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    • 7. 发明公开
    • HAND-HELD VISION DETECTING DEVICE AND VISION DETECTING METHOD
    • TRAGBARE SICHTNACHWEISVORRICHTUNG UND SICHTNACHWEISVERFAHREN
    • EP3069651A4
    • 2017-08-23
    • EP14861549
    • 2014-09-18
    • SHENZHEN CERTAINN TECH CO LTDSHENZHEN MOPTIM IMAGING TECHNIQUE CO LTD
    • WANG HUIZHEN YIGUO SHUGUANGHE WEIHONGLUAN DUNLI PENG
    • A61B3/036
    • A61B3/032A61B3/0008A61B3/0075A61B3/036A61B2560/0431
    • Disclosed are a hand-held vision detecting device and a method for using the hand-held vision detecting device to realize various eyesight measurements without wearing glasses and the steps therefor, wherein the hand-held vision detecting device at least comprises: an imaging lens group consisting of at least one imaging lens (16) and an eye chart (4). The cornea (15) of the subject can be located at the focal point at one side f the imaging lens group (16). The center of the eye chart (4) is provided at the other side of the imaging lens group (16) and can move forwards and backwards along the optical path. By using this device, the following functions can be achieved: 1. visual acuity measurement of the naked eye; 2. corrected visual acuity measurements; 3. measurements for detecting the strength of the glasses which should be worn when the corrected visual acuity is 1.0; 4. poor vision and amblyopia vision detection; and 5. astigmatism detection. People can detect vision anytime and anywhere through this device and detection method via simple and easy operations, and the detection results are accurate.
    • 本发明公开了一种手持式视力检测装置以及使用该手持式视力检测装置实现各种视力测量而无需佩戴眼镜及其步骤,其中手持式视力检测装置至少包括:摄像透镜组 包括至少一个成像透镜(16)和视力表(4)。 对象的角膜(15)可以位于成像透镜组(16)的一侧的焦点处。 视力表(4)的中心设置在成像透镜组(16)的另一侧,并且可以沿着光路前后移动。 通过使用此设备,可以实现以下功能:1.肉眼视力测量; 2.矫正视力测量; 3.用于检测当矫正视力为1.0时应该佩戴的眼镜的强度的测量; 4.视力不佳和弱视视觉检测; 和5.散光检测。 人们可以通过该设备和检测方法随时随地通过简单易用的操作检测视力,检测结果准确无误。
    • 9. 发明公开
    • HAND-HELD VISION DETECTING DEVICE AND VISION DETECTING METHOD
    • TRAGBARE SICHTNACHWEISVORRICHTUNG UND SICHTNACHWEISVERFAHREN
    • EP3069651A1
    • 2016-09-21
    • EP14861549.5
    • 2014-09-18
    • Shenzhen Certainn Technology Co., LtdShenzhen Moptim Imaging Technique Co., Ltd.
    • WANG, HuiZHEN, YiGUO, ShuguangHE, WeihongLUAN, DunLI, Peng
    • A61B3/036
    • A61B3/032A61B3/0008A61B3/0075A61B3/036A61B2560/0431
    • Disclosed are a hand-held vision detecting device and a method for using the hand-held vision detecting device to realize various eyesight measurements without wearing glasses and the steps therefor, wherein the hand-held vision detecting device at least comprises: an imaging lens group consisting of at least one imaging lens (16) and an eye chart (4). The cornea (15) of the subject can be located at the focal point at one side f the imaging lens group (16). The center of the eye chart (4) is provided at the other side of the imaging lens group (16) and can move forwards and backwards along the optical path. By using this device, the following functions can be achieved: 1. visual acuity measurement of the naked eye; 2. corrected visual acuity measurements; 3. measurements for detecting the strength of the glasses which should be worn when the corrected visual acuity is 1.0; 4. poor vision and amblyopia vision detection; and 5. astigmatism detection. People can detect vision anytime and anywhere through this device and detection method via simple and easy operations, and the detection results are accurate.
    • 公开了一种手持式视觉检测装置和使用手持式视觉检测装置来实现不戴眼镜的各种视力测量及其步骤的方法,其中手持式视觉检测装置至少包括:成像透镜组 由至少一个成像透镜(16)和眼图(4)组成。 受试者的角膜(15)可以位于成像透镜组(16)的一侧的焦点处。 眼图(4)的中心设置在成像透镜组(16)的另一侧,并且可以沿着光路向前和向后移动。 通过使用该装置,可以实现以下功能:1.肉眼的视力测量; 2.矫正视力测量; 3.用于检测当矫正视力为1.0时应佩戴的眼镜强度的测量; 视力不佳和弱视视力检测不佳; 和5.散光检测。 人们可以通过简单易用的操作,通过这种设备随时随地检测视觉和检测方法,检测结果准确。
    • 10. 发明公开
    • A microscope for ophtalmologic surgery
    • 用于眼科手术的显微镜
    • EP2564762A1
    • 2013-03-06
    • EP12005889.6
    • 2012-08-14
    • Kabushiki Kaisha Topcon
    • Sato, ToshiakiTakeda, TakanoriKitajima, Nobuaki
    • A61B3/00A61B3/036A61B3/103A61B3/13A61B3/14A61F9/007
    • A61B3/13
    • According to an embodiment, an attachment is attached to a main body part and has multiple bright points arranged in a ring. A calculation part calculates a first astigmatic axis angle based on an image obtained by using an imaging optical system to photograph the patient's eye while the multiple bright points are projected thereto. A storage stores the calculated first astigmatic axis angle and/or a second astigmatic axis angle measured before surgery. A mechanism changes the orientation of the main body part. A first input part inputs orientation information indicating the orientation of the main body part. A correction part corrects the first astigmatic axis angle and/or the second astigmatic axis angle based on the input orientation information. A display part displays the corrected first astigmatic axis angle and/or the corrected second astigmatic axis angle.
    • 根据一个实施例,附件附接到主体部分并具有布置在环中的多个亮点。 计算部分基于通过使用成像光学系统获得的图像来计算第一散光轴角度,以在投影多个亮点的同时拍摄患者的眼睛。 存储器存储在手术之前测量的计算的第一散光轴线角度和/或第二散光轴线角度。 机制改变了主体部分的方向。 第一输入部分输入表示主体部分的取向的取向信息。 校正部件基于输入的朝向信息校正第一散光轴角度和/或第二散光轴角度。 显示部分显示校正后的第一散光轴角度和/或校正后的第二散光轴角度。