The present disclosure provides mobile real time location units for use with an organism, such as a mammal, bird or plant to allow lighting networks to monitor the location, status, health and environment of the organism and to adjust the photon signal of the lighting network based on the needs of the organism.
A01K 45/00 - Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
A61M 21/00 - Other devices or methods to cause a change in the state of consciousnessDevices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
Embodiments of the present disclosure provide systems, apparatuses and methods for a facility, such as a feedlot, barn, greenhouse, hospital, school or production facility, with synchronous communication and control of LED lights in lighting arrays for the emission of photon pulses to induce the stimulation of desired biological responses. Further provided herein are mobile real time location units to assist the LED lighting arrays to identify the location or status of an organism and to adjust their photon pulse emissions based on the needs of the organism.
Embodiments of the present disclosure provide systems, apparatuses and methods for regulation hormone production in mammals. Examples include but are not limited to by creating electro-magnetic wave emission pulse trains (photons) of individual color spectrums in sufficient intensity to drive hormone production in a mammal, using a characteristic frequency or pattern to minimize the required input power necessary to regulate hormone production, while also allowing for the monitoring of the power consumption and other variables of the system. By controlling the duty cycle, intensity, wavelength band and frequency of photon signals to a mammal, production of specific hormones can be regulated through the cycling between blue, green, yellow, near-red, far-red, infrared and ultra violet photon modulation.
Embodiments of the present disclosure provide systems, apparatuses and methods for synchronous communication and control of LED lights and sensors in an LED light array containing two or more LED lights. Through the use of a master clock within a gateway and/or a master controller that is in communication with LED lights in an array that is in a facility, such as in a greenhouse, hot house, poultry egg production facility, a hospital, dairy production or other lighting facilities, the gateway and/or master controller is capable of synchronizing the emission of light or photons from an LED light array by generating a master signal that contains commands and time from a master clock within the signal that is transmitted to each of the LED lights within an array.
A01K 45/00 - Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
A61M 21/00 - Other devices or methods to cause a change in the state of consciousnessDevices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
Light emitting diode (LED) apparatus for use in light therapy for hormone regulation to improve mental health and physical health, including sleep, recovery and performance in mammals.
Embodiments described herein provide systems for inducing a desired response in an organism by controlling the duty cycle, wavelength band and frequency of photon bursts to an organism, through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the organism. Devices for inducing a desired response in an organism such as growth, destruction or repair through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments of the present disclosure provide systems, apparatuses and methods for regulation hormone production in mammals. Examples include but are not limited to by creating electro-magnetic wave emission pulse trains (photons) of individual color spectrums in sufficient intensity to drive hormone production in a mammal, using a characteristic frequency or pattern to minimize the required input power necessary to regulate hormone production, while also allowing for the monitoring of the power consumption and other variables of the system. By controlling the duty cycle, intensity, wavelength band and frequency of photon signals to a mammal, production of specific hormones can be regulated through the cycling between blue, green, yellow, near-red, far-red, infrared and ultra violet photon modulation.
Embodiments described herein provide for multi-media structures 100 with growth enhancement additives for multiple stages of growth of an organism such as a plant, fungus or bacteria, including the production of individual media structures and multi-media structures 100 for multi-stage growth. Methods for the production of individual media structure and multi-media structures 100 with growth enhancement additives are provided. Methods for using multi-media structures 100 to grow an organism through multiple stages of growth such as root production, vegetative growth and flowering are also provided.
Embodiments of the present disclosure provide systems, apparatuses and methods for a facility, such as a feedlot, barn, greenhouse, hospital, school or production facility, with synchronous communication and control of LED lights in lighting arrays for the emission of photon pulses to induce the stimulation of desired biological responses. Further provided herein are mobile real time location units to assist the LED lighting arrays to identify the location or status of an organism and to adjust their photon pulse emissions based on the needs of the organism.
Embodiments described herein provide systems for stimulating a desired response, such as ovulation and egg laying, hunger, growth, mood and sexual maturity in birds, such as chickens, turkeys, ducks, quail and ostrich, by controlling the duty cycle, wavelength band and frequency of photon bursts to a bird, through the high frequency modulation of photons in an individual color spectrum to the bird and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the bird.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
11.
