Eye disease prevention and treatment device for dynamic eye use by rotating lenses
A lens and eye disease technology, applied in the field of dynamic eye system, can solve the problems of little effect and no eye axis
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
specific Embodiment approach 1
[0097] combine Figure 1 to Figure 10 This embodiment will be described. This embodiment is an eye disease prevention and treatment device for dynamic eye use by rotating the lens. The lenses include: lenses with prism characteristics, and lenses with regular changing spherical power in the peripheral area; the eye disease prevention and treatment devices include: glasses, reading frames, and training instruments for treating myopia, hyperopia, astigmatism, and strabismus , prevention and treatment of amblyopia; these three types of devices all contain a control device for rotating the lens; it is characterized in that,
[0098] The eye disease prevention and treatment device of the rotating lens includes:
[0099] carrier,
[0100] controls located on the carrier for rotational control of the optics, and
[0101] A lens having at least prismatic features on a carrier, and / or
[0102] Lenses with gradual or gradual + abrupt changes in spherical power located on the carrier...
specific Embodiment approach 2
[0108] combine Figure 1 to Figure 1-3 Describe this embodiment, in this embodiment, the control device that is located on the carrier to control the rotation of the lens: figure 1 within the framework of the Picture 1-1 The gear on the shaft of the miniature stepper motor shown drives the inlaid Figure 1-2 on a circular slide Figure 1-3 The lens rotation on the hollow gear completes the precise control of the dynamic rotation degree of the lens under the control of the chip program.
[0109] The control device for controlling the rotation of the lens can also be a hairspring + gear control device based on the watch principle, but the hairspring control is relatively simple, and it is difficult to switch the control mode according to the demand.
[0110] The control device for controlling the rotation of the lens can also be a manual control device, and the gear inlaid with the lens exposed on the edge of the frame is moved by fingers, but the manual control cannot be co...
specific Embodiment approach 3
[0114] combine Figure 2 ~ Figure 4-5 Describe this embodiment. In this embodiment, the lens with at least prism characteristics, and / or, at least the lens with the characteristics of gradual change or slow change+steep change in spherical power in the peripheral area includes: ① mirror super area completed by 3D printing ②Thin lens with subdivided grids; ②Thin lens with injection molded mirror subdivision; ③Thin lens composed of micro prism strips; ④Ordinary prism lens; ⑤Ordinary spherical lens + prism lens;
[0115] in,
[0116] (1) The thin-body lenses that are subdivided by the specular surface super grids that are completed by 3D printing include: figure 2 The 3D printed spherical mirror + prism composed of a thin-body lens composed of a super grid subdivision of the mirror surface shown; diagram 2-1 The 3D printed spherical lens + prism composed of the super-cell subdivision of the peripheral vision mirror shown in the above lens has the characteristics of gradual ch...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


