12N 1/19 - YeastsCulture media therefor modified by introduction of foreign genetic material
  • C12N 15/81 - Vectors or expression systems specially adapted for eukaryotic hosts for fungi for yeasts
  • C12N 15/60 - Lyases (4)
  • C12N 15/52 - Genes encoding for enzymes or proenzymes
  • C12N 15/54 - Transferases (2)
  • C12P 13/00 - Preparation of nitrogen-containing organic compounds
  • C12P 13/02 - Amides, e.g. chloramphenicol
  • C12R 1/865 - Saccharomyces cerevisiae

9.

ENGINEERED SACCHAROMYCES CEREVISIAE STRAINS FOR PRODUCTION OF VANILLYLAMINE AND CAPSAICIN, AND CONSTRUCTION METHOD AND USE THEREOF

      
Application Number 18522708
Status Pending
Filing Date 2023-11-29
First Publication Date 2024-09-05
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Genlin
  • Li, Yuanyuan
  • Zhao, Jinyu
  • Qiu, Di
  • Zhang, Yan

Abstract

The present disclosure provides engineered Saccharomyces cerevisiae strains for production of vanillylamine and capsaicin, and a construction method and use thereof, and belongs to the technical field of bioengineering. In the present disclosure, a synthesis pathway of vanillylamine is expressed heterologously in Saccharomyces cerevisiae for the first time, and biosynthesis of the vanillylamine is realized for the first time. After the optimization of precursors supply and the optimization of S-adenosyl-L-methionine (SAM) cycle, a yield of the vanillylamine reaches 16.48 g/L, and a synthesis efficiency of the vanillylamine is increased by nearly 155%. This is the highest optimization efficiency obtained by optimizing the SAM cofactor strategy so far.

IPC Classes  ?

  • C12N 15/81 - Vectors or expression systems specially adapted for eukaryotic hosts for fungi for yeasts
  • C12P 13/00 - Preparation of nitrogen-containing organic compounds
  • C12P 13/02 - Amides, e.g. chloramphenicol

10.

CAPTURE METHOD AND CAPTURE STATION FOR FLUE GAS FROM CHEMICAL INDUSTRY PARK, AND APPLICATION THEREOF

      
Application Number 18648186
Status Pending
Filing Date 2024-04-26
First Publication Date 2024-08-15
Owner Shihezi University (China)
Inventor
  • Li, Zhaomin
  • Li, Xueqin
  • Li, Haojie
  • Wang, Zexin
  • Zhuang, Xiaoli

Abstract

A capture method for flue gas from a chemical industrial park is performed as follows. A flue gas is analyzed to obtain composition and ingredient content, and then pre-processed. Classified capture is performed on ingredients of a pre-processed flue gas to obtain a residual tail gas and semi-processed products. Specifically, A classified capture model is constructed and trained, and the analysis data of the pre-processed flue gas is substituted to the trained model to obtain a classified distribution result, based on which the flue gas is distributed into the capture modules according to category for classified capture.

IPC Classes  ?

  • F23J 15/00 - Arrangements of devices for treating smoke or fumes
  • F23J 15/02 - Arrangements of devices for treating smoke or fumes of purifiers, e.g. for removing noxious material

11.

PESTICIDE EMULSION HAVING LIQUID CRYSTAL STRUCTURE, PREPARATION METHOD THEREFOR AND USE THEREOF

      
Application Number CN2024072966
Publication Number 2024/153171
Status In Force
Filing Date 2024-01-18
Publication Date 2024-07-25
Owner
  • SHIHEZI UNIVERSITY (China)
  • EAST CHINA UNIVERSITY OF SCIENCE AND TECHNOLOGY (China)
  • VODA AGRICULTURAL TECHNOLOGY CO., LTD. (China)
Inventor
  • Jia, Xin
  • Li, Meng
  • Zhang, Qian
  • Shang, Yazhuo
  • Xu, Shiwu
  • Gao, Bo
  • Meng, Fancheng
  • Yan, Bo
  • Li, Danya
  • Xiong, Youpeng

Abstract

The present invention relates to a pesticide emulsion having a liquid crystal structure, a preparation method therefor and a use thereof. The emulsion comprises a pesticide active ingredient and a liquid crystal emulsifier. According to the present invention, by constructing an "onion-like" layered structure of an oil layer/liquid crystal layer/water layer (O/LC/W), the pesticide is limited and solubilized between the water layer and the oil layer, and the drug loading ratio is approximately 100%. The liquid crystal pesticide emulsion of the present invention involves a simple and green preparation process, can be prepared on a large scale, and is adapted to various pesticides; the pesticide emulsion is superior to similar traditional water dispersible pesticide formulations in terms of dispersion stability, target deposition efficiency and the like, and is particularly suitable for use in the actual complex environment.

IPC Classes  ?

12.

COMPOUND MICROBIAL FERTILIZER, AND PREPARATION METHOD AND APPLICATION THEREOF

      
Application Number 17782669
Status Pending
Filing Date 2021-09-29
First Publication Date 2024-07-18
Owner
  • SHIHEZI UNIVERSITY (China)
  • JIANGSU GUOXIN UNION ENERGY CO., LTD (China)
Inventor
  • Zhang, Fenghua
  • Zhao, Yaguang
  • Sun, Fuxin
  • Hu, Zhijie
  • Zhou, Dongjiao

Abstract

The present invention discloses a compound microbial fertilizer, comprising citric acid fermentation raffinate, Arthrobacter fermentation liquid, urea, monoammonium phosphate and potassium sulphate; the proportion of each component is: (400-600) mL:(400-600) mL:(50-80) g:(50-80) g:(40-60) g; and the pH value of the compound microbial fertilizer is adjusted to 5.5-7.0 with ammonia water. The fertilizer can increase crop yield, promote crop growth, and improve the soil.

IPC Classes  ?

  • C05B 7/00 - Fertilisers based essentially on alkali or ammonium orthophosphates

13.

Anabasis aphylla field planting device and planting method thereof

      
Application Number 18614547
Grant Number 12048264
Status In Force
Filing Date 2024-03-22
First Publication Date 2024-07-11
Grant Date 2024-07-30
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Ge, Jianbing

Abstract

Anabasis aphylla field planting device includes a frame body of a mobile machine, a planting frame and a sprinkling irrigation system. A top of the planting frame is arranged with a seedling clamping and conveying mechanism; the seedling clamping and conveying mechanism includes a conveying rod shaft, a rotary supporting and feeding piece, an autorotative driving ring piece, a clamping piece and a driving piece; and the clamping piece includes a fixed supporting rod and a U-shaped clamping body. The planting device is simple in structure and can automatically support and feed the planting seedlings; and after the planting seedlings are filled with soil and irrigated, the supporting and feeding mechanism is automatically separated from the planting seedlings, without manual operation and having high planting efficiency.

IPC Classes  ?

  • A01D 11/02 - Other hand implements for lifting or cropping beet, potatoes, or other root crops
  • A01C 11/00 - Transplanting machines
  • A01C 11/02 - Transplanting machines for seedlings
  • A01D 11/00 - Other hand implements

14.

COTTON FIELD WATER-SAVING IRRIGATION SYSTEM BASED ON MAINS-POWER-COMPLEMENTED PHOTOVOLTAIC POWER SUPPLY

      
Application Number CN2023141622
Publication Number 2024/140592
Status In Force
Filing Date 2023-12-25
Publication Date 2024-07-04
Owner
  • SHIHEZI UNIVERSITY (China)
  • BAZHOU TIANSHUN WATER SAVING IRRIGATION CO., LTD (China)
Inventor
  • Zhang, Lixin
  • Hu, Xue
  • Li, He
  • Guo, Tiansheng
  • Qiao, Tianqi
  • Zhang, Xiongye
  • Zheng, Yu
  • Wu, Xun
  • Xing, Tongtong

Abstract

The present invention belongs to the field of cotton field water-saving irrigation. Disclosed is a cotton field water-saving irrigation system based on mains-power-complemented photovoltaic power supply, the cotton field water-saving irrigation system comprising: a mains-power-complemented photovoltaic power supply system (comprising a mains power supply module, a photovoltaic power supply module and a power source switching module), an information detection system (comprising a soil humidity sensor, a flow meter, an RS-485 to UART serial port module, an information collection microcontroller and an NB-IoT wireless communication module), a valve drive control system (comprising a touch screen, an RS-232 to UART serial port module, a central microcontroller, an NB-IoT wireless communication module and an optocoupler isolation relay), an electric valve and a remote monitoring center (comprising a server, a database, a mobile phone application and a Web application). The present invention can realize complementation between mains power and a photovoltaic power supply, ensure the stable operation of a cotton field water-saving irrigation system, implement remote control over an electric valve, and monitor in real time soil humidity and irrigation water flow information.