Synchronization of lighting networks for agriculture production
Embodiments of the present disclosure provide systems, apparatuses and methods for synchronous communication and control of LED lights and sensors in an LED light array containing two or more LED lights. Through the use of a master clock within a gateway and/or a master controller that is in communication with LED lights in an array that is in a facility, such as in a greenhouse, hot house, poultry egg production facility, a hospital, dairy production or other lighting facilities, the gateway and/or master controller is capable of synchronizing the emission of light or photons from an LED light array by generating a master signal that contains commands and time from a master clock within the signal that is transmitted to each of the LED lights within an array.
A01K 45/00 - Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
A61M 21/00 - Other devices or methods to cause a change in the state of consciousnessDevices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
The present disclosure provides mobile real time location units for use with an organism, such as a mammal, bird or plant to allow lighting networks to monitor the location, status, health and environment of the organism and to adjust the photon signal of the lighting network based on the needs of the organism.
A01K 45/00 - Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
A61M 21/00 - Other devices or methods to cause a change in the state of consciousnessDevices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
The present disclosure provides systems, methods and apparatuses for inducing a desired biological response in an organism through the use of one or more repetitive signals from one or a series of LED lights designed to emit the signal with multiple pulsed components. Each component of the signal contains a one or more light color spectrum or wavelength that is within 50 nm of the peak absorption of a photon receptor of the organism corresponding to the desired biological response. Each component has a repetitive ON duration with an OFF duration and an intensity where the relationship between the ON duration and OFF duration of the first component and the second component induces the desired response in the organism through the stimulation or excitation of a molecule associated with a photoreceptor and the reset of the molecule.
A61M 21/00 - Other devices or methods to cause a change in the state of consciousnessDevices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
Embodiments of the present disclosure provide systems, apparatuses and methods for regulation hormone production in mammals. Examples include but are not limited to by creating electro-magnetic wave emission pulse trains (photons) of individual color spectrums in sufficient intensity to drive homione production in a mammal, using a characteristic frequency or pattern to minimize the required input power necessary to regulate hormone production, while also allowing for the monitoring of the power consumption and other variables of the system. By controlling the duty cycle, intensity, wavelength band and frequency of photon signals to a mammal, production of specific homiones can be regulated through the cycling between blue, green, yellow, near-red, far-red, infrared and ultra violet photon modulation.
09 - Scientific and electric apparatus and instruments
10 - Medical apparatus and instruments
11 - Environmental control apparatus
42 - Scientific, technological and industrial services, research and design
43 - Food and drink services, temporary accommodation
Goods & Services
LED lighting controls for commercial agriculture purposes. Light emitting diode (LED) apparatus for lighting,
incorporated into medical instruments. LED lighting systems for commercial agriculture purposes,
namely, LED plant grow lights; LED lamps; LED lighting
fixtures for use in commercial lighting applications; LED
lighting fixtures; lighting for agricultural purposes,
namely, lighting apparatus and installations for
greenhouses, warehouses, vertical growing facilities,
livestock and poultry barns, feedlots, and hothouses. Leasing of LED lighting control apparatus for commercial
agriculture purposes. Leasing of LED lighting systems for commercial agriculture
purposes.
16.
Photon modulation management system for stimulation of a desired response in birds
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or ayes, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments of the present disclosure provide systems, apparatuses and methods for a facility, such as a feedlot, barn, greenhouse, hospital, school or production facility, with synchronous communication and control of LED lights 206 in lighting arrays for the emission of photon pulses 1318 a, 1318b, 1318c, and 1318d to induce the stimulation of desired biological responses. Further provided herein are mobile real time location units 4202 to assist the LED lighting 206 arrays to identify the location or status of an organism and to adjust their photon pulse emissions based on the needs of the organism.
Embodiments of the present disclosure provide systems, apparatuses and methods for a facility, such as a feedlot, barn, greenhouse, hospital, school or production facility, with synchronous communication and control of LED lights 206 in lighting arrays for the emission of photon pulses 1318 a, 1318b, 1318c, and 1318d to induce the stimulation of desired biological responses. Further provided herein are mobile real time location units 4202 to assist the LED lighting 206 arrays to identify the location or status of an organism and to adjust their photon pulse emissions based on the needs of the organism.
