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    • 2. 发明公开
    • INSTRUMENT FOR RAPID MEASUREMENT OF THE OPTICAL PROPERTIES OF THE EYE ACROSS THE WHOLE FIELD OF VISION.
    • 仪的OVER VISION的整个领域的眼的光学性能快速测定
    • EP2628441A4
    • 2016-12-28
    • EP11832172
    • 2011-09-13
    • UNIV MURCIA
    • JAEKEN BARTARTAL SORIANO PABLO
    • A61B3/103
    • A61B3/103A61B3/0008A61B3/0083A61B3/1015
    • An instrument for measuring the optical properties of the eye in the entire field of vision, including refraction and aberrations, which comprises a frame (1) mounted on an ophthalmologic table (2) that can be oriented in three perpendicular directions X, Y, Z, having a support surface (19) for the head of the subject, a hot mirror (3) and a long mirror (4) united to frame (1) in front of the head. It also comprises an illumination sub-assembly (5) consisting of a fibre optic head (6); a lens (7) (L1), a diaphragm (8) (D), a beam splitter (9) (BS), and a measurement sub-assembly (10) with two lens (11) L2 and (12) L3, two mirrors M1 (13) and M2 (14); a camera (15) with a matrix (16) of micro-lenses on the inlet of camera (15), in such a way that said camera (15) is placed on the focal plane of the micro-lenses; Frame (1) has a motor (17) mounted on it, the shaft of which rotates in the Y direction, to which an arm (18) is attached that can rotate on said shaft; being mounted on said arm (18) the components of illumination sub-assembly (5), the components of measurement sub-assembly (10) and camera (15) with matrix (16) of micro-lenses.
    • 用于测量视力的整个字段中的眼睛的光学性质,包括折射和像差的仪器,它包括:(1)安装在在眼科表的框架(2)那样可以在三个正交方向X,Y,Z被定向 具有支承表面(19),用于所述受试者的头部中,热反射镜(3)和一个长镜(4)统一框架(1)的头部的前面。 它因此照射子组件的方法包括:(5)由一个光纤头(6); 一个透镜(7)(L1),隔膜(8)(D),光束分离器(9)(BS),和一个测量子组件(10)具有两个透镜(11)L2和(12)L3, 两个反射镜M1(13)和M2(14); 的照相机(15)的相机(15)的入口微透镜的矩阵(16),在寻求一种方式,所述照相机(15)上的微透镜的焦平面上放置; 框架(1)具有马达安装在其上(17),其使在Y方向上的轴,以臂的哪个(18)附接并能够在所述轴旋转; 安装在所述臂(18)照射子组件(5)的部件,测量子组件(10)和摄像机(15)的微透镜矩阵(16)的组件。
    • 3. 发明公开
    • SYSTEM AND CONTROLLING METHOD THEREOF FOR PERFORMING MEASUREMENTS OF AN EYE
    • 系统及其控制方法以眼还眼的进行测量
    • EP3050495A1
    • 2016-08-03
    • EP15003438.7
    • 2015-12-02
    • WaveLight GmbH
    • Jeglorz, Tobias
    • A61B3/00A61B3/10
    • A61B3/14A61B3/0025A61B3/0083A61B3/102A61B3/18
    • A system for performing measurements of an eye comprises: a measurement tool for performing measurements of the eye, the measurement tool including an objective and implementing an image capturing function using the objective; at least one rest designed to maintain a facial measurement position, the at least one rest defining a centering rest portion designed to maintain a lateral facial measurement position; an adjuster mechanism adapted to move the objective relative to the eye; and a processing unit configured to control the system to: position, via the adjuster mechanism and for a first eye, the objective at a predefined first pre-scan position; scan, via the adjuster mechanism, the objective away from the first pre-scan position until the system detects a pupil of the first eye; and trigger one or more measurements of the first eye via the measurement tool dependent on the system detecting the pupil of the first eye.