IPC Classes  ?

  • A01G 25/16 - Control of watering
  • H02J 9/06 - Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over
  • H02J 7/35 - Parallel operation in networks using both storage and other DC sources, e.g. providing buffering with light sensitive cells
  • A01G 25/00 - Watering gardens, fields, sports grounds or the like
  • G08C 17/02 - Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link

15.

Equidistant hole marking device for blueberry cultivation in solar greenhouse

      
Application Number 18594386
Grant Number 12016261
Status In Force
Filing Date 2024-03-04
First Publication Date 2024-06-25
Grant Date 2024-06-25
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Su, Laiman
  • Ge, Jianbing
  • Halifu, Saiyaremu
  • Huang, Xiang
  • He, Mengyao

Abstract

An equidistant hole marking device for blueberry cultivation in a solar greenhouse is provided, which relates to the field of hole spacing marking technologies. The device includes a trigger rod, and the trigger rod is L-shaped. Four groups of moving rods are disposed outside an inner rod, the moving rods are diamond, and the moving rods are made of a plastic material. A circular pressing member is fixed outside each group of the moving rods, an upper side and a lower side of each circular pressing member are inclined, and the circular pressing members are made of a plastic material. When discharging powder, the moving rods and the circular pressing members are controlled to move inside a storage member, so that caked powder is crushed and discharged smoothly, thereby to improve marking efficiency.

IPC Classes  ?

  • A01C 5/02 - Hand tools for making holes for sowing, planting or manuring
  • A01C 5/04 - Machines for making or covering holes for sowing or planting
  • A01G 9/24 - Devices for heating, ventilating, regulating temperature, or watering, in greenhouses, forcing-frames, or the like
  • A01G 22/05 - Fruit crops, e.g. strawberries, tomatoes or cucumbers

16.

Anabasis aphylla

      
Application Number 18592360
Grant Number 12075725
Status In Force
Filing Date 2024-02-29
First Publication Date 2024-06-20
Grant Date 2024-09-03
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Ge, Jianbing
  • Ye, Jing

Abstract

Anabasis aphylla.

IPC Classes  ?

  • A01D 45/00 - Harvesting of standing crops
  • A01D 43/063 - Mowers combined with apparatus performing additional operations while mowing with means for collecting, gathering or loading mown material in or into a container carried by the mowerContainers therefor

17.

PIPELINE SURFACE LINING STAINLESS STEEL TYPE HYDRAULIC COMPOUND MACHINE

      
Application Number CN2023115358
Publication Number 2024/119905
Status In Force
Filing Date 2023-08-29
Publication Date 2024-06-13
Owner
  • SHIHEZI UNIVERSITY (China)
  • SHIHEZI SHENGLI HARD SURFACE ENGINEERING TECHNOLOGY CO., LTD. (China)
Inventor
  • Hu, Xue
  • Chen, Yulong
  • Zhang, Lixin
  • Dong, Feng
  • Zeng, Haifeng
  • Zhang, Shengli
  • Qu, Xinhua
  • Wang, Li
  • Xing, Tongtong
  • Xu, Bowen

Abstract

The present invention belongs to the field of pipeline surface strengthened apparatuses, and particularly relates to a pipeline surface lining stainless steel type hydraulic compound machine. Strip-shaped steel pipes and rib plates are sequentially and fixedly connected to form a frame, a lifting frame slide way is fixedly connected to the frame, a cylinder fixing plate A is fixedly connected to the lifting frame slide way, a cylinder fixing plate B is connected to the lifting frame slide way by means of a sliding wheel, one end of each of a high-pressure water pump A and a high-pressure water pump B is connected to an electric motor, the other end thereof is connected to a high-pressure water pipe, the other end of the high-pressure water pipe is fixedly connected to a compound pipe by means of a water injection head, an upper lifting frame plate is provided at an upper end of a scissor frame, a pipeline support is fixedly connected to the upper lifting frame plate, a pipe clamp matches the pipeline support, a movable water injection frame is fixedly connected to the cylinder fixing plate B, a push rod passes through a fixing plate and is fixedly connected to the movable water injection frame, a baffle is fixedly connected to the push rod, and the other end of the baffle is fixedly connected to a hydraulic cylinder C. A stainless steel lining is added into a traditional pipeline, such that the advantages of pipeline hardness, convenient transportation, easy front-and-rear connection, and excellent corrosion resistance and compression resistance of stainless steel are achieved.

IPC Classes  ?

  • B32B 37/10 - Methods or apparatus for laminating, e.g. by curing or by ultrasonic bonding characterised by the pressing technique, e.g. using direct action of vacuum or fluid pressure

18.

COMBINED WATER-FERTILIZER MIXER

      
Application Number CN2023104844
Publication Number 2024/113859
Status In Force
Filing Date 2023-06-30
Publication Date 2024-06-06
Owner
  • SHIHEZI UNIVERSITY (China)
  • TUMUSHUKE YINFENG MODERN AGRICULTURAL EQUIPMENT CO., LTD. (China)
Inventor
  • Zhang, Lixin
  • Hu, Xue
  • Zheng, Yu
  • Li, Wenchun
  • Zhao, Jiawei
  • Tan, Ling
  • Chao, Xuewei
  • Zhou, Weiji
  • Wang, Xiaoying
  • Zhu, Fenglei

Abstract

The present invention relates to the technical field of stirring devices, and in particular, to a combined water-fertilizer mixer, comprising a driving motor, a motor mounting support, a stirring tank cover, a stirring tank body, supporting legs, a liquid outlet pipe, a fertilizer inlet pipe, and a water inlet pipe. A stirring mechanism is provided inside the stirring tank body. The stirring mechanism consists of a driving stirring propeller and four driven stirring propellers. A gear transmission mechanism is provided inside the stirring tank cover and consists of a driving gear and four driven gears. When a fertilizer is to be stirred, a designed amount of fertilizer and water are fed in through the fertilizer inlet pipe and the water inlet pipe, and stirring is carried out after feeding is completed. Because of the influence of the centrifugal force generated due to the gravity and the rotation of the driving stirring propeller on a water-fertilizer solution, non-uniformity of the water-fertilizer solution may occur in stirring. The cooperation of different types of stirring blades mounted on the driving stirring propeller and driven stirring propellers can well solve the problem of non-uniformity in stirring and improve stirring efficiency.

IPC Classes  ?

  • B01F 27/90 - Mixers with rotary stirring devices in fixed receptaclesKneaders with stirrers rotating about a substantially vertical axis with paddles or arms
  • B01F 27/85 - Mixers with rotary stirring devices in fixed receptaclesKneaders with stirrers rotating about a substantially vertical axis with two or more stirrers on separate shafts
  • B01F 101/32 - Mixing fertiliser ingredients

19.

Diagnostic method and system for drip irrigation cotton with nitrogen nutrient deficit

      
Application Number 17782134
Grant Number 12210005
Status In Force
Filing Date 2021-12-21
First Publication Date 2024-05-16
Grant Date 2025-01-28
Owner Shihezi University (China)
Inventor
  • Zhang, Ze
  • Chen, Xiangyu
  • Lv, Xin
  • Zhang, Qiang
  • Ma, Lulu
  • Ma, Yiru

Abstract

The invention relates to a diagnostic method and system for drip irrigation cotton with nitrogen nutrient deficit. First, the sensitive leaf layer of cotton is determined according to the growth stage of cotton, and the spectral reflectance and biomass of each functional leaf in the sensitive leaf layer are collected to calculate average spectral reflectance of the sensitive leaf layer and the maximum leaf biomass. Then, the critical nitrogen concentration was calculated according to the maximum leaf biomass. Finally, the nitrogen nutrition index of cotton is calculated according to the nitrogen concentration and the critical nitrogen concentration. The nitrogen nutrition index is used to characterize the abundance and deficiency of nitrogen nutrition in cotton, so as to determine the abundance and deficiency of nitrogen nutrition in cotton, which can reduce the calculation amount of nitrogen nutrition index, diagnose the abundance and deficiency of nitrogen nutrition in drip irrigation cotton.

