Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Hsieh, Hsin-Hsien
Hsu, Chih Lung
Abstract
A miniaturized image sensor packaging structure includes a carrier substrate, image sensors and a resin layer. The front side of the carrier substrate is divided into a plurality of package areas in an array configuration. The package area is equipped with a plurality of solder pad-inner circuit sets arranged in array. Through holes are formed at four corners of the package area. The image sensor is mounted on the package area with its four corners above the through holes. The resin layer is formed between the image sensor and the carrier substrate. After the package area is cut, the carrier substrate, the image sensor, the resin layer and a lens module jointly form a single image sensing module. Since the four corners of the image sensing module are protruded above the carrier substrate, the diagonal dimension of the image sensing module will be equal to the diagonal dimension of the image sensor or lens module.
H10F 39/00 - Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group , e.g. radiation detectors comprising photodiode arrays
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Chen, Jiunwei
Hsieh, Hsin-Hsien
Abstract
A carrier board with light source image module includes a substrate, a cavity, a perforated section, an image sensor, and a light-emitting device. The substrate has a first surface and a second surface, which are opposite to each other. The cavity is disposed on the substrate and has a bottom surface. The altitude of the bottom surface is lower than the first surface. The perforated section is disposed on at least a part of the cavity, penetrating the first surface and the second surface. The image sensor is partially located in the cavity and partially located in the perforated section. The altitude of the surface of the image sensor is higher than the first surface. The light-emitting device is disposed on the first surface and adjacent to the image sensor. The surface of the light-emitting device is between the first surface and the surface of the image sensor.
H01L 31/02 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof - Details
H01L 31/12 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof structurally associated with, e.g. formed in or on a common substrate with, one or more electric light sources, e.g. electroluminescent light sources, and electrically or optically coupled thereto
3.
ENDOSCOPE, EMBED-MOLDED JOINT CONNECTOR AND MANUFACTURING METHOD THEREOF
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Lee, Yu-Tsung
Lee, Chia-Jung
Fan, Yueh-Ying
Abstract
The present invention provides an endoscope, an embed-molded joint connector and a manufacturing method thereof. The embed-molded joint connector includes a plurality of joint units and a flexible wire. The joint units are hollow and arranged coaxially. A distance exists between two adjacent joint units to form a gap. The flexible wire is embedded inside the joint units and passes through them. A plurality of portions of the flexible wire is exposed in the gaps, forming bending fulcrums between the joint units. As a result, the present invention effectively simplifies the assembly process, reduces the manufacturing cost, and features radial torsional durability and axial bending functionality.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Lee, Yu-Tsung
Chuang, Keng-Han
Lai, Ching Lung
Abstract
The invention discloses a fundus imaging system, which includes an optical path folding lens set, a virtual reality display, visible light fixation lamps, an illumination module, an image sensor, and a processor. The virtual reality display and the human eye are located on different sides of the optical path folding lens set. The virtual reality display forms images on the retina of the fundus of the human eye through the optical path folding lens set. The visible light fixation lamps are sequentially turned on to guide the eyeball of the human eye to rotate. When the visible light fixation lamp is turned on, the illumination module emits illumination light through the optical path folding lens set to illuminate the retina. The retina reflects the illumination light to form fundus light. The image sensor receives fundus light through the optical path folding lens set to form a sub-fundus image. The processor stitches all sub-fundus images into a full-fundus image and drives the virtual reality display to display the full fundus image.
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Hsieh, Hsin-Hsien Hsieh
Chen, Jiunwei
Abstract
A manufacturing method of an endoscopic lens module involves arranging multiple lens barrel channels and alignment marks on a positioning base, placing lenses into the channels, and using adhesive material to fix them to form the lens module. A flat glass layer is placed on the other side of the positioning base, and the positioning base is then cut according to the alignment marks to create glue flowing runners. Light-shielding material is injected into the glue flowing runners and cured to form the array-type optical image sensor module. Finally, the light-shielding material is cut along the sidewalls of the glue flowing runners to separate the base units and create multiple optical image sensor modules of endoscopic lens assemblies. Therefore, the present invention enables the efficient mass production of high-quality optical image sensor modules of endoscopic lens assemblies and allows flexible configuration of image sensors to achieve optimal imaging results.
H04N 23/55 - Optical parts specially adapted for electronic image sensorsMounting thereof
H10F 39/00 - Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group , e.g. radiation detectors comprising photodiode arrays
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Huang, Yi-Han
Wu, Shangyi
Cheng, Chu-Ming
Abstract
The present invention provides an optical image sensor module array, an optical image sensor module, and a manufacturing method thereof. The method involves providing a lens module array formed by stacking multiple lens layers; filling an adhesive material between the lens layers for bonding; making glue runners by performing the first cut based on alignment marks; filling a light-shielding material to cover the lens units; attaching one side of an image sensor onto one surface of each lens unit to form the optical image sensor module array; and cutting the light-shielding material along the glue runners to separate the lens units and form a plurality of optical image sensor modules for endoscope lens assemblies. Therefore, the present invention enables efficient mass production of high-quality optical image sensor modules of endoscope lens assemblies and allows flexible configuration of image sensors to achieve optimal imaging performance.
H10F 39/00 - Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group , e.g. radiation detectors comprising photodiode arrays
7.
OPTICAL COHERENCE TOMOGRAPHY SYSTEM AND SCANNING DEVICE THEREOF
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Lee, Yu-Tsung
Lai, Ching Lung
Abstract
A scanning device cooperates with a host machine to form an optical coherence tomography (OCT) system. The host machine outputs a sampling light. The scanning device includes, in order from the host machine to the eyeball, a collimating lens, a variable-focus liquid lens, a microelectromechanical system-based mirror (MEMS mirror), and a scanning lens assembly, which are optically coupled to each other. The present invention features compactness and is exempted from mounting/dismounting lenses via using the variable-focus liquid lens to compensate eyeballs for different diopters and using the scanning lens assembly to switch the scanned position (the anterior or posterior region of the eyeball). In addition, the distance from the MEMS mirror to the eyeball is fixed. In other words, no matter whether the scanning device is scanning the anterior or posterior region of the eyeball, there is no need to change the distance between the tester and the scanning system.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Hsieh, Hsin-Hsien
Abstract
An image sensing device for a side-view endoscope includes a substrate having a first surface, wherein a wire connection member, an image module connection member and a light source module connection member are disposed on the first surface, and wherein the wire connection member is electrically connected with the image module connection member and the light source module connection member; an image module electrically connected with the image module connection member and configured to capture external images along a lateral-side direction of a distal tip; and a light source module electrically connected with the light source module connection member, configured to project a light source along the lateral-side direction of the distal tip. By disposing the image module and the light source module on the same surface of the substrate, the device can be applied to side-view endoscopes and has the competitive advantage of miniaturization.
