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    • 1. 发明授权
    • Working distance and alignment sensor for a fundus camera
    • 眼底相机的工作距离和对准传感器
    • US07621636B2
    • 2009-11-24
    • US11621943
    • 2007-01-10
    • Wei SuYan ZhouQing Chun ZhaoYeou-Yen Cheng
    • Wei SuYan ZhouQing Chun ZhaoYeou-Yen Cheng
    • A61B3/14A61B3/10
    • A61B3/12A61B3/102A61B3/152
    • In embodiments of optical arrangements of a working distance sensor in a fundus camera that can improve the determination of a correct working distance as well as the transverse positioning of the camera a number of near infrared light sources are arranged to project a number of near infrared illumination beams into the visible light illumination path of the fundus camera and a live view of the retina under near infrared illumination is captured and displayed on a monitor. These embodiments of optical arrangements and associated methods will enable an operator to directly determine if there is any undesirable flare or other artifact appearing within a designated region on the infrared retina view as a result of a wrong alignment of the fundus camera with respect to the eye in terms of not only the working distance but also the horizontal and vertical positions. Pattern recognition algorithms can be used to further enhance the positioning sensitivity of the working distance sensor. An additional iris alignment sensor can be added to achieve a coarse alignment and also function as a measure to determine if the dilation of the iris size is sufficient for different mode of fundus imaging.
    • 在眼底照相机中的工作距离传感器的光学布置的实施例中,其可以改善确定正确的工作距离以及相机的横向定位,并且布置多个近红外光源以投射多个近红外照明 光束进入眼底照相机的可见光照明路径,并且在近红外照明下的视网膜的实时图像被捕获并显示在监视器上。 光学布置和相关方法的这些实施例将使得操作者能够直接确定由于眼底照相机相对于眼睛错误对准的结果,在红外线视网膜视图上的指定区域内是否存在任何不期望的耀斑或其他伪像 不仅在于工作距离,还包括水平和垂直位置。 模式识别算法可用于进一步提高工作距离传感器的定位灵敏度。 可以添加附加的虹膜对准传感器以实现粗略对准,并且还用作确定虹膜尺寸的扩张是否足够用于不同的眼底成像模式的措施。
    • 2. 发明授权
    • Delivering a short Arc lamp light for eye imaging
    • 为眼睛成像提供短弧灯
    • US07621638B2
    • 2009-11-24
    • US11606597
    • 2006-11-29
    • Wei SuYan ZhouYeou-Yen ChengQing Chun Zhao
    • Wei SuYan ZhouYeou-Yen ChengQing Chun Zhao
    • A61B3/10F21V7/00
    • A61B3/0008A61B3/12
    • A light delivery technique includes optical configurations as well as the associated methods that generate a ring beam from a linear light source. In one embodiment, a remote light source module delivers illumination light to a fundus camera and/or slit lamp. In another embodiment, an arrangement combines the use of a light pipe homogenizer and a ring beam transformer for efficiently collecting light from a substantially axially linear light source, homogenizing the collected light that lacks low angle flux relative to the optical axis, and transforming the light into a ring beam with a substantially improved low angle flux distribution. In still another embodiment, light emitted from a substantially axially linear light source is directly collected by a curved surface mirror and spatially filtered into a ring beam. The ring illumination beam can be co-axially projected on a sample such as the pupil of a human eye and at the same time the light beam also has a large enough relatively uniform angular flux distribution so that a wide area on the retina of the eye can be uniformly illuminated.