IPC Classes  ?

  • G01N 21/55 - Specular reflectivity
  • G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups

20.

LOW-COST HIGH-EFFICIENCY DRIP IRRIGATION SYSTEM FOR COTTON FIELD AND A USE METHOD THEREOF

      
Application Number 18489032
Status Pending
Filing Date 2023-12-09
First Publication Date 2024-04-18
Owner
  • Institute of Cash Crops, Xinjiang Academy of Agricultural Sciences (China)
  • Shihezi University (China)
Inventor
  • Tian, Liwen
  • Luo, Honghai
  • Dong, Hezhong
  • Zhang, Na
  • Liu, Liantao
  • Feng, Guangping
  • Wang, Zhanbiao
  • Zhang, Yanjun
  • Hao, Xianzhe
  • Li, Jin
  • Chen, Zhi
  • Zhao, Nan
  • Liu, Changwen

Abstract

Disclosed are a low-cost high-efficiency drip irrigation system for a cotton field and a use method thereof. The drip irrigation system for a cotton field includes a filtering device and a water supply device; wherein the filtering device adopts different types of single filtering devices or combined filtering devices according to different water source types; the water supply device includes multiple stages of main pipes, submain pipes and laterals; the laterals (a drip irrigation tape with labyrinth on one side or a drip irrigation tape inlaid with emitters inside) are laid on the surface of the ground and located below a mulch film. The drip irrigation system adopts the design of large flow (1.5-3.4 L/h), slightly larger pipe diameter (>75 mm), low water pressure (operating pressure of drip irrigation tape being 0.03-0.07 MPa) and suitable drip irrigation uniformity (80%-90%). The water and fertilizer management technology includes the technology of preserving seedlings in soil-moisture-insufficient cotton fields, and is matched with the drip irrigation system.

IPC Classes  ?

  • A01G 25/02 - Watering arrangements located above the soil which make use of perforated pipe-lines or pipe-lines with dispensing fittings, e.g. for drip irrigation
  • A01C 23/04 - Distributing under pressureDistributing mudAdaptation of watering systems for fertilising-liquids
  • A01G 22/50 - Cotton
  • A01G 25/16 - Control of watering

21.

Catechol Nanoparticle, Catechol Protein Nanoparticle, and Preparation Method and Use Thereof

      
Application Number 18228761
Status Pending
Filing Date 2023-08-01
First Publication Date 2024-03-21
Owner Shihezi University (China)
Inventor
  • Han, Bo
  • Fan, Jingmin
  • Yu, Hang
  • Xue, Rui
  • Guan, Jiawei
  • Xu, Yu
  • He, Linyun
  • Liu, Ji
  • Jiang, Chengyu
  • Lu, Xin
  • Kong, Xiangze
  • Yu, Wei
  • Chen, Wen

Abstract

Provided are catechol nanoparticles, catechol protein nanoparticles, and a preparation method and use thereof. The method includes: adding a tannin compound-containing natural herb medicine into water to obtain a mixture, and subjecting the mixture to heating reflux extraction to obtain a herb medicine extract and subjecting the herb medicine extract to fractionation to obtain the catechol nanoparticles.

IPC Classes  ?

  • A61K 31/05 - Phenols
  • A61K 9/14 - Particulate form, e.g. powders
  • A61K 9/51 - Nanocapsules
  • A61K 36/22 - Anacardiaceae (Sumac family), e.g. smoketree, sumac or poison oak
  • A61K 36/49 - Fagaceae (Beech family), e.g. oak or chestnut
  • A61K 36/739 - Sanguisorba (burnet)
  • A61K 38/17 - Peptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from animalsPeptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from humans
  • A61K 38/36 - Blood coagulation or fibrinolysis factors
  • A61K 38/38 - Albumins
  • A61K 38/41 - Porphyrin- or corrin-ring-containing peptides
  • A61K 38/44 - Oxidoreductases (1)
  • A61K 38/47 - Hydrolases (3) acting on glycosyl compounds (3.2), e.g. cellulases, lactases
  • A61K 38/48 - Hydrolases (3) acting on peptide bonds (3.4)
  • A61K 39/395 - AntibodiesImmunoglobulinsImmune serum, e.g. antilymphocytic serum

22.

ANABASIS APHYLLA FIELD PLANTING DEVICE AND PLANTING METHOD THEREFOR

      
Application Number CN2023074319
Publication Number 2024/045492
Status In Force
Filing Date 2023-02-03
Publication Date 2024-03-07
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Ge, Jianbing

Abstract

An Anabasis aphylla field planting device, comprising a movable rack body (1), a planting frame (2) and a sprinkling irrigation system. The middle portion of the planting frame (2) is provided with a planting seedling placement part (3); and the planting seedling placement part (3) comprises a placement strip frame (31) and a discharging channel (32). The top of the planting frame (2) is provided with a seedling grasping and transporting mechanism; the seedling grasping and transporting mechanism comprises a transporting rod shaft (4), a rotary supporting and delivering member (5), an autorotation driving ring member (8), a holding member (13) and a drive member; the transporting rod shaft (4) is vertically rotationally installed on the planting frame (2); the holding member (13) is arranged at the bottom of the rotary supporting and delivering member (5); the holding member (13) comprises a fixed support rod (131) and a U-shaped holding body (132); one end of the fixed support rod (131) is fixed on the rotary supporting and delivering member (5); and the U-shaped holding body (132) is arranged at the end of the fixed support rod (131) away from a supporting and delivering rod shaft (51). The device can automatically support and deliver planting seedlings; and after the planting seedlings are subjected to soil filling and irrigation, a supporting and delivering mechanism is automatically separated from the planting seedlings without manual operations, so that the planting efficiency is high.

IPC Classes  ?

  • A01G 23/04 - Transplanting treesDevices for grasping the root ball, e.g. stump forcepsWrappings or packages for transporting trees
  • A01G 25/09 - Watering arrangements making use of movable installations on wheels or the like
  • A01G 23/099 - Auxiliary devices, e.g. felling wedges

23.

PREPARATION METHOD FOR 2-PHENYL INDOLE DERIVATIVE AND USE OF SAME

      
Application Number CN2023077760
Publication Number 2024/027138
Status In Force
Filing Date 2023-02-23
Publication Date 2024-02-08
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Pan, Xinhui
  • Yang, Ke
  • Zhang, Ming
  • Wei, Wei
  • Liu, Qiaohui
  • Zhang, Ke
  • Yang, Caiyun
  • Chen, Guanzhong

Abstract

Disclosed are a preparation method for a 2-phenyl indole derivative and the use of same. The preparation method comprises: adding palladium acetate and copper acetate into a glacial acetic acid solution of an indole derivative of formula I and an aryl phenylboronic acid derivative of formula II, stirring same at room temperature, and performing purification to obtain a 2-phenyl indole derivative of formula III. Provided is a method for direct one-step synthesis of a 2-aryl indole compound by using an indole derivative and an aryl phenylboronic acid derivative as raw materials, wherein air is used instead of oxygen to participate in an oxidation system; the range of the R1 substituent on the indole ring is expanded, in which 5-position, 6-position and 7-position substitutions with various electron-withdrawing groups and electron-donating groups are additionally arranged, thereby further expanding the scope of substrates; the yield of electron-withdrawing group substitution for R2 on the benzene ring is increased from 53% to 87%; the substitution yield for R1 on the indole ring is increased by about 13%; and compounds with the R2 substituent being 2-methyl and 3-methoxyl and the R1 substituent being 6-chloro have good antifungal activities.

IPC Classes  ?

  • C07D 209/08 - IndolesHydrogenated indoles with only hydrogen atoms or radicals containing only hydrogen and carbon atoms, directly attached to carbon atoms of the hetero ring
  • C07D 209/12 - Radicals substituted by oxygen atoms
  • C07D 209/10 - IndolesHydrogenated indoles with substituted hydrocarbon radicals attached to carbon atoms of the hetero ring
  • C07D 405/04 - Heterocyclic compounds containing both one or more hetero rings having oxygen atoms as the only ring hetero atoms, and one or more rings having nitrogen as the only ring hetero atom containing two hetero rings directly linked by a ring-member-to-ring- member bond
  • A61P 31/04 - Antibacterial agents
  • A61P 31/10 - Antimycotics

24.