G02B 23/24 - Instruments for viewing the inside of hollow bodies, e.g. fibrescopes
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Hsieh, Hsin-Hsien
Hsu, Chih Lung
Tseng, Tseng Shen
Abstract
A miniature imaging sensor illumination package includes a substrate, an illumination module, an image sensing module, and an encapsulating medium. The substrate has multiple conductive routings. The illumination module includes a supporter, a light-emitting element, and conductors. The light-emitting element is located on the top surface of the supporter. The conductors are arranged inside the supporter and correspondingly positioned under the light-emitting element. The first end of the conductor is electrically connected to the light-emitting element, and the second end is electrically connected to the conductive routings. A connection part is provided between the conductors to separately connect a part of the conductors. The image sensing module is located on the substrate and adjacent to the illumination module. The encapsulating medium is positioned between and around the illumination module and the image sensing module.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Wu, Shangyi
Abstract
A carrier-free micro light source image sensing device includes an image sensor, a light source module, and a packaging layer. The image sensor is placed on a first positioning area of a temporary carrier; the light source module is adjacent to one side of the image sensor. The light source module includes a supporter and a light-emitting element. The light source module is placed on a second positioning area of a temporary carrier. The altitude of a light-emitting face of the light source element is lower than or equal to that of a sensing face of the image sensor. The packaging layer covers the image sensor and the light source module but reveals the sensing face and the light-emitting face. The temporary carrier is removed after the packaging layer is cured. The present invention can minimize the size of the light source image sensing device, simplify the production process, improve the overall product quality, increase the signal-to-noise ratio, and enhance image quality.
H01L 31/12 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof structurally associated with, e.g. formed in or on a common substrate with, one or more electric light sources, e.g. electroluminescent light sources, and electrically or optically coupled thereto
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Fan, Yueh-Ying
Lee, Chia-Jung
Abstract
A steering joint wire rope fixing device is provided. The steering joint wire rope fixing device includes a front-end assembly, a cable and a resin. The front-end assembly includes a channel part and a groove. The channel part is located between two ends of the front-end assembly. The groove is located between one end of the front-end assembly and the channel part, and the channel part and the groove are interconnected. A part of the cable passes through the channel part and the groove. The resin is placed in the groove to fix the part of the cable located in the groove. Therefore, the invention can fix the steel cable in a limited space and reduce the overall volume. Further, the invention can prevent the cable cuts from protruding or the workpieces from falling off. Besides, the invention can decrease assembly time and reduce cost of parts and fabrication.
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Chiang, Hao Chang
Abstract
An object with a magnetic switch mechanism includes a body, a first magnetic element, a cover, and a switch component. The body has an opening and a limit slide slot, wherein the limit slide slot is located on one end of the opening. The first magnetic element is set inside the body and close to the opening. The cover is attached to another end of the opening and used to cover the opening. The switch component is set on the limit slide slot and press-fitted with the cover to keep the cover covering the opening. The switch component alternates between a state where the cover covers the opening and a state where the cover is unlocked to reveal the opening, by translating in a first direction between a press-fit position and an unlocked position. A second magnetic element is set inside the switch component arranged parallel to the first magnetic element. The switch component is kept in the press-fit position due to the magnetic force between the first and second magnetic elements.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Zhou, Jia-De
Abstract
A mold for fabricating an integrated endoscopic probe, and an integrated endoscopic probe, and a method for fabricating the same are provided. The mold is used to minimize the endoscopic distal tip, increase the output, and improve fabrication quality. The integrated endoscopic probe and the fabrication method thereof can reduce the size of the endoscopic distal tip, increase the efficiency and stability of the fabrication process, and reduce production cost.
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
B29C 33/00 - Moulds or coresDetails thereof or accessories therefor
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Kuo, Yung-En
Lee, Yu-Tsung
Abstract
A fundus inspection system includes an objective lens, a fundus imaging device, an optical coherence tomography device, a movable mirror, and a focus adjustment lens. The fundus imaging device captures the fundus image of an eyeball fundus along the optical axis of the objective lens and an imaging path. The optical coherence tomography device scans the eyeball fundus along the optical axis and a scanning path to capture the tomographic image of the fundus. An included angle is between the imaging path and the scanning path. The movable mirror, disposed at the intersection of the imaging path and the scanning path, moves to or away from the optical axis to optically couple the imaging path or the scanning path to the optical axis. The focus adjustment lens respectively or simultaneously captures the fundus image and the tomographic image corresponding to an eyeball state by moving the movable mirror.
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/10 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions
A61B 3/14 - Arrangements specially adapted for eye photography
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Cheng, Chu-Ming
Hsieh, Hsin-Hsien
Abstract
An image sensing module manufacturing method includes steps: forming a mold and then disposing a plurality of lenses into a barrel of the mold; after confirming the position of the plurality of lenses, adhesively combining the plurality of lenses; installing an image sensor inside the barrel; fixing the image sensor after confirming the position relationship between the plurality of lenses and the image sensor; and cutting the mold to obtain a plurality of image sensing modules.
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Abstract
An endoscopic light source-imaging module including a substrate, an image sensor, and a light-emitting element is provided. The top surface of the substrate is provided with a cavity. The cavity has a first surface and a second surface neighboring each other and having a preset height drop therebetween. A first conductive route and a second conductive route of the substrate extend from the top surface penetrating through the substrate to a bottom surface. The image sensor is disposed on the first surface and is electrically connected to the first conductive route. The light-emitting element is disposed on the second surface, neighboring one side of the image sensor and electrically connected to the second conductive route. The present invention improves the image quality of the endoscope, reduces the module size, decreases the fabrication stages, increases the productivity, and lowers the cost.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Syu, Jia-Pu
Huang, Chien-Chi
Lee, Yu-Tsung
Chen, Hung-Chin
Abstract
An optical coherence tomography image system and an autofocus method thereof are provided. The autofocus method captures a reference chart at a plurality of preset diopter positions, receives an interference signal generated by the reflection of a light beam projected onto an eyeball, and analyzes the reference chart and the interference signal to obtain an analysis value and a corresponding diopter. The method compares the plurality of analysis values to obtain one meeting the standard condition as the target analysis value. According to the target analysis value and the corresponding diopter, the focusing driving device is controlled to move to the position corresponding to the diopter to complete autofocusing. Therefore, the present invention can reduce the time of autofocusing, obtain a higher shooting success rate, provide better user experience, and use a lower-order computing device to reduce costs.
