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    • 35. 发明公开
    • FERN-DURCHBLICKPUNKT-BESTIMMUNG FÜR EIN BRILLENGLAS
    • 玻璃玻璃的远景透视测定
    • EP3304183A1
    • 2018-04-11
    • EP17740331.8
    • 2017-07-05
    • Carl Zeiss Vision International GmbH
    • CABEZA-GUILLÈN, Jesús-MiguelMANI, SubhashiniGAMPERLING, Michael
    • G02C13/00A61B3/00A61B3/11
    • G02C13/005A61B3/08A61B3/111
    • In a method for determining a distance visual point on a spectacle lens (12, 14) which is receivable in a spectacle frame (16) and which has a frame plane (69), an image, lying in an image plane (42), of at least one portion of a spectacle frame (16) worn by a subject (68) is captured by a camera (36) with an optical axis (50) while the subject (68) looks into the camera (36) with a viewing direction (17, 17') of at least one eye (60, 62) passing through the frame plane (69). In so doing, a pantoscopic angle (α') of the spectacle frame (16) related to the position of the image plane (42) is established. The pantoscopic angle (α') is corrected in accordance with the captured inclination angle (γ) of the image plane (42) in relation to the vertical direction (46) so as to form a pantoscopic angle (α) related to the vertical direction (46). A head rotation angle (β) of the head of the subject (68), formed by the optical axis (50) of the camera (36) with a plane perpendicular to the distance line (54) of the pupils (56, 58) of the eyes (60, 62) of the subject (68), is established and the head rotation angle (β) is corrected in accordance with the detected inclination angle (γ) of the image plane (42) in relation to the vertical direction (46) so as to form a corrected head rotation angle corresponding to a horizontal alignment of the optical axis (50) of the camera (36). The distance visual point (11') is then determined by analysing the image lying in the image plane (42), taking into account the corrected head rotation angle (β') corresponding to a horizontal alignment of the optical axis (50) of the camera (36).
    • 38. 发明公开
    • DETECTION DEVICE AND METHOD
    • NACHWEISVORRICHTUNG UND VERFAHREN
    • EP3023864A4
    • 2017-03-22
    • EP14826483
    • 2014-07-08
    • SONY CORP
    • IWASAKI MASANORISAKO YOICHIRO
    • G06F3/01A61B3/11A61B3/113G06F3/0346G06K9/00
    • G06F3/013A61B3/113A61B5/02416A61B5/6821G02B2027/0187G06F1/163G06F3/0325G06K9/00604
    • The present technology relates to detection apparatus and method by which the operability can be enhanced with a simple configuration. A contact lens type line-of-sight detection apparatus has a shape such that it is wearable on an eyeball of a user. Furthermore, in the line-of-sight detection apparatus, a plurality of light-emitting sections that output light and a plurality of light-receiving elements that receive light reflected by an eyeball surface. The light-receiving elements receive light that has been output from the light-emitting sections and reflected by the eyeball surface and output light-receiving signals according to amounts of light received. The signal processing unit detects a line of sight of the user based on the light-receiving signals of the light-receiving elements. The present technology can be applied to a contact lens type line-of-sight detection apparatus or a display apparatus.
    • 本技术涉及以简单的配置可以提高可操作性的检测装置和方法。 隐形眼镜型视线检测装置具有能够在使用者的眼球上佩戴的形状。 此外,在视线检测装置中,输出光的多个发光部和接收由眼球面反射的光的多个受光元件。 光接收元件接收从发光部分输出并由眼球表面反射的光,并且根据接收的光量输出光接收信号。 信号处理单元基于光接收元件的光接收信号来检测用户的视线。 本技术可以应用于隐形眼镜型视线检测装置或显示装置。
    • 39. 发明公开
    • PUPIL DETECTION LIGHT SOURCE DEVICE, PUPIL DETECTION DEVICE AND PUPIL DETECTION METHOD
    • 百慕大民主党,普林尼万基诺维奇
    • EP2995241A4
    • 2017-02-01
    • EP14795046
    • 2014-05-02
    • UNIV SHIZUOKA NAT UNIV CORP
    • EBISAWA YOSHINOBU
    • A61B3/113A61B3/11
    • G06K9/00604A61B3/0008A61B3/11A61B3/113G06K9/00255G06T7/77G06T2207/10152H04N5/23219
    • A pupil detection light source device includes an aperture (8) disposed to face a subject to allow light from a pupil of the subject to pass therethrough, a light-emitting element (3A) configured to emit illumination light for obtaining a light pupil image toward the subject from the inside or the vicinity of the aperture when seen from the subject, a light-emitting element (3B) configured to emit illumination light for forming a glasses-reflected image obtained by canceling a glasses-reflected image of the light pupil image using an image difference toward the subject from the inside or the vicinity of the aperture when seen from the subject, and a light-emitting element (3C) configured to emit illumination light for obtaining a dark pupil image toward the subject from a position spaced apart from the aperture when seen from the subject, wherein the glasses-reflected image in which a difference between the light pupil image and the dark pupil image is taken is canceled by the light-emitting elements (3A and 3B), and at the same time, a difference in brightness of the pupil of the subject is expanded by the light-emitting elements (3A and 3C).
    • 瞳孔检测光源装置包括设置成面对被摄体以允许来自被摄体的光瞳的光通过的孔径(8),发光元件(3A),被配置为发射照明光以获得光瞳图像朝向 当从被摄体观察时,从孔的内部或附近观察被检体;发光元件(3B),被配置为发射用于形成通过取消光瞳像的眼镜反射图像而获得的眼镜反射图像的照明光 当从被检体观察时,使用从所述孔的内部或附近朝向被检体的图像差;以及发光元件(3C),其被配置为从间隔开的位置发射用于朝向所述被检体的暗瞳孔图像的照明光 从被检体的光圈开始,其中取自光瞳像和黑瞳像之间的差异的眼镜反射图像被光em 发光元件(3A和3B),同时通过发光元件(3A和3C)来扩大被摄体的光瞳的亮度差。