Bionic vision training instrument capable of achieving double light supplement for fundus posterior pole and fundus peripheral view
A peripheral vision and visual training technology, applied in the field of bionic visual training equipment, can solve the problems of insufficient tensile tension of the sclera and insufficient developmental vitality of the sclera, and achieve the effect of improving the blood circulation of the visual field and improving the curative effect
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specific Embodiment approach 1
[0093] Specific embodiment one: the present invention in order to solve above-mentioned high hypermetropia caused by insufficient sclera developmental vitality, myopia caused by insufficient sclera tensile tension, astigmatism or paracentral fixation strabismus, and the amblyopia problem caused by the present invention, in the prior art Basically, by using infrared light that is safer than red light and has stronger penetrating power and can clean up garbage in blood vessels, it provides infrared supplementary light for the posterior pole of the fundus and the peripheral vision of the fundus. To provide the ophthalmology community with a bionic vision training device that can double fill light for the posterior pole of the fundus and the peripheral vision of the fundus. The bionic visual training instrument of double supplementary light comprises: carrier;
[0094] a light-transmitting mask on said carrier, or
[0095] A light-transmitting mask that allows the light-emitting ...
specific Embodiment approach 2
[0120] Specific embodiment two: when the light-emitting viewpoint on the carrier is displayed by a liquid crystal screen or an organic light-emitting diode screen, the infrared emitting tube is arranged in the center of the window;
specific Embodiment approach 3
[0121] Specific implementation mode three: the infrared emission tube is arranged in a place that is invisible to human eyes on the opposite side of the liquid crystal screen or organic light-emitting diode screen that is closer to the human face, and the infrared rays emitted by the infrared emission tube diffuse through the liquid crystal screen or organic light-emitting diode screen. After reflection, it irradiates the fundus of the human eye;
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