    • 光输送技术包括光学配置以及从线性光源产生环形光束的相关方法。 在一个实施例中,远程光源模块将照明光传送到眼底照相机和/或裂隙灯。 在另一个实施例中,一种布置结合了光管均质器和环形光束变换器的使用,用于有效地收集来自基本轴向线性光源的光,使收集到的光相互均匀化,所述光相对于光轴缺少低角度通量,以及将光转换 成为具有基本上改进的低角度通量分布的环形梁。 在另一个实施例中,从基本轴向线性光源发射的光直接由弯曲表面镜收集,并在空间上过滤成环形光束。 环形照明光束可以同轴地投射在诸如人眼的瞳孔的样品上,并且同时光束也具有足够大的相对均匀的角度通量分布,使得眼睛的视网膜上的广泛区域 可以均匀照明。
    • 3. 发明申请
    • WORKING DISTANCE AND ALIGNMENT SENSOR FOR A FUNDUS CAMERA
    • FUNDUS CAMERA的工作距离和对准传感器
    • US20080165322A1
    • 2008-07-10
    • US11621943
    • 2007-01-10
    • Wei SuYan ZhouQing Chun ZhaoYeou-Yen Cheng
    • Wei SuYan ZhouQing Chun ZhaoYeou-Yen Cheng
    • A61B3/12
    • A61B3/12A61B3/102A61B3/152
    • In embodiments of optical arrangements of a working distance sensor in a fundus camera that can improve the determination of a correct working distance as well as the transverse positioning of the camera a number of near infrared light sources are arranged to project a number of near infrared illumination beams into the visible light illumination path of the fundus camera and a live view of the retina under near infrared illumination is captured and displayed on a monitor. These embodiments of optical arrangements and associated methods will enable an operator to directly determine if there is any undesirable flare or other artifact appearing within a designated region on the infrared retina view as a result of a wrong alignment of the fundus camera with respect to the eye in terms of not only the working distance but also the horizontal and vertical positions. Pattern recognition algorithms can be used to further enhance the positioning sensitivity of the working distance sensor. An additional iris alignment sensor can be added to achieve a coarse alignment and also function as a measure to determine if the dilation of the iris size is sufficient for different mode of fundus imaging.
    • 在眼底照相机中的工作距离传感器的光学布置的实施例中,其可以改善确定正确的工作距离以及相机的横向定位,并且布置多个近红外光源以投射多个近红外照明 光束进入眼底照相机的可见光照明路径,并且在近红外照明下的视网膜的实时图像被捕获并显示在监视器上。 光学布置和相关方法的这些实施例将使得操作者能够直接确定由于眼底照相机相对于眼睛错误对准的结果,在红外线视网膜视图上的指定区域内是否存在任何不期望的耀斑或其他伪像 不仅在于工作距离,还包括水平和垂直位置。 模式识别算法可用于进一步提高工作距离传感器的定位灵敏度。 可以添加附加的虹膜对准传感器以实现粗略对准,并且还用作确定虹膜尺寸的扩张是否足够用于不同的眼底成像模式的措施。
    • 4. 发明申请
    • Delivering a short Arc lamp light for eye imaging
    • 为眼睛成像提供短弧灯
    • US20080123052A1
    • 2008-05-29
    • US11606597
    • 2006-11-29
    • Wei SuYan ZhouYeou-Yen ChengQing Chun Zhao
    • Wei SuYan ZhouYeou-Yen ChengQing Chun Zhao
    • A61B3/10
    • A61B3/0008A61B3/12
    • A light delivery technique includes optical configurations as well as the associated methods that generate a ring beam from a linear light source. In one embodiment, a remote light source module delivers illumination light to a fundus camera and/or slit lamp. In another embodiment, an arrangement combines the use of a light pipe homogenizer and a ring beam transformer for efficiently collecting light from a substantially axially linear light source, homogenizing the collected light that lacks low angle flux relative to the optical axis, and transforming the light into a ring beam with a substantially improved low angle flux distribution. In still another embodiment, light emitted from a substantially axially linear light source is directly collected by a curved surface mirror and spatially filtered into a ring beam. The ring illumination beam can be co-axially projected on a sample such as the pupil of a human eye and at the same time the light beam also has a large enough relatively uniform angular flux distribution so that a wide area on the retina of the eye can be uniformly illuminated.