Intelligent analysis system applied to ethology of various kinds of high-density minimal polypides

      
Application Number 18449412
Grant Number 11967182
Status In Force
Filing Date 2023-08-14
First Publication Date 2023-12-14
Grant Date 2024-04-23
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Su, Jie
  • Fang, Chen
  • Zhang, Jianping
  • Gu, Jiamin

Abstract

An intelligent analysis system applied to ethology of various kinds of high-density minimal polypides is provided, including an operating platform subsystem and an analysis subsystem; the operating platform subsystem is used for providing an activity medium capable of obtaining behaviors of the minimal polypides and shooting the behaviors of the minimal polypides; the behavior collecting module in the analysis subsystem is used for obtaining an ethology video of the high-density minimal polypides through the operating platform subsystem; the analysis modeling module is used for obtaining ethology big data of various kinds of high-density minimal insects according to the ethology video, and establishing an ethology model; the simulation predicting module is used for dynamically predicting comprehensive control strategies and control effects of minimal pests in a field ecosystem according to the ethology model; the visual demonstrating module is used for displaying the above behavior data.

IPC Classes  ?

  • G06V 40/20 - Movements or behaviour, e.g. gesture recognition
  • G06T 7/80 - Analysis of captured images to determine intrinsic or extrinsic camera parameters, i.e. camera calibration
  • G06V 20/40 - ScenesScene-specific elements in video content
  • G06V 20/69 - Microscopic objects, e.g. biological cells or cellular parts
  • A01K 29/00 - Other apparatus for animal husbandry

25.

COMPREHENSIVE EVALUATION INDICATOR MONITORING AND EVALUATION METHOD AND SYSTEM FOR MACHINE-HARVESTED COTTON DEFOLIATION EFFECTS

      
Application Number CN2022114077
Publication Number 2023/197496
Status In Force
Filing Date 2022-08-23
Publication Date 2023-10-19
Owner
  • SHIHEZI UNIVERSITY (China)
  • AGRICULTURAL TECHNOLOGY EXTENSION STATION OF THE FOURTH DIVISION OF XINJIANG PRODUCTION AND CONSTRUCTION CORPS (China)
Inventor
  • Zhang, Ze
  • Ma, Yiru
  • Chen, Aiqun
  • Lv, Xin
  • Hou, Tongyu
  • Chen, Xiangyu
  • Ma, Lulu
  • Zhang, Qiang

Abstract

A comprehensive evaluation indicator monitoring and evaluation method and system for machine-harvested cotton defoliation effects, which relate to the field of cotton harvest indicator monitoring and evaluation. The method comprises: firstly, collecting an RGB image of a canopy of machine-harvested cotton (S1); extracting visible light vegetation index features, color component features and texture features of the RGB image of the canopy of the machine-harvested cotton (S2); inputting the visible light vegetation index features, the color component features and the texture features into a trained comprehensive evaluation model for machine-harvested cotton defoliation effects, and outputting a defoliation effect evaluation value (S3); and finally, determining the harvesting time of the machine-harvested cotton according to the defoliation effect evaluation value (S4). The precision and efficiency of monitoring and evaluating the comprehensive evaluation indicator of machine-harvested cotton defoliation effects can be improved, thereby providing reference for researching the machine-harvested cotton defoliation effects and determining the optimal harvesting time of the machine-harvested cotton.

IPC Classes  ?

  • G06N 3/04 - Architecture, e.g. interconnection topology
  • G06V 20/17 - Terrestrial scenes taken from planes or by drones

26.

INTELLIGENT ANALYSIS SYSTEM USED FOR ETHOLOGY OF VARIOUS HIGH-DENSITY TINY INSECTS

      
Application Number CN2023074712
Publication Number 2023/165299
Status In Force
Filing Date 2023-02-07
Publication Date 2023-09-07
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Su, Jie
  • Fang, Chen
  • Zhang, Jianping
  • Gu, Jiamin

Abstract

The present application discloses an intelligent analysis system used for ethology of various high-density tiny insects. The intelligent analysis system comprises an operation platform subsystem and an analysis subsystem. The operation platform subsystem is used for providing an activity medium that is capable of acquiring behaviors of tiny insects and capturing the behaviors of tiny insects. A behavior acquisition module in the analysis subsystem acquires an ethology video of the high-density tiny insects by means of the operation platform subsystem. An analysis modeling module, according to the ethology video, acquires ethology big data of the various high-density tiny insects and establishes an ethology model. A simulation prediction module, according to the ethology model, dynamically predicts a comprehensive prevention and treatment strategy and a prevention and treatment effect for tiny pests in a field ecosystem. A visual demonstration module is used for displaying the behavior data. The present application can accurately and efficiently acquire big data resources of tiny pest ethology and perform multi-dimensional analysis modeling, providing an advantageous tool for scientific research personnel to explore a behavior mechanism between biomes in a field ecosystem.

IPC Classes  ?

27.

CATALYST FOR PHOTOCATALYTIC REACTION FOR THE PRODUCTION OF HYDROGEN BY HYDROLYSIS AND PREPARATION METHOD THEREOF

      
Application Number 18168511
Status Pending
Filing Date 2023-02-13
First Publication Date 2023-08-24
Owner Shihezi University (China)
Inventor
  • Yang, Shengchao
  • Li, Qi
  • Liu, Zhiyong
  • Wu, Jianning
  • Meng, Guihua

Abstract

The present invention is a catalyst for a photocatalytic reaction for the production of hydrogen by hydrolysis and a preparation method thereof. A preparation method of a catalyst for a photocatalytic reaction for the production of hydrogen by hydrolysis, comprising: after dispersing the ZnO nanorods into a solvent, adding TiCl4 and water, followed by hydrothermal treatment, washing and drying to obtain a ZnO@TiO2(B) nanoflower catalyst, i.e. the catalyst. According to the present invention, a catalyst for a photocatalytic reaction for the production of hydrogen by hydrolysis and a preparation method thereof, embedding ZnO nanocrystals into a TiO2(B) lattice can improve the stability of photocatalytic hydrogen production.

IPC Classes  ?

  • B01J 21/06 - Silicon, titanium, zirconium or hafniumOxides or hydroxides thereof
  • B01J 23/06 - Catalysts comprising metals or metal oxides or hydroxides, not provided for in group of zinc, cadmium or mercury
  • B01J 35/00 - Catalysts, in general, characterised by their form or physical properties
  • B01J 37/04 - Mixing
  • B01J 37/03 - PrecipitationCo-precipitation
  • B01J 37/02 - Impregnation, coating or precipitation
  • B01J 37/06 - Washing
  • B01J 37/34 - Irradiation by, or application of, electric, magnetic or wave energy, e.g. ultrasonic waves
  • B01J 37/00 - Processes, in general, for preparing catalystsProcesses, in general, for activation of catalysts
  • C01B 3/04 - Production of hydrogen or of gaseous mixtures containing hydrogen by decomposition of inorganic compounds, e.g. ammonia

28.

USER GROUP ATTRIBUTE ANALYSIS SYSTEM AND METHOD BASED ON ONLINE NETWORK

      
Application Number CN2022122430
Publication Number 2023/138098
Status In Force
Filing Date 2022-09-29
Publication Date 2023-07-27
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Liu, Changzheng
  • Zhang, Ronghua
  • Yuan, Limengzi
  • Shao, Wenzhu
  • Liu, Yahui
  • Liu, Zhao

Abstract

The present invention relates to the technical field of network big data capture, and in particular to a user group attribute analysis system and method based on an online network. The system comprises: a system terminal which is a master control end of the system and is used for issuing an execution command for each lower-level module to execute; an implanting module used for implanting the system to a mobile device used by a user; a compatible module used for obtaining configuration data of the mobile device into which the system is implanted; and a retrieving module used for retrieving stored data in a storage space of the mobile device. The present invention provides a user group attribute analysis system based on an online network. The system can supervise, to a certain extent, electronic devices which are used by people in a student period and can be networked, and the system is hidden in the electronic devices and cannot be found, so that the conflict psychology of the students is avoided, the privacy of the students is protected, parents and teachers are assisted, the students can be cared and taught more appropriately and can be guided correctly, and healthy growth of the students can be guaranteed.

