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    • 3. 发明申请
    • BINOCULAR VISUAL PERFORMANCE MEASURING METHOD, BINOCULAR VISUAL PERFORMANCE MEASURING PROGRAM, EYEGLASS LENS DESIGN METHOD AND EYEGLASS LENS MANUFACTURING METHOD
    • 双向视觉性能测量方法,双向视觉性能测量程序,眼镜透镜设计方法和眼镜镜头制造方法
    • US20120105609A1
    • 2012-05-03
    • US13283110
    • 2011-10-27
    • Hua QI
    • Hua QI
    • H04N13/04B23Q17/00
    • A61B3/08Y10T29/49764
    • A binocular visual performance measuring method including: a parallax image displaying step of displaying left and right parallax images at a predetermined measurement start position on a display screen when a measurement item is designated; a parallax image changing step of changing one of the left and right parallax images relative to the other of the left and right parallax images in accordance with the designated measurement item; a timing detecting step of detecting a timing when the subject viewing the left and right parallax images from a position a predetermined distance away from the display screen becomes unable to achieve fusion of the left and right parallax images; and a measurement value calculating step of calculating a measurement value of the designated measurement item based on the predetermined distance and a difference between the left and right parallax images defined at the detected timing.
    • 一种双目视觉性能测量方法,包括:视差图像显示步骤,当指定测量项目时,在显示屏幕上的预定测量开始位置显示左视差图像和右视差图像; 视差图像改变步骤,根据指定的测量项目,相对于左视差图像和右视差图像中的另一个改变左视差图像和右视差图像之一; 定时检测步骤,用于当距离显示屏幕预定距离的位置观看左右视差图像的对象变得不能实现左视差图像和右视差图像的融合时,检测定时; 以及测量值计算步骤,基于预定距离计算指定测量项目的测量值以及在检测到的定时定义的左视差图像和右视差图像之间的差值。
    • 4. 发明申请
    • SPECTACLE LENS AND METHOD FOR DESIGNING THE SAME
    • US20220121038A1
    • 2022-04-21
    • US17423317
    • 2020-06-18
    • Toshiaki SONEHARAHua QI
    • Toshiaki SONEHARAHua QI
    • G02C7/02
    • An object is to not lose an effect of suppressing the progression of myopia or hyperopia even in a peripheral area of a spectacle lens. A spectacle lens and a technology related thereto are provided, the spectacle lens including: a first area that causes light rays incident on an object-side face of the lens to exit from an eyeball-side face of the lens and to converge at a predetermined position A on a retina of a wearer; and a plurality of second areas configured to cause light rays to converge at a position B on the object side or a position C on the distal side relative to the position A, wherein, in the first area in a peripheral area of the spectacle lens that is a radius range from 4.5 mm to 25 mm of a lens center, a refractive power error in a meridional direction and a refractive power error in a sagittal direction have values that cause light rays to converge in a direction extending from a vicinity of the position A toward the position B if the second areas cause the light rays to converge at the position B, or have values that cause light rays to converge in a direction extending from the vicinity of the position A toward the position C if the second areas cause the light rays to converge at the position C.