H04N 23/67 - Focus control based on electronic image sensor signals
A61B 3/10 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/14 - Arrangements specially adapted for eye photography
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Tseng, Wei Ting
Cai, Li-Ren
Chen, Hung-Chin
Huang, Chien-Chi
Kuo, Yung-En
Wu, Pei-Sheng
Abstract
The invention provides an optical coherence tomography self-testing system, an optical coherence tomography method and an ocular disease monitoring system. The optical coherence tomography self-testing system comprises a camera device, an external display module and a communication module. The camera device includes an image-capturing module and a processing module. The image-capturing module captures a plurality of ocular images. The processing module is connected to the image-capturing module, and the processing module determines whether a position offset value between the pupil center position of a tested eyeball and an optical axis of the image-capturing module is within a preset error range. If the position offset value is within the preset error range, the plurality of ocular images is stored as a plurality of displayed images. The external display module displays one of the plurality of displayed images and a status light after the image-capturing module has completed image capturing.
A61B 3/10 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/14 - Arrangements specially adapted for eye photography
G06T 5/40 - Image enhancement or restoration using histogram techniques
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Huang, Shao Hung
Chen, Chao-Ting
Kuo, Fong Hao
Tung, Yu-Chung
Cheng, Chu-Ming
Kang, Chi-Yuan
Abstract
An intraocular pressure inspection device includes an intraocular pressure detection unit, a high-precision positioning system and a wide-area positioning system, wherein according to the position of the intraocular pressure detection unit, a set of high-precision coordinates output by the high-precision positioning system and a set of wide-area coordinates output by the wide-area positioning system are integrated in appropriate weights to obtain a set of more precise integrated coordinate. The above-mentioned intraocular pressure inspection device can prevent the intraocular pressure detection unit from failing to operate once it is not in the working area of the high-precision positioning system.
A61B 3/16 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for measuring intraocular pressure, e.g. tonometers
22.
LIGHT-EMITTING IMAGE SENSING MODULE AND METHOD FOR FABRICATING THE SAME
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Huang, Yi-Han
Zhou, Jia-De
Abstract
The invention provides a light-emitting image sensing module and a method for fabricating the same. The light-emitting image sensing module includes a circuit board, an image sensor, conductive carriers, light sources, an opaque lens barrel, and a lens module. The image sensor and the conductive carriers are arranged on the circuit board. The light sources are arranged on the conductive carrier. The opaque lens barrel is penetrated by a first hole and a second hole and arranged on the circuit board. The first hole sleeves the image sensor, and the second hole sleeves the conductive carriers and the light sources. The lens module is fixed in the first hole and arranged above the image sensor. The invention uses the circuit board to carry out the packaging process of the image sensor and the light source, so as to achieve the economic benefit.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Huang, Shao Hung
Chen, Chao-Ting
Kuo, Fong Hao
Kang, Chi-Yuan
Wu, Chang Mu
Abstract
An auxiliary operation device for a droplet dispenser includes a droplet sensor, an imaging device and a processor. The droplet sensor has a detected area located between a droplet dispenser and a target area, wherein the droplet sensor detects a droplet output from the droplet dispenser, and outputs a corresponding droplet detection signal. The imaging device captures an image of the target area. The processor obtains a dripping time point at which the droplet passes through the detected area according to the droplet detection signal, and determines whether the target area is shielded within a first time range according to the image, so as to evaluate whether the droplet has successfully dropped into the target area. The above-mentioned auxiliary operating device of the droplet dispenser can objectively determine whether the droplets successfully drops into the target area, and improve the accuracy of judgment.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Lee, Chia-Jung
Fan, Yueh-Ying
Abstract
The present invention provides an endoscope, which includes a catheter, a handle, an instrument tube, a linkage unit, a controlling unit, cables, tension units, and a tension adjusting unit. One end of the catheter is provided with a lens, and the other end of the catheter is extended into the handle. One part of the instrument tube is disposed in the handle and is connected with the other end of the catheter. The other part of the instrument tube is exposed outside the handle. The linkage unit is disposed in the handle. The controlling unit is disposed outside the handle and is extended into the handle to be pivotally connected with the linkage unit. One end of the cable is connected to the linkage unit, and the other end thereof is connected to one end periphery of the catheter. One end of the tension unit is connected to the periphery of the cable. The tension adjusting unit is provided with adjusting members and connection members. The connection members are connected to the other end of the tension unit, and the connection members are respectively disposed in one of the adjusting members. The present invention can effectively improve the controlling sensitivity of the endoscope lens and the smoothness of entering and exiting the instruments, thereby improving the medical quality.
A61B 1/018 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor characterised by internal passages or accessories therefor for receiving instruments
25.
ENDOSCOPIC LIGHT SOURCE-IMAGING MODULE AND METHOD FOR FABRICATING THE SAME
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Zhou, Jia-De
Abstract
An endoscopic light source image module comprises a substrate, an image sensor, an illumination module and a single-use mold. The image sensor, the illumination module and the single-use mold are disposed on the substrate. The illumination module includes a carrier disposed on the substrate and a light source disposed on the carrier, wherein the carrier is used to determine the height of the light source. The single-use mold has a first through-hole, a second through-hole and a runner, wherein the first through-hole accommodates the image sensor; the second through-hole accommodates the illumination module; the runner interconnects the first through-hole and the second through-hole. The single-use mold is made of an opaque material, which can prevent the light of the illumination module from affecting the image sensor.
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/04 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
26.