    • 一种用于执行眼睛的测量系统,包括:用于执行眼睛的测量,所述测量工具包括客观和实现图像使用目标捕获功能的测量工具; 至少一个其余设计成保持面部测量位置,所述至少一个其余限定设计成保持横向面部测量位置的定心其余部分; 到调整机构angepasst移动目标相对于眼睛; 并且被配置为控制该系统的处理单元:位置,通过调整机构和用于第一眼睛,在预定的第一预扫描位置目标; 扫描,通过调整机构,从所述第一预扫描的位置,直到系统远离目标检测第一眼睛的瞳孔; 并通过测量工具依赖于系统检测第一眼睛的瞳孔上触发第一眼睛的一个或多个测量。
    • 7. 发明公开
    • A VISION TESTING SYSTEM
    • 视觉测试系统
    • EP2819567A1
    • 2015-01-07
    • EP13754947.3
    • 2013-02-27
    • Digital Vision LLC
    • THOMPSON, Keith, P.GARCIA, Jose, R.
    • A61B3/00
    • A61B3/18A61B3/0025A61B3/0083A61B3/103
    • A vision testing system comprises a image wavefront modulator, eye tracking system, focusing system using a spherical concave mirror, and a patient station. In various embodiments, the image wavefront modulator and the patient's eyes are positioned off axis with respect to the optical axis of the focusing mirror. Thus, optical elements in the wavefront modulator may automatically adjust to correct for aberrations introduced by the focusing system. Moreover, the optical elements may also be used to automatically correct for magnification errors introduced by movement of the patient within the patient testing station. Furthermore, the eye tracking system may be used to determine the errors introduced by movement of the patient eyes. Finally, the wavefront modulator may be used to produce an image on the patient's retina that accurately emulates an image that result if the patient was looking through a spectacle lens of a particular design during various gaze angles.
    • 视力测试系统包括图像波前调制器,眼睛跟踪系统,使用球面凹面镜的聚焦系统和患者站。 在各种实施例中,图像波阵面调制器和患者的眼睛相对于聚焦镜的光轴偏离轴线定位。 因此,波前调制器中的光学元件可以自动调整以校正由聚焦系统引入的像差。 此外,光学元件也可以用于自动校正由患者在患者测试台内移动引起的放大误差。 此外,眼睛跟踪系统可以用于确定由患者眼睛移动引起的错误。 最后,波前调制器可用于在患者的视网膜上产生精确仿真如果患者在各种凝视角度期间通过特定设计的眼镜镜片观看时产生的图像的图像。
    • 10. 发明公开
    • Method and apparatus for the detection of impaired dark adaptation
    • 用于检测受损暗适应的方法和设备
    • EP2412304A2
    • 2012-02-01
    • EP11186355.1
    • 2004-09-03
    • The UAB Research Foundation
    • Jackson, Gregory R.Owsley, Cynthia A.
    • A61B3/06
    • A61B3/063A61B3/0008A61B3/0025A61B3/0033A61B3/0041A61B3/0083A61B3/0091G06F19/00G16H50/20Y02A90/26
    • The present method describes a new method for the measurement of dark adaptation. The dark adaptation status of subjects may then be used to identify those subjects who are at risk of developing and/or who are currently suffering from a variety of disease states having their clinical manifestations in impaired dark adaptation. The disease states include, but are not limited to, age related macular degeneration, vitamin A deficiency, Sorsby's Fundus Dystrophy, late autosomal dominant retinal degeneration, retinal impairment related to diabetes and diabetic retinopathy. An apparatus for administering the test method described is also provided.
      The method is performed as follows:
      After bleaching the eye to be examined, light stimuli of variable intensity are provided to the eye of the subject. Based on feedback from the subject, the adaptation threshold is determined as a function of time.
      The data collected may be subject to a noise reduction protocol.
    • 本方法描述了一种测量暗适应的新方法。 受试者的黑暗适应状态然后可用于鉴定那些处于发展风险中和/或目前患有各种疾病状态的受试者,其临床表现为受损的黑暗适应。 疾病状态包括但不限于年龄相关性黄斑变性,维生素A缺乏症,索斯比眼底营养不良,迟发性常染色体显性视网膜变性,与糖尿病和糖尿病性视网膜病相关的视网膜损伤。 还提供了用于施用所述测试方法的设备。 该方法如下执行:漂白待检眼睛后,将可变强度的光刺激提供给对象的眼睛。 基于来自主题的反馈,适应阈值被确定为时间的函数。 收集的数据可能会受到降噪协议的约束。