09 - Scientific and electric apparatus and instruments
10 - Medical apparatus and instruments
11 - Environmental control apparatus
Goods & Services
LED lighting controls for commercial agriculture purposes Light emitting diode (LED) apparatus for lighting, incorporated into medical instruments LED lighting systems for commercial agriculture purposes, namely, LED plant grow lights; LED lamps; LED lighting fixtures for use in commercial lighting applications; LED lighting fixtures; Lighting for agricultural purposes, namely, lamps and fixtures for use in greenhouses, warehouses, vertical growing facilities, livestock and poultry barns, feedlots, and hothouses
20.
Method of using photon modulation for regulation of hormones in mammals
Embodiments of the present disclosure provide systems, apparatuses and methods for regulation hormone production in mammals. Examples include but are not limited to by creating electro-magnetic wave emission pulse trains (photons) of individual color spectrums in sufficient intensity to drive hormone production in a mammal, using a characteristic frequency or pattern to minimize the required input power necessary to regulate hormone production, while also allowing for the monitoring of the power consumption and other variables of the system. By controlling the duty cycle, intensity, wavelength band and frequency of photon signals to a mammal, production of specific hormones can be regulated through the cycling between blue, green, yellow, near-red, far-red, infrared and ultra violet photon modulation.
Embodiments of the present disclosure provide systems, apparatuses and methods for regulation hormone production in mammals. Examples include but are not limited to by creating electro-magnetic wave emission pulse trains (photons) of individual color spectrums in sufficient intensity to drive hormone production in a mammal, using a characteristic frequency or pattern to minimize the required input power necessary to regulate hormone production, while also allowing for the monitoring of the power consumption and other variables of the system. By controlling the duty cycle, intensity, wavelength band and frequency of photon signals to a mammal, production of specific hormones can be regulated through the cycling between blue, green, yellow, near-red, far-red, infrared and ultra violet photon modulation.
The present disclosure provides mobile real time location units for use with an organism, such as a mammal, bird or plant to allow lighting networks to monitor the location, status, health and environment of the organism and to adjust the photon signal of the lighting network based on the needs of the organism.
A61B 5/00 - Measuring for diagnostic purposes Identification of persons
G02B 6/293 - Optical coupling means having data bus means, i.e. plural waveguides interconnected and providing an inherently bidirectional system by mixing and splitting signals with wavelength selective means
G16H 20/30 - ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to physical therapies or activities, e.g. physiotherapy, acupressure or exercising
G16H 50/30 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indicesICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for individual health risk assessment
The present disclosure provides mobile real time location units for use with an organism, such as a mammal, bird or plant to allow lighting networks to monitor the location, status, health and environment of the organism and to adjust the photon signal of the lighting network based on the needs of the organism.
A61B 5/00 - Measuring for diagnostic purposes Identification of persons
G02B 6/293 - Optical coupling means having data bus means, i.e. plural waveguides interconnected and providing an inherently bidirectional system by mixing and splitting signals with wavelength selective means
G16H 20/30 - ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to physical therapies or activities, e.g. physiotherapy, acupressure or exercising
G16H 50/30 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indicesICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for individual health risk assessment
24.
SYNCHRONIZATION OF LIGHTING NETWORKS FOR AGRICULTURE PRODUCTION
Embodiments of the present disclosure provide systems, apparatuses and methods for synchronous communication and control of LED lights and sensors in an LED light array containing two or more LED lights. Through the use of a master clock within a gateway and/or a master controller that is in communication with LED lights in an array that is in a facility, such as in a greenhouse, hot house, poultry egg production facility, a hospital, dairy production or other lighting facilities, the gateway and/or master controller is capable of synchronizing the emission of light or photons from an LED light array by generating a master signal that contains commands and time from a master clock within the signal that is transmitted to each of the LED lights within an array.
The present disclosure provides systems, methods and apparatuses for inducing a desired biological response in an organism 122 through the use of one or more repetitive signals from one or a series of LED lights 106 designed to emit the signal with multiple pulsed components. Each component of the signal contains a one or more light color spectrum or wavelength that is within 50 nm of the peak absorption of a photon receptor of the organism corresponding to the desired biological response. Each component has a repetitive ON duration with an OFF duration and an intensity where the relationship between the ON duration and OFF duration of the first component 117 and the second component 119 induces the desired response in the organism 122 through the stimulation or excitation of a molecule associated with a photoreceptor and the reset of the molecule.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
Embodiments of the present disclosure provide systems, apparatuses and methods for synchronous communication and control of LED lights and sensors in an LED light array containing two or more LED lights. Through the use of a master clock within a gateway and/or a master controller that is in communication with LED lights in an array that is in a facility, such as in a greenhouse, hot house, poultry egg production facility, a hospital, dairy production or other lighting facilities, the gateway and/or master controller is capable of synchronizing the emission of light or photons from an LED light array by generating a master signal that contains commands and time from a master clock within the signal that is transmitted to each of the LED lights within an array.