Image sensor package, method for manufacturing the same and endoscope using the same
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Zhou, Jia-De
Abstract
A method for manufacturing an image sensor package is provided, in which a plurality of trenches is provided in the package substrate and the trenches and a plurality of predetermined dicing lines define the desired contour of the package substrate to maximize the space utilization of the image sensor package in the distal end of the endoscope. In addition, the contour of the package substrate matches the shape of the distal end of the endoscope, thus facilitating the positioning and assembly of the image sensor package. An image sensor package manufactured by the abovementioned manufacturing method and an endoscope including the image sensor package are also disclosed.
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Zhou, Jia-De
Hsu, Chih Lung
Chen, Jiunwei
Abstract
An image sensor package includes a substrate, an image sensor, and at least one light-emitting element. The substrate has a plurality of electric-conduction contacts. The image sensor is arranged on the substrate electrically connected with the substrate. The light-emitting element includes a spacer and a light-emitting diode. The spacer has a plurality of electric-conduction contacts. The light emitting diode is arranged on the spacer and electrically connected with the spacer. The spacer is arranged on the substrate and electrically connected with the substrate. The spacer has a predetermined thickness, so that the height of a light input surface of the image sensor is larger than or equal to the height of a light output surface of the light-emitting diode. The above-mentioned image sensor package favors optimization of illumination. An endoscope including the above-mentioned image sensor package is also disclosed.
H04N 23/56 - Cameras or camera modules comprising electronic image sensorsControl thereof provided with illuminating means
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
H01L 23/34 - Arrangements for cooling, heating, ventilating or temperature compensation
H01L 23/60 - Protection against electrostatic charges or discharges, e.g. Faraday shields
H04N 23/52 - Elements optimising image sensor operation, e.g. for electromagnetic interference [EMI] protection or temperature control by heat transfer or cooling elements
H10F 55/255 - Radiation-sensitive semiconductor devices covered by groups , or being structurally associated with electric light sources and electrically or optically coupled thereto wherein the electric light source controls the radiation-sensitive semiconductor devices, e.g. optocouplers wherein the radiation-sensitive devices and the electric light source are all semiconductor devices formed in, or on, a common substrate
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Chen, Jiunwei
Zhou, Jia-De
Tseng, Tseng Shen
Abstract
An image sensor package includes a substrate, an image sensor, a plurality of light-emitting elements, and a scattering layer. The substrate includes a plurality of first conductive contacts, a plurality of second conductive contacts, and a plurality of third conductive contacts, wherein the second conductive contacts and the third conductive contacts are electrically connected with the corresponding first conductive contacts. The image sensor is disposed on the substrate and electrically connected to the second conductive contacts. The light-emitting elements are disposed on the substrate and electrically connected with the third conductive contacts. The scattering layer covers at least one sidewall of the light-emitting elements. The abovementioned image sensor package can provide better illumination effects. An endoscope including the abovementioned image sensor package is also disclosed.
A61B 1/05 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances characterised by the image sensor, e.g. camera, being in the distal end portion
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
A61B 1/07 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements using light-conductive means, e.g. optical fibres
H01L 31/02 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof - Details
H01L 31/0232 - Optical elements or arrangements associated with the device
H01L 31/173 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof structurally associated with, e.g. formed in or on a common substrate with, one or more electric light sources, e.g. electroluminescent light sources, and electrically or optically coupled thereto the semiconductor device sensitive to radiation being controlled by the light source or sources the light sources and the devices sensitive to radiation all being semiconductor devices characterised by at least one potential or surface barrier formed in, or on, a common substrate
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Lee, Chia-Jung
Fan, Yueh-Ying
Tai, Yi-Ming
Wang, Chung-Hau
Abstract
A steering joint comprises a first tubular member and a second tubular member. The first tubular member and the second tubular member include a plurality of cuts to facilitate bending. One end of the first tubular member has an accommodation portion for accommodating an endoscopic image module, and the other end has a first joint portion. One end of the second tubular member has a second joint portion which is joined to the first joint portion of the first tubular member. The tubular member of the steering joint is easy to injection mold and can reduce the accumulated tolerance. An endoscope including the abovementioned steering joint is also disclosed.
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Lin, Yu Chian
Li, Jyun-Hong
Kuo, Yung-En
Lee, Yu-Tsung
Abstract
A pupil tracking method includes: retrieving an external eye image of a subject, wherein the external eye image includes a pupil of the subject; performing an image preprocessing on the external eye image, wherein the image preprocessing includes performing a binary conversion on the external eye image to obtain a binary image; finding out a contour boundary of each feature in the binary image, and finding out a pupil feature based on a variance of a distance from the contour boundary of each feature to a corresponding reference point; fitting the contour boundary of the pupil feature by a boundary fitting method to find a center coordinate of the pupil feature. The abovementioned pupil tracking method can track the pupil of the subject's eyeball without using a stereo camera. An ophthalmology inspection device using the abovementioned pupil tracking method is also disclosed.
A61B 3/113 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for determining or recording eye movement
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Chang, Wei-Hsun
Wang, Chun Yao
Huang, Shao Hung
Chen, Chien Kuan
Abstract
A fundus camera includes an objective lens, an illumination device, an imaging lens group and an image sensor. The illumination device has a light emitting position and includes a plurality of light emitting modules and a driving element. Each light emitting module generates a corresponding illumination light, and the optical characteristics of the illumination lights are different from each other. The driving element drives one of the light emitting modules to the light emitting position of the illumination device to output an illumination light with required optical characteristics and irradiate it to a fundus through the objective lens. The imaging light reflected by the fundus passes through the objective lens and the imaging lens group to form an image on the image sensor so as to generate a fundus image. The abovementioned fundus camera has a compact structure and can switch the illumination light sources in a short time to obtain fundus images with different optical characteristics.
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/14 - Arrangements specially adapted for eye photography
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Wu, Shangyi
Abstract
A packaged image sensor includes a first pipe and a second pipe, wherein the first pipe with a shorter length is initially encapsulated with an image sensor and a light-emitting element to define a relative position between the first pipe and the image sensor. The second pipe is connected to the first pipe and then is encapsulated in a second encapsulation process. The abovementioned packaged image sensor is easy to manufacture. An endoscope including the abovementioned packaged image sensor is also disclosed.
