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    • 41. 发明公开
    • VISUAL FUNCTION TESTING DEVICE
    • VORRICHTUNG ZUM TESTEN VON SICHTFUNKTIONEN
    • EP2561799A1
    • 2013-02-27
    • EP11771941.9
    • 2011-04-15
    • Panasonic Corporation
    • KAWAMURA, Ryo
    • A61B3/028A61B3/024A61B3/08
    • A61B3/02A61B3/024A61B3/032A61B3/08
    • A visual function testing device includes: a visual target image presentation unit (2) that presents a visual target image; a visual target image rendering unit (13) that renders the visual target image to be presented on the visual target image presentation unit (2); a visual function test item selection unit (11) that selects an item of a visual function test; a visual target image generation unit (12) that generates a visual target image corresponding to the item of the test, which is selected by the visual function test item selection unit (11); a viewpoint distance input unit (14) that inputs a distance between the visual target image presentation unit (2) and a viewpoint of an observer; and a visual angle input unit (15) that inputs an angle to be made by the visual target image and the viewpoint of the observer, wherein, based on a viewpoint distance inputted by the viewpoint distance input unit (14) and on a visual angle inputted by the visual angle input unit (15), the visual target image rendering unit (13) calculates a display size and display position of a visual target image corresponding to a visual acuity or visual field test selected by the visual function test item selection unit (11), and renders the visual target image with the calculated display size at the calculated display position.
    • 视觉功能测试装置包括:呈现视觉目标图像的视觉目标图像呈现单元(2); 视觉目标图像呈现单元(13),其将所述可视目标图像呈现在所述可视目标图像呈现单元(2)上; 视觉功能测试项目选择单元(11),其选择视觉功能测试的项目; 视觉目标图像生成单元,其生成由所述视觉功能测试项目选择单元(11)选择的与所述测试项目相对应的视觉目标图像; 输入视觉目标图像呈现单元(2)和观察者的视点之间的距离的视点距离输入单元(14) 以及视角输入单元(15),其输入由所述视觉目标图像和所述观察者的视点作出的角度,其中,基于由所述视点距离输入单元(14)输入的视点距离和视角 由视角输入单元(15)输入的视觉目标图像渲染单元(13)计算与由视觉功能测试项目选择单元选择的视力或视野测试相对应的视觉目标图像的显示尺寸和显示位置 (11),并且将所计算的显示尺寸的视觉目标图像呈现在所计算的显示位置。
    • 42. 发明公开
    • Control method of a fundus examination apparatus
    • Steuerverfahrenfüreine Fundus-Untersuchungsvorrichtung
    • EP2449957A1
    • 2012-05-09
    • EP11187640.5
    • 2011-11-03
    • Nidek Co., Ltd.
    • Torii, HisanariMurata, ToshioKondo, Naoyuki
    • A61B3/024A61B3/12A61B3/10
    • A61B3/0058A61B3/0025A61B3/024A61B3/102A61B3/12A61B3/1225A61B3/18
    • A control method of a fundus examination apparatus configured to examine a fundus (Ef) of an examinee's eye (E), includes: processing an examination data obtained by one of fundus examination apparatuses, which are a perimeter (400) configured to measure a visual field and an optical coherence tomography device (100) configured to obtain a tomographic image of the fundus, to thereby obtain positional information relating to an abnormal site of the fundus; setting an examination position on the fundus in the other fundus examination apparatus which is the perimeter or the optical coherence tomography device based on the positional information; and examining the abnormal site of the fundus by controlling the other fundus examination apparatus based on the set examination position.
    • 一种眼底检查装置的配置以检查被检眼(E)的眼底(Ef)的控制方法,包括:处理作为被配置为测量视觉的周边(400)的眼底检查装置之一获得的检查数据 场和光学相干断层摄影装置(100),被配置为获得眼底的断层图像,从而获得与眼底异常部位有关的位置信息; 基于位置信息,在作为周边或光学相干断层摄影装置的另一眼底检查装置的眼底上设置检查位置; 并根据设定的检查位置对其他眼底检查装置进行控制,检查眼底异常部位。
    • 46. 发明公开
    • OPHTHALMIC INSPECTION DEVICE
    • OPHTHALMISCHE INSPEKTIONSVORRICHTUNG
    • EP2165645A1
    • 2010-03-24
    • EP07767785.4
    • 2007-06-28
    • Shinko Seiki Company, LimitedMatsumoto, Chota
    • MATSUMOTO, ChotaYUUKI, Hiroshi
    • A61B3/024
    • A61B3/032A61B3/0091A61B3/024
    • [Problem to be Solved]
      Examination more reliable than ever is to be realized.
      [Solution]
      An unpolarized light beam emitted from a target presenting light source (12) is collimated by a collimator lens (20), and is made to be incident on a target presenting liquid crystal shutter (22), while an unpolarized light beams emitted from a background presenting light source (14) is collimated by a collimator lens (30), and is made to be incident on a background presenting liquid crystal shutter (32). The liquid crystal shutters (22, 32) have shutter patterns which are reverses to each other. The target and background light beams emerging from said liquid crystal shutters (22, 32) are combined with each other, together with their polarization states, by a half prism (24) acting as combining means. The resultant unpolarized light beam resulting from the combining is projected through a magnifying optical system (26) onto an eye to be examined. Since an unpolarized light beam is projected onto the eye, reliable examination, unaffected by polarization, can be realized.
    • [待解决的问题]比以往任何时候都更加可靠的考试要实现。 [解决方案]从目标呈现光源(12)发射的非偏振光束被准直透镜(20)准直,并使其入射到目标呈现液晶快门(22)上,同时发出非偏振光束 从背景呈现光源(14)被准直透镜(30)准直,并使其入射到背景呈现液晶快门(32)上。 液晶快门(22,32)具有彼此相反的快门图案。 从所述液晶快门(22,32)出射的目标和背景光束通过作为组合装置的半棱镜​​(24)与它们的偏振态彼此组合。 由组合产生的所得非偏振光束通过放大光学系统(26)投射到待检查的眼睛上。 由于非偏振光束投射到眼睛上,可以实现不受极化影响的可靠检查。