IPC Classes  ?

  • G06F 16/9535 - Search customisation based on user profiles and personalisation
  • G06F 16/9536 - Search customisation based on social or collaborative filtering
  • G06F 21/62 - Protecting access to data via a platform, e.g. using keys or access control rules
  • G06Q 50/20 - Education

29.

COMPENSATION GROWTH MOWING METHOD OF DESERT PLANT ANABASIS APHYLLA

      
Application Number CN2023074317
Publication Number 2023/072316
Status In Force
Filing Date 2023-02-03
Publication Date 2023-05-04
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jiang, Ping
  • Ge, Jianbing
  • Ye, Jing

Abstract

A compensation growth mowing method of a desert plant Anabasis aphylla, comprising the following steps: step 1, installing a frame body (7) onto a movable device; step 2, starting the movable device, and moving the apparatus to a working area; step 3, intermittently operating the movable device to enable a first push plate (21), a second baffle (22) and a second push plate (23) to form an area which is directly opposite to an appropriate number of Anabasis aphylla.

IPC Classes  ?

  • A01G 3/00 - Cutting implements specially adapted for horticultural purposesDelimbing standing trees
  • A01F 29/00 - Cutting apparatus specially adapted for cutting hay, straw or the like
  • A01D 43/00 - Mowers combined with apparatus performing additional operations while mowing

30.

CONTINUOUS FEEDING DEVICE FOR PREDATORY MITES AND FEEDING METHOD THEREFOR

      
Application Number CN2021124393
Publication Number 2023/060625
Status In Force
Filing Date 2021-10-18
Publication Date 2023-04-20
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Su, Jie
  • Zhang, Jianping
  • Cai, Zhiping

Abstract

Disclosed in the present invention is a continuous feeding device for predatory mites, comprising a feeding part and an isolation part. The feeding part is located above the isolation part, and the bottom end of the feeding part is detachably connected to the top end of the isolation part; the feeding part comprises a plurality of feeding assemblies which are sequentially arranged from top to bottom, and the top ends and the bottom ends of every two adjacent feeding assemblies are detachably connected by means of connecting pieces; each feeding assembly comprises a feeding box, a bottom mesh, and a support base which are sequentially arranged from top to bottom; the bottom end of each feeding box is fixedly connected to the top end of each bottom mesh; the bottom end of each bottom mesh is fixedly connected to the top end of each support base; the bottom end of the support base of any feeding box is detachably connected to the top end of an adjacent feeding box by means of a connecting piece; a climbing piece convenient for the predatory mites to move is provided in each feeding box; and an induction piece for inducing the predatory mites to move is provided outside each feeding box. According to the present invention, continuous feeding of the predatory mites can be achieved, the feeding number of the predatory mites is accurately controlled, and meanwhile, the number of feeding devices needed for feeding the predatory mites is reduced, thereby reducing feeding costs of the predatory mites.

IPC Classes  ?

  • A01K 67/033 - Rearing or breeding invertebrates; New breeds of invertebrates

31.

Continuous feeding device for predatory mites and feeding method thereof

      
Application Number 17955780
Grant Number 11716977
Status In Force
Filing Date 2022-09-29
First Publication Date 2023-04-13
Grant Date 2023-08-08
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Su, Jie
  • Zhang, Jianping
  • Cai, Zhiping

Abstract

A continuous feeding device for predatory mites, including a feeding part and an isolation part to solve problems existing in the prior art of accurately controlling a feeding quantity of predatory mites, and reducing a number of the feeding devices required for feeding predatory mites, thereby reducing a feeding cost of predatory mites.

IPC Classes  ?

  • A01K 67/033 - Rearing or breeding invertebrates; New breeds of invertebrates

32.

COMPOUND MICROBIAL FERTILIZER, PREPARATION METHOD THEREFOR AND APPLICATION THEREOF

      
Application Number CN2021121649
Publication Number 2023/279551
Status In Force
Filing Date 2021-09-29
Publication Date 2023-01-12
Owner
  • SHIHEZI UNIVERSITY (China)
  • JIANGSU GUOXIN UNION ENERGY CO., LTD (China)
Inventor
  • Zhang, Fenghua
  • Zhao, Yaguang
  • Sun, Fuxin
  • Hu, Zhijie
  • Zhou, Dongjiao

Abstract

Disclosed is a compound microbial fertilizer, comprising a citric acid fermentation tail liquid, an arthrobacter fermentation broth, urea, monoammonium phosphate, and potassium sulfate in the ratio of (400-600) mL:(400-600) mL:(50-80) g:(50-80) g:(40-60) g. The pH value of the compound microbial fertilizer is adjusted to 5.5-7.0 by using ammonia water. The fertilizer can increase the crop yield and promote crop growth, and has an improvement effect on soil.

IPC Classes  ?

33.

CARBON DIOXIDE FERTILIZER FOR REGULATING PLANT PHOTOSYNTHESIS, PREPARATION METHOD AND APPLICATION

      
Application Number CN2022095470
Publication Number 2023/273734
Status In Force
Filing Date 2022-05-27
Publication Date 2023-01-05
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Jia, Xin
  • Zhu, Yingqiang
  • Li, Puzhen
  • Sun, Dongsheng
  • Feng, Xiantao
  • Fang, Tianwen
  • Li, Cuihua
  • Zhang, Yali

Abstract

Provided in the present invention are a carbon dioxide fertilizer for regulating plant photosynthesis, a preparation method and an application. The carbon dioxide fertilizer of the present invention comprises an absorbent, carbon dioxide, and water; the concentration of the absorbent is 1 wt%-20 wt%; the amount of carbon dioxide absorbed is 0-8 mg/g; the carbon dioxide fertilizer comprises an oil-in-water emulsion structure; and the carbon dioxide comes from a carbon dioxide-containing gas. The carbon dioxide fertilizer prepared in the present invention can absorb carbon dioxide in flue gas and release carbon dioxide at normal temperature and pressure, and is an effective substitute for absorbents commonly used in industry. The carbon dioxide fertilizer prepared in the present invention is a liquid, which on the one hand is convenient for road and pipeline transportation, and on the other hand can be used as fertilizer for crops. It can be used in greenhouses to improve the photosynthesis of plants.

IPC Classes  ?

  • C05G 3/00 - Mixtures of one or more fertilisers with additives not having a specifically fertilising activity
  • C05G 5/27 - Dispersions, e.g. suspensions or emulsions

34.

METHOD AND SYSTEM FOR DIAGNOSING NITROGEN NUTRITION DEFICIT OF COTTON UNDER DRIP IRRIGATION

      
Application Number CN2021140107
Publication Number 2022/222522
Status In Force
Filing Date 2021-12-21
Publication Date 2022-10-27
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Ze
  • Chen, Xiangyu
  • Lv, Xin
  • Ma, Lulu
  • Zhang, Qiang

Abstract

A method and system for diagnosing the nitrogen nutrition deficit of cotton under drip irrigation. The method comprises: determining a sensitive leaf layer of cotton according to the growth stage of the cotton (S1); collecting the spectral reflectance and biomass of each functional leaf in the sensitive leaf layer, and calculating the average spectral reflectance value and the maximum leaf biomass value of the sensitive leaf layer (S2); calculating an optimized spectral index value according to the average spectral reflectance value, and calculating a nitrogen concentration according to the optimized spectral index value (S3); calculating a critical nitrogen concentration according to the maximum leaf biomass value (S4); and calculating a nitrogen nutrition index of the cotton according to the nitrogen concentration and the critical nitrogen concentration (S5), thereby determining the sufficiency and deficiency situations of the nitrogen nutrition of the cotton. By means of the method, the amount of calculation for a nitrogen nutrition index can be reduced, and the sufficiency and deficiency situations of the nitrogen nutrition of cotton under drip irrigation can be accurately and rapidly diagnosed, thereby meeting the timeliness requirements of precision agriculture production.

IPC Classes  ?

  • G01N 21/25 - ColourSpectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
  • G01N 21/55 - Specular reflectivity
  • G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups

35.