The present disclosure provides systems, methods and apparatuses for inducing a desired biological response in an organism 122 through the use of one or more repetitive signals from one or a series of LED lights 106 designed to emit the signal with multiple pulsed components. Each component of the signal contains a one or more light color spectrum or wavelength that is within 50 nm of the peak absorption of a photon receptor of the organism corresponding to the desired biological response. Each component has a repetitive ON duration with an OFF duration and an intensity where the relationship between the ON duration and OFF duration of the first component 117 and the second component 119 induces the desired response in the organism 122 through the stimulation or excitation of a molecule associated with a photoreceptor and the reset of the molecule.
A01K 45/00 - Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
Embodiments described herein provide systems for optimizing organism growth, destruction or repair, by controlling the duty cycle, wavelength band and frequency of photon bursts to an organism, through the high frequency modulation of photons in an individual color spectrum to the organism, where the photon modulation is based upon the specific needs of the organism. Devices for the optimization of organism growth, destruction or repair through the high frequency modulation of photons of individual color spectrum to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems for stimulating a desired response, such as ovulation and egg laying, hunger, growth, mood and sexual maturity in birds, such as chickens, turkeys, ducks, quail and ostrich, by controlling the duty cycle, wavelength band and frequency of photon bursts to a bird, through the high frequency modulation of photons in an individual color spectrum to the bird and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the bird.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
30.
Photon modulation management system for stimulation of a desired response in birds
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or ayes, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments described herein provide systems for inducing a desired response in an organism by controlling the duty cycle, wavelength band and frequency of photon bursts to an organism, through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the organism. Devices for inducing a desired response in an organism such as growth, destruction or repair through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or ayes, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or aves, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments described herein provide systems for stimulating a desired response, such as ovulation and egg laying, hunger, growth, mood and sexual maturity in birds, such as chickens, turkeys, ducks, quail and ostrich, by controlling the duty cycle, wavelength band and frequency of photon bursts to a bird, through the high frequency modulation of photons in an individual color spectrum to the bird and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the bird.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
09 - Scientific and electric apparatus and instruments
11 - Environmental control apparatus
44 - Medical, veterinary, hygienic and cosmetic services; agriculture, horticulture and forestry services
Goods & Services
LED lighting controls for agriculture purposes. Light emitting diode (LED) plant grow lights; LED lamps; LED
lighting fixtures for use in commercial lighting
applications; LED (light emitting diode) lighting fixtures;
lighting for agricultural purposes, namely, lamps and
fixtures. Plant breeding; plant nursery services; agriculture and
horticulture services, namely, plant selection and
propagation of plants, plant material, and produce; plant
care services; greenhouse services.
09 - Scientific and electric apparatus and instruments
11 - Environmental control apparatus
44 - Medical, veterinary, hygienic and cosmetic services; agriculture, horticulture and forestry services
Goods & Services
LED lighting controls for agriculture purposes. Light Emitting Diode (LED) plant grow lights; LED lamps; LED
lighting fixtures for use in commercial lighting
applications; LED (light emitting diode) lighting fixtures;
lighting for agricultural purposes, namely, lamps and
fixtures. Plant breeding; plant nursery services; agriculture and
horticulture services, namely, plant selection and
propagation of plants, plant material, and produce; plant
care services; greenhouse services.
37.
