Anti-infective and therapeutic electromagnetic emission methods and devices
A light emitting device for video displays with anti-infective and therapeutic electromagnetic emission methods and devices is disclosed. The light emitting device for video displays with anti-infective and therapeutic electromagnetic emission methods and devices uses non-visible and/or visible electromagnetic radiation on living species, including but not limited to people and animals, to provide treatments against infections and/or provide photobiomodulation treatments to improve health and wellness.
1 . An electronic eyewear device for providing photobiomodulation (“PBM”) light therapy to a retina of a person wearing the electronic eyewear device, the electronic eyewear device comprising:
at least two cameras configured to capture video images;
at least two audio speakers configured to provide audio output;
at least one video display device;
a first plurality of light emitters configured to receive first control signals that cause the first plurality of light emitters to emit wavelengths of light for producing video images on the at least one video display device; and
a second plurality of light emitters configured to emit PBM wavelengths of light, wherein the PBM wavelengths of light comprise one or more PBM wavelengths of light within a range of 600 nm to 1400 nm known to stimulate mitochondria cells in humans and cause the mitochondria cells to produce additional ATP,
wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light for a controlled period of time before noon as it relates to a geographical location of the electronic eyewear device, and wherein the controlled period of time the PBM wavelengths of light are emitted totals at least two minutes before noon within a single day.
2 . The electronic eyewear device of claim 1 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light within a range of 600 nm to 700 nm towards the retina.
3 . The electronic eyewear device of claim 1 , wherein the second plurality of light emitters is integrated into the at least one video display device.
4 . The electronic eyewear device of claim 1 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of lights through at least one optic that is configured to focus the PBM wavelengths of light into eyes of the person wearing the electronic eyewear device.
5 . The electronic eyewear device of claim 1 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light in response to the electronic eyewear device receiving biological information related to the person wearing the electronic eyewear device, wherein the biological information is received from a remote electronic device.
6 . The electronic eyewear device of claim 1 , wherein the at least two audio speakers are bone conduction speakers.
7 . The electronic eyewear device of claim 1 , further comprising quantum dots.
8 . The electronic eyewear device of claim 1 , further comprising at least two lenses.
9 . An electronic eyewear device for providing photobiomodulation (“PBM”) light therapy to a retina of a person wearing the electronic eyewear device, the electronic eyewear device comprising:
at least two cameras configured to capture video images, wherein at least one of the at least two cameras is configured to be a front view facing camera and at least one of the at least two cameras is configured to be a rear view facing camera;
at least two audio speakers configured to provide audio output;
at least one video display device;
a first plurality of light emitters configured to receive first control signals that cause the first plurality of light emitters to emit wavelengths of light for producing video images on the at least one video display device; and
a second plurality of light emitters configured to emit PBM wavelengths of light, wherein the PBM wavelengths of light comprise one or more PBM wavelengths of light within a range of 600 nm to 1400 nm known to stimulate mitochondria cells in humans and cause the mitochondria cells to produce additional ATP,
wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light for a controlled period of time before noon as it relates to a geographical location of the electronic eyewear device, and wherein the controlled period of time the PBM wavelengths of light are emitted totals at least two minutes before noon within a single day.
10 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light within a range of 600 nm to 700 nm towards the retina.
11 . The electronic eyewear device of claim 9 , further comprising a light emitter configured to emit the PBM wavelengths of light within a range of 750 nm to 1400 nm towards a temple of the person wearing the electronic eyewear device.
12 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is integrated into the at least one video display device.
13 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light in response to the electronic eyewear device receiving biological information related to the person wearing the electronic eyewear device, wherein the biological information is received from a remote electronic device.
14 . The electronic eyewear device of claim 9 , wherein the at least two audio speakers are bone conduction speakers.
15 . The electronic eyewear device of claim 9 , further comprising micro-LEDs.
16 . The electronic eyewear device of claim 9 , further comprising quantum dots.
17 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light within the range of 600 nm to 1400 nm towards a face of the person for the controlled period of time at a specific time of day in response to the electronic eyewear device receiving data wirelessly from a wearable device worn by the person wearing the electronic eyewear device, and wherein the controlled period of time totals at least one consecutive minute before noon within the single day.