    • 光输送技术包括光学配置以及从线性光源产生环形光束的相关方法。 在一个实施例中,远程光源模块将照明光传送到眼底照相机和/或裂隙灯。 在另一个实施例中,一种布置结合了光管均质器和环形光束变换器的使用,用于有效地收集来自基本轴向线性光源的光,使收集到的光相互均匀化,所述光相对于光轴缺少低角度通量,以及将光转换 成为具有基本上改进的低角度通量分布的环形梁。 在另一个实施例中,从基本轴向线性光源发射的光直接由弯曲表面镜收集,并在空间上过滤成环形光束。 环形照明光束可以同轴地投射在诸如人眼的瞳孔的样品上,并且同时光束也具有足够大的相对均匀的角度通量分布,使得眼睛的视网膜上的广泛区域 可以均匀照明。
    • 9. 发明授权
    • Ruggedized optical fiber collimator
    • 坚固的光纤准直仪
    • US06978065B2
    • 2005-12-20
    • US10391861
    • 2003-03-18
    • Ying-Moh LiuCheng-Hsi MiaoYeou-Yen Cheng
    • Ying-Moh LiuCheng-Hsi MiaoYeou-Yen Cheng
    • G02B6/32G02B6/38
    • G02B6/327G02B6/3816G02B6/3835
    • The present invention relates to a ruggedized optical fiber collimator. An embodiment of the present invention includes a housing, an optical fiber, a collimating lens system comprising at least one lens, and an inner tube. The optical fiber extends into the housing through the inner tube. The housing houses the inner tube and the collimating lens system. The optical fiber terminates in the housing. The housing, the optical fiber, the collimating lens system and the inner tube are arranged to perform the function of an optical fiber collimator. The inner tube is made from an optical fiber compatible material. Examples of the optical fiber compatible material include ruby, quartz, and sapphire.
    • 本发明涉及一种加固型光纤准直仪。 本发明的实施例包括壳体,光纤,包括至少一个透镜的准直透镜系统和内管。 光纤通过内管延伸到壳体中。 外壳容纳内管和准直透镜系统。 光纤终止在外壳中。 外壳,光纤,准直透镜系统和内管被布置成执行光纤准直器的功能。 内管由光纤兼容材料制成。 光纤兼容材料的实例包括红宝石,石英和蓝宝石。
    • 10. 发明授权
    • Integrated optical fiber collimator
    • 集成光纤准直仪
    • US06873760B2
    • 2005-03-29
    • US10391857
    • 2003-03-18
    • Cheng-Hsi MiaoYeou-Yen Cheng
    • Cheng-Hsi MiaoYeou-Yen Cheng
    • G02B6/32G02B6/42
    • G02B6/327G02B6/4206G02B6/4246
    • The present invention relates to an integrated optical fiber collimator with a built-in polarizing beam splitter. An embodiment of the present invention includes a housing, an optical fiber, a collimating lens system that includes at least one lens, and a polarizing beam splitter. The optical fiber terminates in the housing at an optical fiber termination. The collimating lens system is in the housing and is in optically communication with the optical fiber through the optical fiber termination. The housing mechanically supports the polarizing beam splitter. The polarizing beam splitter separates the light from the optical fiber into two substantially orthogonally polarized light beams and substantially couples two orthogonally polarized light beams to the optical fiber in conjunction with the collimating lens system.
    • 本发明涉及具有内置偏振分束器的集成光纤准直仪。 本发明的实施例包括壳体,光纤,包括至少一个透镜的准直透镜系统和偏振分束器。 光纤在光纤终端处终止在外壳中。 准直透镜系统在壳体中并且通过光纤终端与光纤光学连通。 壳体机械地支撑偏振分束器。 偏振光束分光器将光从光纤分离成两个基本上正交偏振的光束,并且与准直透镜系统一起基本上将两个正交偏振光束耦合到光纤。