Photon modulation management system for stimulation of a desired response in birds
Embodiments described herein provide systems for stimulating a desired response, such as ovulation and egg laying, hunger, growth, mood and sexual maturity in birds, such as chickens, turkeys, ducks, quail and ostrich, by controlling the duty cycle, wavelength band and frequency of photon bursts to a bird, through the high frequency modulation of photons in an individual color spectrum to the bird and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the bird.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
Embodiments described herein provide systems for inducing a desired response in an organism by controlling the duty cycle, wavelength band and frequency of photon bursts to an organism, through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the organism. Devices for inducing a desired response in an organism such as growth, destruction or repair through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems and methods for stimulating a desired response 200, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or aves, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts 202 within a photon signal 118 to a bird 122, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments described herein provide systems and methods for stimulating a desired response 200, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or aves, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts 202 within a photon signal 118 to a bird 122, where the photon modulation and duty cycle is based upon the specific needs of the bird.
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or ayes, by controlling the pulsing of two or more different wavelength bands, duty cycle, and frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
44 - Medical, veterinary, hygienic and cosmetic services; agriculture, horticulture and forestry services
Goods & Services
Plant breeding; Plant nursery services; Agriculture and horticulture services, namely, plant selection and propagation of plants, plant material, and produce; Plant care services; Greenhouse services
44 - Medical, veterinary, hygienic and cosmetic services; agriculture, horticulture and forestry services
Goods & Services
Plant breeding; Plant nursery services; Agriculture and horticulture services, namely, plant selection and propagation of plants, plant material, and produce; Plant care services; Greenhouse services
44.
Photon modulation management system for stimulation of a desired response in birds
Embodiments described herein provide systems and methods for stimulating a desired response, such as ovulation and egg laying, fertility, hunger, growth, mood and sexual maturity in birds or aves, by controlling the pulsing of two or more different wavelength bands and cycle, frequency of photon bursts within a photon signal to a bird, where the photon modulation and duty cycle is based upon the specific needs of the bird.
G02B 26/04 - Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the intensity of light by periodically varying the intensity of light, e.g. using choppers
Embodiments described herein provide for multi-media structures 100 with growth enhancement additives for multiple stages of growth of an organism such as a plant, fungus or bacteria, including the production of individual media structures and multi-media structures 100 for multi-stage growth. Methods for the production of individual media structure and multi-media structures 100 with growth enhancement additives are provided. Methods for using multi-media structures 100 to grow an organism through multiple stages of growth such as root production, vegetative growth and flowering are also provided.
Embodiments described herein provide systems (200) for inducing a desired response in an organism (122) by controlling the duty cycle, wavelength band and frequency of photon bursts (202) and (204) to an organism (122), through the photon modulation of one or more photon pulse trains (202) in conjunction with one or more different photon pulse trains (204) to the organism (122) and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the organism (122). Devices for inducing a desired response in an organism (122) such as growth, destruction or repair through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism (122) are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems (200) for inducing a desired response in an organism (122) by controlling the duty cycle, wavelength band and frequency of photon bursts (202) and (204) to an organism (122), through the photon modulation of one or more photon pulse trains (202) in conjunction with one or more different photon pulse trains (204) to the organism (122) and duty cycle, where the photon modulation and duty cycle is based upon the specific needs of the organism (122). Devices for inducing a desired response in an organism (122) such as growth, destruction or repair through the photon modulation of one or more photon pulse trains in conjunction with one or more different photon pulse trains to the organism (122) are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems for optimizing organism growth, destruction or repair, by controlling the duty cycle, wavelength band and frequency of photon bursts (202, 204) to an organism (122), through the high frequency modulation of photons in an individual color spectrum to the organism, where the photon modulation is based upon the specific needs of the organism. Devices for the optimization of organism growth, destruction or repair through the high frequency modulation of photons of individual color spectrum to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems for optimizing organism growth, destruction or repair, by controlling the duty cycle, wavelength band and frequency of photon bursts (202, 204) to an organism (122), through the high frequency modulation of photons in an individual color spectrum to the organism, where the photon modulation is based upon the specific needs of the organism. Devices for the optimization of organism growth, destruction or repair through the high frequency modulation of photons of individual color spectrum to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.
Embodiments described herein provide systems for optimizing organism growth, destruction or repair, by controlling the duty cycle, wavelength band and frequency of photon bursts to an organism, through the high frequency modulation of photons in an individual color spectrum to the organism, where the photon modulation is based upon the specific needs of the organism. Devices for the optimization of organism growth, destruction or repair through the high frequency modulation of photons of individual color spectrum to the organism are also provided. Further provided are methods for the optimization of organism growth, destruction or repair through the use of high frequency modulation of photons of individual color spectrums.