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/05 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances characterised by the image sensor, e.g. camera, being in the distal end portion
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Wu, Shangyi
Lee, Chia-Jung
Hsu, Chih-Lu
Abstract
A packaged image sensor includes a substrate, an image sensor, a light-emitting element, and a first encapsulant. The substrate includes a through-hole. The image sensor and the light-emitting element are disposed on the substrate and are electrically connected to the substrate. The first encapsulant is filled between the image sensor and the light emitting element, and keeps the through-hole of the substrate opened. The through-hole of the substrate of the above-mentioned packaged image sensor can define a relative position between a pipe and the image sensor to facilitate the subsequent packaging process. An endoscope including the above-mentioned packaged image sensor is also disclosed.
A61B 1/05 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances characterised by the image sensor, e.g. camera, being in the distal end portion
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
H01L 31/0232 - Optical elements or arrangements associated with the device
H01L 31/173 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof structurally associated with, e.g. formed in or on a common substrate with, one or more electric light sources, e.g. electroluminescent light sources, and electrically or optically coupled thereto the semiconductor device sensitive to radiation being controlled by the light source or sources the light sources and the devices sensitive to radiation all being semiconductor devices characterised by at least one potential or surface barrier formed in, or on, a common substrate
A61B 1/018 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor characterised by internal passages or accessories therefor for receiving instruments
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Cheng, Chu-Ming
Abstract
An image sensor package includes a first substrate, an image sensor, a second substrate, a light-emitting element, and a first encapsulant. The image sensor is disposed on and electrically connected with the first substrate. The second substrate is disposed on and electrically connected with the first substrate, wherein the second substrate includes an accommodating portion and the image sensor protrudes from the second substrate via the accommodating portion. The light-emitting element is disposed on the second substrate and close to the image sensor, and is electrically connected to the second substrate. The first encapsulant is filled in a space between the image sensor and the light-emitting element. The abovementioned image sensor package can achieve miniaturization and provide better illumination. An endoscope including the abovementioned image sensor package is also disclosed.
H04N 5/335 - Transforming light or analogous information into electric information using solid-state image sensors [SSIS]
A61B 1/05 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances characterised by the image sensor, e.g. camera, being in the distal end portion
G02B 23/24 - Instruments for viewing the inside of hollow bodies, e.g. fibrescopes
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Abstract
A scanning device applied to an optical coherence tomography system integrates a scanning lens group required by the coherence tomography system into a fundus imaging system, so that the coherence tomography system and the fundus imaging system can share the scanning lens group for focusing. The above-mentioned scanning device can shorten a response time of focusing and reduce the volume of the system. An optical coherence tomography system including the above-mentioned scanning device is also disclosed.
G01B 9/02091 - Tomographic interferometers, e.g. based on optical coherence
A61B 3/10 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions
G02B 26/08 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the direction of light
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Wu, Shangyi
Hsieh, Mingche
Abstract
An image sensor package includes a substrate, an image sensor, a light-emitting element, and a package body. The substrate includes a plurality of first conductive contacts and a plurality of second conductive contacts. The image sensor is disposed on the substrate and electrically connected to the corresponding first conductive contacts. The light-emitting element is close to the image sensor, disposed on the substrate and electrically connected to the corresponding first conductive contacts. The package body is filled between the image sensor and the light emitting element. The above-mentioned image sensor package can achieve miniaturization, provide uniform illumination, and increase light utilization efficiency. An endoscope including the above-mentioned image sensor package is also disclosed.
H01L 25/16 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices the devices being of types provided for in two or more different subclasses of , , , , or , e.g. forming hybrid circuits
H05K 1/14 - Structural association of two or more printed circuits
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
H05K 1/11 - Printed elements for providing electric connections to or between printed circuits
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Lee, Yu-Tsung
Kuo, Yung-En
Abstract
A fundus camera displays guide information on a display panel which can be viewed by a testee to guide the testee to adjust a relative position of the fundus camera and a tested eyeball of the testee to a determined position. Therefore, the testee can use the above-mentioned fundus camera to self-shoot fundus images with better image quality. A method for self-shooting fundus is also disclosed.
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/14 - Arrangements specially adapted for eye photography
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
A61B 3/15 - Arrangements specially adapted for eye photography with means for aligning, spacing or blocking spurious reflection
A61B 3/103 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for determining refraction, e.g. refractometers, skiascopes
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Kuo, Che-Jung
Chang, Wei-Hsun
Abstract
A fundus camera includes an eyeball-offset detection device and an annular illumination device. The eyeball-offset detection device is configured to detect an offset vector of a lens of the fundus camera relative to an inspected eyeball. The annular illumination device includes a plurality of illumination elements that are arranged in a ring shape around an optical axis of an imaging system of the fundus camera. According to the offset vector of the lens relative to the inspected eyeball, the fundus camera selectively activates one or more illumination elements at corresponding positions to keep an illumination optical path away from a center area of the pupil of the inspected eyeball to reduce effects of corneal reflection and improve illumination quality. Therefore, the abovementioned fundus camera has a large operable range.
A61B 3/14 - Arrangements specially adapted for eye photography
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Kang, Chi-Yuan
Hsieh, Ming-Hsien
Abstract
A slit illumination device includes a first light-emitting element, a first diaphragm and a projection lens group. The first light-emitting element generates a primary illumination light. The first diaphragm has at least one opening and is disposed on a light exit side of the first light-emitting element, wherein the opening is an elongate shaped opening. The projection lens group is disposed on a light exit side of the first diaphragm, converging the primary illumination light and projecting it to a target object. A distance from the first diaphragm to the projection lens group is 1-2 times a focal length of the projection lens group on a light entrance side. The foregoing slit illumination device has advantages of simple structure, small size, and longer depth of field. A microscope system including the foregoing slit illumination device is also disclosed.
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Chen, Yi-Wen
Liu, Pin-Tseng
Abstract
An ophthalmoscope comprises an illumination element providing an illumination light beam to illuminate the fundus of an eyeball; an imaging lens group converging the reflected light beam from the fundus; and an image capture module. The image capture module includes an image sensing element, a fixation light element and an optical element. The image sensing element captures the reflected light beam converged by the imaging lens group to form an image. The fixation light element provides a fixation light beam passing through the imaging lens group and reaching the fundus. The optical element is arranged among the imaging lens group, image sensing element and fixation light element to make the image sensing element and the fixation light element on different equivalent focal planes of the imaging lens group. According to the above-mentioned structure, a relay lens and a focusing module used by the conventional fixation light element is omitted.