DRIP IRRIGATION EMITTER AND DRIP IRRIGATION SYSTEM

      
Application Number CN2021097582
Publication Number 2022/188277
Status In Force
Filing Date 2021-06-01
Publication Date 2022-09-15
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Wang, Zhenhua
  • Wang, Yue
  • Liu, Ningning
  • Tan, Mingdong

Abstract

A drip irrigation emitter, comprising: a water inlet (11); a water outlet (21); and a plurality of flow channel units (3) provided between the water inlet (11) and the water outlet (21), each flow channel unit (3) comprising a first main flow channel (32), a second main flow channel (35), and a plurality of branch flow channels (34) which are provided in communication with each other, the first main flow channel (32) being provided close to the water inlet (11), the second main flow channel (35) being provided close to the water outlet (21), the branch flow channels (34) being provided between the first main flow channel (32) and the second main flow channel (35), and the branch flow channels (34) being provided along the tangential direction or the radial direction of the second main flow channel (35). Also disclosed is a drip irrigation system comprising the drip irrigation emitter. The drip irrigation emitter achieves a good energy dissipation effect which is not limited by the size of a flow channel.

IPC Classes  ?

  • A01G 25/02 - Watering arrangements located above the soil which make use of perforated pipe-lines or pipe-lines with dispensing fittings, e.g. for drip irrigation

36.

METHOD FOR CONSTRUCTING BIFUNCTIONAL REGULATORY ELEMENTS CAPABLE OF BOTH PROMOTION AND TERMINATION, AND LIBRARY OF BIFUNCTIONAL ELEMENTS

      
Application Number CN2021077808
Publication Number 2022/178741
Status In Force
Filing Date 2021-02-25
Publication Date 2022-09-01
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Genlin
  • Liu, Zhengyang
  • Ni, Xiaoxia
  • Zhang, Yan

Abstract

The present invention relates to the technical field of synthetic biology. Disclosed are a method for constructing bifunctional regulatory elements capable of both promotion and termination, and a library of bifunctional elements. The construction method comprises: assembling a promoter sequence and a terminator sequence according to the principle of termination first and then promotion. The promoter sequence comprises an upstream activating sequence and a core promoter sequence, wherein the upstream activating sequence comprises Mig1/Mig2 binding sites, Rap1 binding sites, Gcr1 binding sites, weak Mig1 binding sites, a GC box, a CAAT box and an octamer box; and the core promoter sequence comprises a TATA box, a BRE element, an MTE element and an Inr element. The terminator sequence comprises an efficiency element, a position element and polyA. The bifunctional regulatory elements capable of both promotion and termination are used for pathway construction, thereby simplifying a construction process, with the pathway assembly efficiency being improved by approximately 18% compared with the prior art.

IPC Classes  ?

  • C12N 15/81 - Vectors or expression systems specially adapted for eukaryotic hosts for fungi for yeasts
  • C12N 15/113 - Non-coding nucleic acids modulating the expression of genes, e.g. antisense oligonucleotides
  • C12N 15/65 - Introduction of foreign genetic material using vectorsVectorsUse of hosts thereforRegulation of expression using markers
  • C12P 5/02 - Preparation of hydrocarbons acyclic

37.

HUMAN KLF7 GENE PROMOTER, CONSTRUCTION METHOD THEREFOR AND APPLICATION THEREOF

      
Application Number CN2021141244
Publication Number 2022/148253
Status In Force
Filing Date 2021-12-24
Publication Date 2022-07-14
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Zhiwei
  • Chen, Yuechan

Abstract

Provided are a human KLF7 gene promoter, a construction method therefor and an application thereof, which relate to the technical field of genetic engineering. The nucleotide sequence of the human KLF7 gene promoter is selected from any sequence as shown in SEQ ID NO: 1-SEQ ID NO: 18. DNA extracted from human semen is used as a template, and 18 human KLF7 promoters are acquired by using primers for PCR amplification and restriction enzyme digestion. By means of experimental verification, it is discovered that the 18 promoters all have promoter activity in chicken preadipocytes, which has great significance in revealing a regulation mechanism of the expression of a plurality of human KLF7 transcription spliceosomes and for developing drugs that target KLF7 expression, and lays the foundation for researching treatment for a plurality of human diseases regulated by the KLF7 gene.

IPC Classes  ?

  • C12N 15/113 - Non-coding nucleic acids modulating the expression of genes, e.g. antisense oligonucleotides
  • C12N 15/85 - Vectors or expression systems specially adapted for eukaryotic hosts for animal cells
  • C12N 5/10 - Cells modified by introduction of foreign genetic material, e.g. virus-transformed cells
  • C12N 15/11 - DNA or RNA fragmentsModified forms thereof
  • A61K 45/00 - Medicinal preparations containing active ingredients not provided for in groups

38.

TRANSCRIPTION FACTOR C/EBPZ FOR REGULATING ADIPOCYTE FORMATION AND APPLICATION OF TRANSCRIPTION FACTOR

      
Application Number CN2021124592
Publication Number 2022/121509
Status In Force
Filing Date 2021-10-19
Publication Date 2022-06-16
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Zhang, Zhiwei
  • Chen, Yuechan
  • Cao, Dongdong
  • Gao, Lingyu
  • Lin, Tao

Abstract

Provided are a transcription factor C/EBPZ for regulating adipocyte formation and an application of the transcription factor, and in particular, the use of the transcription factor C/EBPZ to regulate chicken adipocyte formation. An expression mode of chicken C/EBPZ in various tissues and an expression rule of C/EBPZ in a chicken adipose tissue growth and development process are disclosed by utilizing an RT-PCR technology. An overexpression vector of the transcription factor is constructed, and the C/EBPZ transcription factor is verified to regulate the differentiation and proliferation of chicken preadipocytes.

IPC Classes  ?

  • C12N 15/12 - Genes encoding animal proteins
  • C12Q 1/6888 - Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes for detection or identification of organisms

39.

Nano-antibody and its application based on SARS-CoV-2 S protein

      
Application Number 17371241
Grant Number 11820811
Status In Force
Filing Date 2021-07-09
First Publication Date 2022-03-24
Grant Date 2023-11-21
Owner Shihezi University (China)
Inventor
  • Chen, Chuangfu
  • Wu, Peng
  • Xiao, Chencheng
  • Li, Chengyao
  • Wang, Yong
  • Wang, Zhen

Abstract

A nanobody and its application based on SARS-CoV-2 S protein are provided, and the present disclosure relates to biomedical technology. The present disclosure chooses the Spike S1+S2 ECD of SARS-CoV-2 as a target, and screens the nanobody against of SARS-CoV-2 by using a nanobody library. After an ELISA test, the Spike S1+S2 ECD target of SARS-CoV-2 can be specifically identified while a SPIKE RBD target is identified, and a binding signal is relatively strong. The corresponding nanobody sequence is constructed into a prokaryotic expression vector for expression and purification to express the target nanobody successfully. After the purification, the purity is greater than 90%. The ELISA test of VHH nanobody showed that the purified nanobody has higher affinity to the two targets.

IPC Classes  ?

  • C07K 16/10 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from viruses from RNA viruses
  • G01N 33/569 - ImmunoassayBiospecific binding assayMaterials therefor for microorganisms, e.g. protozoa, bacteria, viruses

40.

Nano-antibody and its application based on SARS-CoV-2 S protein S1 subunit

      
Application Number 17371155
Grant Number 11661448
Status In Force
Filing Date 2021-07-09
First Publication Date 2022-03-24
Grant Date 2023-05-30
Owner Shihezi University (China)
Inventor
  • Chen, Chuangfu
  • Wu, Peng
  • Xiao, Chencheng
  • Li, Chengyao
  • Wang, Yong
  • Wang, Zhen

Abstract

A nanobody and its application based on SARS-CoV-2 S protein S1 subunit are provided, and the present disclosure relates to biomedical technology. The present disclosure chooses the Spike RBD of SARS-CoV-2 as a target, and screens the nanobody targeting SARS-CoV-2 by using a nanobody library. After an ELISA test, the Spike RBD target of SARS-CoV-2 can be specifically identification while a SPIKE S1+S2 ECD target is identification, and a binding signal is relatively strong. The corresponding nanobody sequence is constructed into a prokaryotic expression vector for expression and purification to express the target nanobody successfully. After purification, the purity is greater than 90%. The ELISA test of VHH nanobody showed that the purified nanobody has higher affinity to the two targets.

IPC Classes  ?

  • C07K 16/10 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from viruses from RNA viruses
  • C12N 15/70 - Vectors or expression systems specially adapted for E. coli

41.