18 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light within the range of 600 nm to 1400 nm towards eyes of the person through at least one optic that is configured to focus the PBM wavelengths of light into the eyes of the person wearing the electronic eyewear device while the person is viewing the video images on the electronic eyewear device.
19 . The electronic eyewear device of claim 9 , wherein at least 5% of the first plurality of light emitters are configured to only emit the PBM wavelengths of light within a range of 585 nm to 750 nm towards eyes of the person for a controlled constant duration of time at a specific time of day before noon.
20 . The electronic eyewear device of claim 9 , wherein the rear view facing camera is configured to be retractable.
21 . The electronic eyewear device of claim 9 , wherein at least one light emitter of the second plurality of light emitters is integrated within a frame of the electronic eyewear device.
22 . The electronic eyewear device of claim 9 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light in response to the electronic eyewear device receiving biological information from a second device, wherein the biological information includes information related to the person wearing the electronic eyewear device and impacts second control signals received by the second plurality of light emitters emitting the PBM wavelengths of light.
23 . An electronic eyewear device for providing photobiomodulation (“PBM”) light therapy to a retina of a person wearing the electronic eyewear device, the electronic eyewear device comprising:
at least two cameras configured to capture video images, wherein at least one of the at least two cameras is configured to be a front view facing camera and at least one of the at least two cameras is configured to be a rear view facing camera;
at least two bone conduction audio speakers configured to provide audio output;
at least one video display device;
a first plurality of light emitters configured to receive first control signals that cause the first plurality of light emitters to emit wavelengths of light for producing video images on the at least one video display device; and
a second plurality of light emitters configured to emit PBM wavelengths of light, wherein the PBM wavelengths of light comprise one or more PBM wavelengths of light within a range of 600 nm to 1400 nm known to stimulate mitochondria cells in humans and cause the mitochondria cells to produce additional ATP,
wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light for a controlled period of time before noon as it relates to a geographical location of the electronic eyewear device, and wherein the controlled period of time the PBM wavelengths of light are emitted totals at least two minutes before noon within a single day.
24 . The electronic eyewear device of claim 23 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light in response to data provided to the electronic eyewear device by a remote device that provides biofeedback information from the person wearing the electronic eyewear device, and wherein the data impacts a control of the emission of the PBM wavelengths of light.
25 . The electronic eyewear device of claim 23 , further comprising at least one optic configured to focus the PBM wavelengths of light towards at least one eye or a temple of the person wearing the electronic eyewear device.
26 . The electronic eyewear device of claim 23 , wherein the second plurality of light emitters is configured to emit the PBM wavelengths of light when the at least one video display device is displaying the video images.
27 . An electronic eyewear device for providing photobiomodulation (“PBM”) light therapy to a retina of a person wearing the electronic eyewear device, the electronic eyewear device comprising:
at least one video display device;
at least two cameras configured to capture video images;
at least two audio speakers configured to provide audio output; and
a plurality of light emitters configured to receive first control signals that cause the plurality of light emitters to emit wavelengths of light for producing video images on the at least one video display device,
wherein a percentage of the plurality of light emitters are configured to only emit PBM wavelengths of light within a range of 585 nm to 750 nm for a controlled period of time before noon as it relates to a geographical location of the electronic eyewear device, and wherein the controlled period of time the PBM wavelengths of light are emitted totals at least one minute before noon within a single day.
28 . The electronic eyewear device of claim 27 , further comprising a software application configured to control at least one of:
a percentage of light emitters that emit the PBM wavelengths of light,
which of the light emitters emit the PBM wavelengths of light,
the time of day the light emitters emit the PBM wavelengths of light,
energy levels the light emitters emitting the PBM wavelengths of light, and
a duration of time the light emitters emit the PBM wavelengths of light.
29 . The electronic eyewear device of claim 27 , wherein the electronic eyewear device is configured to be in wireless communication with another electronic communications device.
30 . The electronic eyewear device of claim 27 , wherein the PBM wavelengths of light are emitted into eyes of the person wearing the electronic eyewear device while the person is viewing the video images on the electronic eyewear device.