A61B 3/14 - Arrangements specially adapted for eye photography
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Hsieh, Ming-Hsien
Abstract
A contact-type ophthalmoscope includes a contact lens, an annular illumination module, an imaging lens group and an image capture module. The contact lens having a concave surface is configured for contacting an eyeball. The annular illumination module arranged close to the contact lens is configured for providing a direct illumination light source to illuminate a fundus of the eyeball. The imaging lens group is disposed in the central hollow portion of the annular illumination module and configured for converging the reflected light from the fundus of the eyeball. The image capture module is configured for capturing the reflected light converged by the imaging lens group to form an image. The above-mentioned contact-type ophthalmoscope has advantages of better illumination efficiency, compactness and less scattered light reflected from the imaging lens.
A61B 3/14 - Arrangements specially adapted for eye photography
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/125 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes with contact lenses
MEDIMAGING INTEGRATED SOLUTION, INC. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Abstract
A lens module comprises a first lens group, a second lens group and a third lens group, which are arranged from an eye fundus side to an image side in sequence. The first lens group has a positive effective focal length (EFL) and includes a first lens having two convex surfaces respectively facing the eye fundus side and the image side. The second lens group has a positive or negative EFL and includes a plurality of second lenses, wherein the second lens closest to the eye fundus side has a concave surface facing the eye fundus side. The third lens group has a positive EFL and includes a plurality of third lenses, wherein at least one third lens is a cemented lens. The abovementioned lens module decreases the volume of a lens module and reduces the ghosting effect. An eye fundus camera using the abovementioned lens module is also disclosed.
G02B 9/14 - Optical objectives characterised both by the number of the components and their arrangements according to their sign, i.e. + or – having three components only arranged + – +
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 3/00 - Apparatus for testing the eyesInstruments for examining the eyes
A61B 3/14 - Arrangements specially adapted for eye photography
G02B 9/12 - Optical objectives characterised both by the number of the components and their arrangements according to their sign, i.e. + or – having three components only
45.
Host, optical lens module and digital diagnostic system including the same
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Lee, Yu-Tsung
Abstract
A digital diagnostic system with interchangeable lenses includes a host and at least one optical lens module, wherein the host without any optical lens having curved surface includes a focus adjustment module which drives an image capture module to linearly move. Therefore, the optical system of the optical lens module can be designed independently, and no need to include focus adjustment mechanism, so that the optical design of the optical lens module can be greatly simplified, and the system allows a greater mechanism tolerance, thereby reducing manufacturing difficulty and manufacturing cost.
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
A61B 1/227 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor for ears, i.e. otoscopes
A61B 1/233 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor for the nose, i.e. nasoscopes
A61B 1/267 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor for the respiratory tract, e.g. laryngoscopes, bronchoscopes
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
A61B 5/00 - Measuring for diagnostic purposes Identification of persons
Medimaging Integrated Solution, Inc. (Taiwan, Province of China)
Inventor
Cheng, Chu-Ming
Liao, Long-Sheng
Chen, Yi-Wen
Abstract
A medical imaging system includes a first lens set, a light source and an image forming module. The medical imaging system of the present invention configures the light source according to the object-image relationship of lens, so that illuminating light may sufficiently enter a cavity, significantly increasing the luminous efficiency. Also, the image forming and illuminating components are integrated into one system, thereby achieving advantages of reduced volume and cost saving.
A61B 1/04 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor combined with photographic or television appliances
A61B 1/06 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor with illuminating arrangements