Rapid detection system for water and impurity of machine-harvested seed cotton in purchase link

      
Application Number 17409967
Grant Number 11978190
Status In Force
Filing Date 2021-08-24
First Publication Date 2022-03-03
Grant Date 2024-05-07
Owner Shihezi University (China)
Inventor
  • Zhang, Ruoyu
  • Wan, Long
  • Jiang, Yinglan
  • Zhang, Mengyun
  • Chang, Jinqiang
  • Song, Fangdan

Abstract

A rapid detection system for water and impurity of machine-harvested seed cotton in purchase link, including: a seed cotton large-impurity-cleaning device, a seed cotton sample case, a driving and transmission device, a cotton pressing device, an image collection and processing device, and a moisture regain rate detection device and a control cabinet. The seed cotton sample case consists of a positioning plate and a high light transmittance glass case, the weighing device consists of a weighing sensor, a pallet, and an electric push rod. The driving and transmission device consists of the rollers, the motor of conveyor belts and conveyor belts, the cotton pressing device consists of an electric push rod, a connecting rod, a connecting plate, and a high light transmittance glass plate. Said rapid detection system could realize the rapid detection to the impurity rate and moisture regain rate of the seed cotton.

IPC Classes  ?

  • G06T 7/00 - Image analysis
  • B65G 17/12 - Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriersEndless-chain conveyors in which the chains form the load-carrying surface comprising a series of individual load-carriers fixed, or normally fixed, relative to traction element
  • G01N 5/00 - Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid
  • G01N 21/95 - Investigating the presence of flaws, defects or contamination characterised by the material or shape of the object to be examined
  • G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups
  • H04N 23/90 - Arrangement of cameras or camera modules, e.g. multiple cameras in TV studios or sports stadiums

42.

WATER AND FERTILIZER AIR-HEAT IRRIGATION DEVICE

      
Application Number CN2021091907
Publication Number 2021/223708
Status In Force
Filing Date 2021-05-06
Publication Date 2021-11-11
Owner SHIHEZI UNIVERSITY (China)
Inventor
  • Wang, Zhenhua
  • Wei, Chilin
  • Liu, Ningning
  • Li, Wenhao

Abstract

A water and fertilizer air-heat irrigation device, comprising: a water tank (1), a fertilizer tank (2) above the water tank (1), a water pump (3) and a heating device (7); the fertilizer tank (2) is in communication with the water tank (1) by means of fertilizer delivery pipes (11), flow control devices are provided in the fertilizer delivery pipes (11), a water level sensor is provided in the water tank (1), and the water level sensor is connected to a controller by means of an electrical signal. Said device can ensure the ratio of water to fertilizer in the water tank and achieve the purpose of continuous fertilization.

IPC Classes  ?

  • A01C 23/04 - Distributing under pressureDistributing mudAdaptation of watering systems for fertilising-liquids
  • F24H 3/04 - Air heaters with forced circulation the air being in direct contact with the heating medium, e.g. electric heating element
  • F28C 3/06 - Other direct-contact heat-exchange apparatus the heat-exchange media being a liquid and a gas or vapour
  • G05B 19/04 - Programme control other than numerical control, i.e. in sequence controllers or logic controllers

43.

Remote control device, piezoelectric laser pointer, and remote control system

      
Application Number 17119229
Grant Number 12062998
Status In Force
Filing Date 2020-12-11
First Publication Date 2021-07-01
Grant Date 2024-08-13
Owner Shihezi University (China)
Inventor
  • Gong, Lijiao
  • Zhao, Chunming
  • Zhou, Tianshuo
  • Li, Hongwei
  • Si, Jindong
  • Zhang, Xin
  • Li, Yibo
  • Hou, Weiwei
  • Qiu, Shilong
  • Yang, Jianxin
  • Chen, Xingyi

Abstract

The disclosure provides a remote control device, a piezoelectric laser pointer, and a remote control system. The remote control device includes a housing, and further includes: a power generator, mounted inside the housing and including a press mechanism and a power generating mechanism, where after being pressed by the press mechanism, the power generating mechanism is deformed under stress and generates electricity; a circuit controller, mounted inside the housing and electrically connected to the power generator; and a signal transceiver, mounted inside the housing, electrically connected to the circuit controller, and configured to transmit and receive signals. In the disclosure, the power generating mechanism generates power after being pressed by the press mechanism, and the power is transferred to the circuit controller, so that the signal transceiver is powered on. Dry batteries are no longer used, thus avoiding environmental pollution caused by used dry batteries.

IPC Classes  ?

  • H02N 2/18 - Electric machines in general using piezoelectric effect, electrostriction or magnetostriction producing electrical output from mechanical input, e.g. generators
  • H01S 3/02 - Constructional details
  • H04N 21/41 - Structure of clientStructure of client peripherals
  • H10N 30/30 - Piezoelectric or electrostrictive devices with mechanical input and electrical output, e.g. functioning as generators or sensors

44.

2 thermistor powders

      
Application Number 16809938
Grant Number 11390535
Status In Force
Filing Date 2020-03-05
First Publication Date 2021-02-25
Grant Date 2022-07-19
Owner Shihezi University (China)
Inventor
  • Chen, Long
  • Chen, Yifan
  • Fu, Haihai
  • Sun, Kaiwen
  • Zhao, Yan
  • Li, Haoquan
  • Fan, Changchun

Abstract

2 thermistor powders obtained by the method of the disclosure.

IPC Classes  ?

  • C01G 53/04 - Oxides
  • B01D 9/00 - Crystallisation
  • B01J 6/00 - CalciningFusing
  • G01K 7/22 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using resistive elements the element being a non-linear resistance, e.g. thermistor

45.

TIM-3 nanobody, a preparation method thereof, and use thereof

      
Application Number 16919500
Grant Number 11884974
Status In Force
Filing Date 2020-07-02
First Publication Date 2021-01-07
Grant Date 2024-01-30
Owner Shihezi University (China)
Inventor
  • Chen, Chuangfu
  • Wu, Peng