A61B 1/00 - Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopesIlluminating arrangements therefor
H04N 5/235 - Circuitry for compensating for variation in the brightness of the object
A61B 3/12 - Objective types, i.e. instruments for examining the eyes independent of the patients perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
G02B 13/00 - Optical objectives specially designed for the purposes specified below
G02B 23/24 - Instruments for viewing the inside of hollow bodies, e.g. fibrescopes
[ AEROSOL DISPENSERS FOR MEDICAL USE; ] APPARATUS FOR CLINICAL DIAGNOSIS; [ CLINICAL THERMOMETERS; ] DENTAL APPARATUS, NAMELY, INTRA-ORAL LIGHT SYSTEMS; DENTAL INSTRUMENTS, NAMELY, CARIES DETECTION DEVICE, [ LASER FLUORESCENCE CARIES DETECTION DEVICE, FIBER OPTIC DENTAL LIGHT, DENTAL OPERATING LIGHT, DENTAL BLEACHING MACHINE AND DENTAL 3D IMAGING SYSTEM; ] DENTAL MIRRORS; [ ELECTRICALLY-POWERED APPARATUS FOR TREATING SKIN BY APPLYING LOW LEVEL LIGHT AND SONIC VIBRATIONS TO THE SKIN; ELECTRONIC AESTHETIC SKIN TREATMENT DEVICES USING LIGHT EMITTING DIODES, NAMELY, INFRARED, RED, ORANGE, YELLOW, GREEN, AND BLUE WAVELENGTHS FOR GENERATING LIGHT RAYS; ELECTRONIC LIGHT THERAPY APPARATUS FOR THE SKIN; ] ENDOSCOPIC EQUIPMENT; ENDOSCOPY CAMERAS; [ EYE PROTECTORS FOR POST-SURGERY EYE PROTECTION; ] EYE TESTING MACHINES AND APPARATUS; [ FEVER THERMOMETERS; ] [ GASTROSCOPES; ] HEADLIGHT LENS MODULES FOR MEDICAL AND SURGICAL USE; INTERPUPILLOMETERS; INTRA-ORAL DENTAL LIGHT SYSTEM; KERATOSCOPES; LARYNGOSCOPES; [ LASER POINTERS FOR MEDICAL USE; LASERS FOR MEDICAL PURPOSES; LASERS FOR MEDICAL USE; LASERS FOR SURGICAL AND MEDICAL USE; LASERS FOR THE COSMETIC TREATMENT OF THE FACE AND SKIN; LIGHT EMITTING DEVICES, NAMELY, LAMPS AND LED DEVICES FOR TREATMENT OF A VARIETY OF SKIN CONDITIONS; ] LIGHT EMITTING DIODE (LED) DEVICES FOR ENERGY-EFFICIENT REPLACEMENT OF STANDARD TUNGSTEN-FILAMENT LIGHTING INCORPORATED INTO HAND-HELD MEDICAL INSTRUMENTS; LIGHT EMITTING DIODE (LED) APPARATUS FOR LIGHTING, INCORPORATED INTO MEDICAL INSTRUMENTS; [ LIGHT-BASED MEDICAL DEVICES, NAMELY, A LIGHT EMITTING DIODE (LED) DEVICE FOR INCREASING THE HUMAN BODY'S OWN PRODUCTION OF COLLAGEN; ] LOUPES FOR MEDICAL PURPOSES, NAMELY, MAGNIFYING GLASSES THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING GLASSES, FOR MEDICAL PURPOSES, THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING GLASSES, FOR MEDICAL EXAMINATION PURPOSES, THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING LOOPS FOR MEDICAL PURPOSES; MEDICAL AND DENTAL APPARATUS FOR DIMENSIONAL MEASUREMENT, NAMELY, 3D SCANNER FOR HUMAN BODY; [ MEDICAL AND SURGICAL LAPAROSCOPES; MEDICAL AND SURGICAL LAPAROSCOPES AND CATHETERS; ] [ MEDICAL APPARATUS, NAMELY, AN EAR WASH DEVICE IN THE NATURE OF A CONTAINER TO BE FILLED WITH APPROPRIATE FLUID BY THE USER FOR FLUSHING EAR WAX FROM THE EAR; MEDICAL DEVICE, NAMELY, CHEMILUMINESCENT LIGHT FOR USE IN ENDOSCOPIC EXAMS; MEDICAL EXAMINATION LAMPS; ] [ MEDICAL FLUID INJECTORS; ] [ MEDICAL IMAGE PROCESSORS; MEDICAL IMAGING APPARATUS IN THE FIELD OF IRIDOLOGY, SCLEROLOGY, RAYID AND EYOLOGY; MEDICAL IMAGING APPARATUS INCORPORATING MEDICAL IMAGING SOFTWARE; MEDICAL OPERATING LAMPS; MICROSCOPES FOR OPERATIONS; MIRRORS FOR DENTISTS; OPHTHALMOMETERS; OPHTHALMOSCOPES; OPTOMETRIC INSTRUMENTS, NAMELY, INSTRUMENTS FOR LOCATING GROOVES, ENGRAVINGS AND OTHER INDICIA ON OPHTHALMIC LENSES; OPTOMETRIC INSTRUMENTS, NAMELY, INSTRUMENTS FOR MEASURING THE DIAMETER OF OPHTHALMIC LENSES; ] OPTOMETRIC INSTRUMENTS FOR LOCATING THE OPTICAL CENTER OF OPHTHALMIC LENSES; ORGANOLEPTIC DIAGNOSTIC TESTING APPARATUS FOR MEDICAL, DENTAL OR COSMETIC USE; OTOSCOPES; [ PHOTOTHERAPEUTIC APPARATUS FOR MEDICAL PURPOSES; PHOTOTHERAPEUTIC APPARATUS FOR MEDICAL PURPOSES, NAMELY, A LED (LIGHT-EMITTING DIODE) LIGHT SOURCE FOR MEDICAL AND AESTHETIC SKIN TREATMENTS; PHOTOTHERAPEUTIC APPARATUS FOR THE TREATMENT OF JAUNDICE; ] RETINOSCOPES; RIGID AND FLEXIBLE MEDICAL ENDOSCOPES; [ SENSORY LIGHT THERAPY UNIT; ] SKIASCOPES; [ SKIN CARE ANALYZERS AND LIGHT THERAPY EQUIPMENT, NAMELY, A BLACK-LIGHT BLUE LAMP UNIT FOR USE IN IDENTIFICATION OF A VARIETY OF SKIN CONDITIONS; ] SOFTWARE FOR USE IN CALCULATING, TRANSFERRING AND STORING DATA RELATING TO THE DIAGNOSIS AND TREATMENT OF EYE DISORDERS, SOLD AS A COMPONENT OF A OPHTHALMIC SURGICAL APPARATUS; [ SPECULUMS; ] [ SURGICAL AND MEDICAL APPARATUS AND INSTRUMENTS FOR USE IN GENERAL SURGERY; SURGICAL APPARATUS AND INSTRUMENTS FOR USE IN OPHTHALMIC SURGERY; SURGICAL APPARATUS AND INSTRUMENTS FOR MEDICAL, DENTAL OR VETERINARY USE; SURGICAL APPARATUS FOR USE IN OPHTHALMIC SURGERY; SURGICAL INSTRUMENTS AND APPARATUS; SURGICAL INSTRUMENTS FOR USE IN OPHTHALMIC SURGERY; ] SURGICAL LAMPS; [ SURGICAL MIRRORS; ] SURGICAL OPERATING LAMPS; [ THERMOMETERS FOR MEDICAL PURPOSES; ] THORACOSCOPES; VETERINARY IMAGING PRODUCTS, NAMELY, DIGITAL VIDEO CAMERA CONNECTED TO A TAPERED PROBE USEFUL IN VIEWING EAR CANALS OR OTHER CAVITIES OF ANIMALS FOR DIAGNOSIS AND TREATMENT; VETERINARY OPERATING LAMPS
[ AEROSOL DISPENSERS FOR MEDICAL USE; ] APPARATUS FOR CLINICAL DIAGNOSIS; [ CLINICAL THERMOMETERS; ] DENTAL APPARATUS, namely, INTRA-ORAL LIGHT SYSTEMS; [ DENTAL INSTRUMENTS, namely, CARIES DETECTION DEVICE, LASER FLUORESCENCE CARIES DETECTION DEVICE, FIBER OPTIC DENTAL LIGHT, DENTAL OPERATING LIGHT, DENTAL BLEACHING MACHINE AND DENTAL 3D IMAGING SYSTEM; ] DENTAL MIRRORS; [ ELECTRICALLY-POWERED APPARATUS FOR TREATING SKIN BY APPLYING LOW LEVEL LIGHT AND SONIC VIBRATIONS TO THE SKIN; ELECTRONIC AESTHETIC SKIN TREATMENT DEVICES USING LIGHT EMITTING DIODES, namely, INFRARED, RED, ORANGE, YELLOW, GREEN, AND BLUE WAVELENGTHS FOR GENERATING LIGHT RAYS; ELECTRONIC LIGHT THERAPY APPARATUS FOR THE SKIN; ] ENDOSCOPIC EQUIPMENT; ENDOSCOPY CAMERAS; [ EYE PROTECTORS FOR POST-SURGERY EYE PROTECTION; ] EYE TESTING MACHINES AND APPARATUS; [ FEVER THERMOMETERS; ] [ GASTROSCOPES; HEADLIGHT LENS MODULES FOR MEDICAL AND SURGICAL USE; ] INTERPUPILLOMETERS; INTRA-ORAL DENTAL LIGHT SYSTEM; KERATOSCOPES; LARYNGOSCOPES; [ LASER POINTERS FOR MEDICAL USE; ] [ LASERS FOR MEDICAL PURPOSES; LASERS FOR MEDICAL USE; LASERS FOR SURGICAL AND MEDICAL USE; ] [ LASERS FOR THE COSMETIC TREATMENT OF THE FACE AND SKIN; LIGHT EMITTING DEVICES, namely, LAMPS AND LED DEVICES FOR TREATMENT OF A VARIETY OF SKIN CONDITIONS; ] LIGHT EMITTING DIODE (LED) DEVICES FOR ENERGY-EFFICIENT REPLACEMENT OF STANDARD TUNGSTEN-FILAMENT LIGHTING INCORPORATED INTO HAND-HELD MEDICAL INSTRUMENTS; LIGHT EMITTING DIODE (LED) APPARATUS FOR LIGHTING, INCORPORATED INTO MEDICAL INSTRUMENTS; [ LIGHT-BASED MEDICAL DEVICES, namely, A LIGHT EMITTING DIODE (LED) DEVICE FOR INCREASING THE HUMAN BODY'S OWN PRODUCTION OF COLLAGEN; ] [ LOUPES FOR MEDICAL PURPOSES, namely, MAGNIFYING GLASSES THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING GLASSES, FOR MEDICAL PURPOSES, THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING GLASSES, FOR MEDICAL EXAMINATION PURPOSES, THAT FIT ON THE USER'S FACE IN THE MANNER OF EYEGLASSES; MAGNIFYING LOOPS FOR MEDICAL PURPOSES; MEDICAL AND DENTAL APPARATUS FOR DIMENSIONAL MEASUREMENT, namely, 3D SCANNER FOR HUMAN BODY; MEDICAL AND SURGICAL LAPAROSCOPES; MEDICAL AND SURGICAL LAPAROSCOPES AND CATHETERS; ] [ MEDICAL APPARATUS, namely, AN EAR WASH DEVICE IN THE NATURE OF A CONTAINER TO BE FILLED WITH APPROPRIATE FLUID BY THE USER FOR FLUSHING EAR WAX FROM THE EAR; ] [ MEDICAL DEVICE, namely, CHEMILUMINESCENT LIGHT FOR USE IN ENDOSCOPIC EXAMS; ] MEDICAL EXAMINATION LAMPS; [ MEDICAL FLUID INJECTORS; ] MEDICAL IMAGE PROCESSORS; MEDICAL IMAGING APPARATUS IN THE FIELD OF IRIDOLOGY, SCLEROLOGY, RAYID AND EYOLOGY; MEDICAL IMAGING APPARATUS INCORPORATING MEDICAL IMAGING SOFTWARE; [ MEDICAL OPERATING LAMPS; MICROSCOPES FOR OPERATIONS; ] MIRRORS FOR DENTISTS; OPHTHALMOMETERS; OPHTHALMOSCOPES; [ OPTOMETRIC INSTRUMENTS, namely, INSTRUMENTS FOR LOCATING GROOVES, ENGRAVINGS AND OTHER INDICIA ON OPHTHALMIC LENSES; OPTOMETRIC INSTRUMENTS, namely, INSTRUMENTS FOR MEASURING THE DIAMETER OF OPHTHALMIC LENSES; OPTOMETRIC INSTRUMENTS FOR LOCATING THE OPTICAL CENTER OF OPHTHALMIC LENSES; ] ORGANOLEPTIC DIAGNOSTIC TESTING APPARATUS FOR MEDICAL, DENTAL OR COSMETIC USE; OTOSCOPES; [ PHOTOTHERAPEUTIC APPARATUS FOR MEDICAL PURPOSES; PHOTOTHERAPEUTIC APPARATUS FOR MEDICAL PURPOSES, namely, A LED (LIGHT-EMITTING DIODE) LIGHT SOURCE FOR MEDICAL AND AESTHETIC SKIN TREATMENTS; PHOTOTHERAPEUTIC APPARATUS FOR THE TREATMENT OF JAUNDICE; ] RETINOSCOPES; RIGID AND FLEXIBLE MEDICAL ENDOSCOPES; [ SENSORY LIGHT THERAPY UNIT; ] SKIASCOPES; [ SKIN CARE ANALYZERS AND LIGHT THERAPY EQUIPMENT, namely, A BLACK-LIGHT BLUE LAMP UNIT FOR USE IN IDENTIFICATION OF A VARIETY OF SKIN CONDITIONS; ] SOFTWARE FOR USE IN CALCULATING, TRANSFERRING AND STORING DATA RELATING TO THE DIAGNOSIS AND TREATMENT OF EYE DISORDERS, SOLD AS A COMPONENT OF A OPHTHALMIC SURGICAL APPARATUS; SPECULUMS; [ SURGICAL AND MEDICAL APPARATUS AND INSTRUMENTS FOR USE IN GENERAL SURGERY; SURGICAL APPARATUS AND INSTRUMENTS FOR USE IN OPHTHALMIC SURGERY; SURGICAL APPARATUS AND INSTRUMENTS FOR MEDICAL, DENTAL OR VETERINARY USE; SURGICAL APPARATUS FOR USE IN OPHTHALMIC SURGERY; SURGICAL INSTRUMENTS AND APPARATUS; SURGICAL INSTRUMENTS FOR USE IN OPHTHALMIC SURGERY; ] [ SURGICAL LAMPS; SURGICAL MIRRORS; SURGICAL OPERATING LAMPS; ] [ THERMOMETERS FOR MEDICAL PURPOSES; ] [ THORACOSCOPES; ] VETERINARY IMAGING PRODUCTS, namely, DIGITAL VIDEO CAMERA CONNECTED TO A TAPERED PROBE USEFUL IN VIEWING EAR CANALS OR OTHER CAVITIES OF ANIMALS FOR DIAGNOSIS AND TREATMENT [ ; VETERINARY OPERATING LAMPS ]