Abstract

GAGCGCCCAA TACGCAAACC GCCTCTCCCC GCGCGTTGGC CGATTCATTA ATGCAGCTGG CACGACAGGT TTCCCGACTG GAAAGCGGGC AGTGAGCGCA ACGCAATTAA TGTGAGTTAG CTCACTCATT AGGCACCCCA GGCTTTACAC TTTATGCTTC CGGCTCGTAT GTTGTGTGGA ATTGTGAGCG GATAACAATT TCACACAGGA AACAGCTATG ACCATGATTA CGCCAAGCTT GCATGCAAAT TCTATTTCAA GGAGACAGTC ATAATGAAAT ACCTATTGCC TACGGCAGCC GCTGGATTGT TATTACTCGC GGCCCAGCCG GCCATGGCCC AGGTGCAGCT GCAGGAGTCT AGAGGGGACC CAGGTCACCG TCTCCTCAGC GGCCGCATAC CCGTACGACG TTCCGGACTA CGGTTCCCAC CACCATCACC ATCACTAGAC TGTTGAAAGT TGTTTAGCAA AACCTCATAC AGAAAATTCA TTTACTAACG TCTGGAAAGA CGACAAAACT TTAGATCGTT ACGCTAACTA TGAGGGCTGT CTGTGGAATG CTACAGGCGT TGTGGTTTGT ACTGGTGACG AAACTCAGTG TTACGGTACA TGGGTTCCTA TTGGGCTTGC TATCCCTGAA AATGAGGGTG GTGGCTCTGA GGTGGCGGT TCTGAGGGTG GCGGTTCTGA GGGTGGCGGT ACTAAACCTC CTGAGTACGG TGATACACCT ATTCCGGGCT ATACTTATAT CAACCCTCTC GACGGCACTT ATCCGCCTGG TACTGAGCAA AACCCCGCTA ATCCTAATCC TTCTCTTGAG GAGTCTCAGC CTCTTAATAC TTTCATGTTT CAGAATAATA GGTTCCGAAA TAGGCAGGGT GCATTAACTG TTTATACGGG CACTGTTACT CAAGGCACTG ACCCCGTTAA AACTTATTAC CAGTACACTC CTGTATCATC AAAAGCCATG TATGACGCTT ACTGGAACGG TAAATTCAGA GACTGCGCTT TCCATTCTGG CTTTAATGAG GACCCATTCG TTTGTGAATA TCAAGGCCAA TCGTCTGACC TGCCTCAACC TCCTGTCAAT GCTGGCGGCG GCTCTGGTGG TGGTTCTGGT GGCGGCTCTG AGGGTGGCGG CTCTGAGGGT GGCGGTTCTG AGGGTGGCGG CTCTGAGGGT GGCGGTTCCG GTGGCGGCTC CGGTTCCGGT GATTTTGATT ATGAAAAAAT GGCAAACGCT AATAAGGGGG CTATGACCGA AAATGCCGAT GAAAACGCGC TACAGTCTGA CGCTAAAGGC AAACTTGATT CTGTCGCTAC TGATTACGGT GCTGCTATCG ATGGTTTCAT TGGTGACGTT TCCGGCCTTG CTAATGGTAA TGGTGCTACT GGTGATTTTG CTGGCTCTAA TTCCCAAATG GCTCAAGTCG GTGACGGTGA TAATTCACCT TTAATGAATA ATTTCCGTCA ATATTTACCT TCTTTGCCTC AGTCGGTTGA ATGTCGCCCT TATGTCTTTG GCGCTGGTAA ACCATATGAA TTTTCTATTG ATTGTGACAA AATAAACTTA TTCCGTGGTG TCTTTGCGTT TCTTTTATAT GTTGCCACCT TTATGTATGT ATTTTCGACG TTTGCTAACA TACTGCGTAA TAAGGAGTCT TAATAAGAAT TCACTGGCCG TCGTTTTACA ACGTCGTGAC TGGGAAAACC CTGGCGTTAC CCAACTTAAT CGCCTTGCAG CACATCCCCC TTTCGCCAGC TGGCGTAATA GCGAAGAGGC CCGCACCGAT CGCCCTTCCC AACAGTTGCG CAGCCTGAAT GGCGAATGGC GCCTGATGCG GTATTTTCTC CTTACGCATC TGTGCGGTAT TTCACACCGC ATATAAATTG TAAACGTTAA TATTTTGTTA AAATTCGCGT TAAATTTTTG TTAAATCAGC TCATTTTTTA ACCAATAGGC CGAAATCGGC AAAATCCCTT ATAAATCAAA AGAATAGCCC GAGATAGGGT TGAGTGTTGT TCCAGTTTGG AACAAGAGTC CACTATTAAA GAACGTGGAC TCCAACGTCA AAGGGCGAAA AACCGTCTAT CAGGGCGATG GCCCACTACG TGAACCATCA CCCAAATCAA GTTTTTTGGG GTCGAGGTGC CGTAAAGCAC TAAATCGGAA CCCTAAAGGG AGCCCCCGAT TTAGAGCTTG ACGGGGAAAG CCGGCGAACG TGGCGAGAAA GGAAGGGAAG AAAGCGAAAG GAGCGGGCGC TAGGGCGCTG GCAAGTGTAG CGGTCACGCT GCGCGTAACC ACCACACCCG CCGCGCTTAA TGCGCCGCTA CAGGGCGCGT ACTATGGTTG CTTTGACGGG TGCACTCTCA GTACAATCTG CTCTGATGCC GCATAGTTAA GCCAGCCCCG ACACCCGCCA ACACCCGCTG ACGCGCCCTG ACGGGCTTGT CTGCTCCCGG CATCCGCTTA CAGACAAGCT GTGACCGTCT CCGGGAGCTG CATGTGTCAG AGGTTTTCAC CGTCATCACC GAAACGCGCG AGACGAAAGG GCCTCGTGAT ACGCCTATTT TTATAGGTTA ATGTCATGAT AATAATGGTT TCTTAGACGT CAGGTGGCAC TTTTCGGGGA AATGTGCGCG GAACCCCTAT TTGTTTATTT TTCTAAATAC ATTCAAATAT GTATCCGCTC ATGAGACAAT AACCCTGATA AATGCTTCAA TAATATTGAA AAAGGAAGAG TATGAGTATT CAACATTTCC GTGTCGCCCT TATTCCCTTT TTTGCGGCAT TTTGCCTTCC TGTTTTTGCT CACCCAGAAA CGCTGGTGAA AGTAAAAGAT GCTGAAGATC AGTTGGGTGC ACGAGTGGGT TACATCGAAC TGGATCTCAA CAGCGGTAAG ATCCTTGAGA GTTTTCGCCC CGAAGAACGT TTTCCAATGA TGAGCACTTT TAAAGTTCTG CTATGTGGCG CGGTATTATC CCGTATTGAC GCCGGGCAAG AGCAACTCGG TCGCCGCATA CACTATTCTC AGAATGACTT GGTTGAGTAC TCACCAGTCA CAGAAAAGCA TCTTACGGAT GGCATGACAG TAAGAGAATT ATGCAGTGCT GCCATAACCA TGAGTGATAA CACTGCGGCC AACTTACTTC TGACAACGAT CGGAGGACCG AAGGAGCTAA CCGCTTTTTT GCACAACATG GGGGATCATG TAACTCGCCT TGATCGTTGG GAACCGGAGC TGAATGAAGC CATACCAAAC GACGAGCGTG ACACCACGAT GCCTGTAGCA ATGGCAACAA CGTTGCGCAA ACTATTAACT GGCGAACTAC TTACTCTAGC TTCCCGGCAA CAATTAATAG ACTGGATGGA GGCGGATAAA GTTGCAGGAC CACTTCTGCG CTCGGCCCTT CCGGCTGGCT GGTTTATTGC TGATAAATCT GGAGCCGGTG AGCGTGGGTC TCGCGGTATC ATTGCAGCAC TGGGGCCAGA TGGTAAGCCC TCCCGTATCG TAGTTATCTA CACGACGGGG AGTCAGGCAA CTATGGATGA ACGAAATAGA CAGATCGCTG AGATAGGTGC CTCACTGATT AAGCATTGGT AACTGTCAGA CCAAGTTTAC TCATATATAC TTTAGATTGA TTTAAAACTT CATTTTTAAT TTAAAAGGAT CTAGGTGAAG ATCCTTTTTG ATAATCTCAT GACCAAAATC CCTTAACGTG AGTTTTCGTT CCACTGAGCG TCAGACCCCG TAGAAAAGAT CAAAGGATCT TCTTGAGATC CTTTTTTTCT GCGCGTAATC TGCTGCTTGC AAACAAAAAA ACCACCGCTA CCAGCGGTGG TTTGTTTGCC GGATCAAGAG CTACCAACTC TTTTTCCGAA GGTAACTGGC TTCAGCAGAG CGCAGATACC AAATACTGTC CTTCTAGTGT AGCCGTAGTT AGGCCACCAC TTCAAGAACT CTGTAGCACC GCCTACATAC CTCGCTCTGC TAATCCTGTT ACCAGTGGCT GCTGCCAGTG GCGATAAGTC GTGTCTTACC GGGTTGGACT CAAGACGATA GTTACCGGAT AAGGCGCAGC GGTCGGGCTG AACGGGGGGT TCGTGCACAC AGCCCAGCTT GGAGCGAACG ACCTACACCG AACTGAGATA CCTACAGCGT GAGCATTGAG AAAGCGCCAC GCTTCCCGAA GGGAGAAAGG CGGACAGGTA TCCGGTAAGC GGCAGGGTCG GAACAGGAGA GCGCACGAGG GAGCTTCCAG GGGGAAACGC CTGGTATCTT TATAGTCCTG TCGGGTTTCG CCACCTCTGA CTTGAGCGTC GATTTTTGTG ATGCTCGTCA GGGGGGCGGA GCCTATGGAA AAACGCCAGC AACGCGGCCT TTTTACGGTT CCTGGCCTTT TGCTGGCCTT TTGCTCACAT GTTCTTTCCT GCGTTATCCC CTGATTCTGT GGATAACCGT ATTACCGCCT TTGAGTGAGC TGATACCGCT CGCCGCAGCC GAACGACCGA GCGCAGCGAG TCAGTGAGCG AGGAAGCGGAA

IPC Classes  ?

  • C07K 16/28 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
  • C12Q 1/686 - Polymerase chain reaction [PCR]
  • C12Q 1/6886 - Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes for diseases caused by alterations of genetic material for cancer