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    • 82. 发明授权
    • Flexible scanning beam imaging system
    • 灵活的扫描光束成像系统
    • US07108691B2
    • 2006-09-19
    • US10367015
    • 2003-02-12
    • George CaudleVladimir Lemberg
    • George CaudleVladimir Lemberg
    • A61B18/18
    • A61F9/008A61F9/00804A61F9/00817A61F2009/00844A61F2009/00872
    • The present invention is directed to a flexible scanning beam imaging system. In specific embodiments, the scanning beam imaging system comprises a mask, and an objective lens having an objective lens focal point disposed between the mask and the objective lens. A field lens device is disposed before the mask to direct a light beam through the mask and focus the light beam at a field lens focal point. The field lens focal point is located between the field lens and the objective lens. One or more scanning mirrors are disposed at or near the objective lens focal point. As a result, the beam will be directed to different locations across the objective lens by the scanning mirror(s), and will travel from the objective lens substantially collimated and parallel toward a surface illuminated by the beam. This substantially collimated and parallel beam provides a large depth of field of the ablation pattern.
    • 本发明涉及一种灵活的扫描光束成像系统。 在具体实施例中,扫描光束成像系统包括掩模和具有设置在掩模和物镜之间的物镜焦点的物镜。 场透镜装置设置在掩模之前以引导光束穿过掩模并将光束聚焦在场透镜焦点处。 场透镜焦点位于场透镜和物镜之间。 一个或多个扫描反射镜设置在物镜焦点处或附近。 结果,光束将通过扫描镜被引导到物镜的不同位置,并且将从物镜行进到基本上准直并平行于由光束照射的表面。 该基本准直并平行的光束提供消融图案的大的景深。
    • 88. 发明申请
    • Techniques for alteration of iris pigment
    • 改变虹膜色素的技术
    • US20050049584A1
    • 2005-03-03
    • US10962241
    • 2004-10-08
    • Gregg Homer
    • Gregg Homer
    • A61F9/008A61B18/04G02C7/04
    • A61F9/00817A61F9/00825A61F2009/00876A61F2009/00897
    • Techniques for altering iris pigment in a human or animal, thereby altering iris color of an iris from a first iris color to a second iris color, are provided. An apparatus includes at least one laser device and a masking device. Another apparatus includes at least one laser device and a contact lens. The at least one laser device can generate at least one beam to selectively remove iris pigment of at least one preselected pigment color from the iris. The energy level of the at least one beam is within a predetermined range. The masking devices include a transparent portion and an opaque portion. The opaque portion of one such masking device occludes a portion of the at least one beam to protect a pupil area. The opaque portion of another such masking device creates an elliptical beam for application of the beam laterally from the side of the iris or some other different angle for lateral exposure of the iris. The contact lens includes a transparent portion and an opaque portion. The opaque portion of such contact lens occludes a portion of the at least one beam to protect a pupil area. In a specific embodiment, the apparatus further includes a second laser device capable of generating a second beam to selectively remove iris pigment of a second preselected pigment color from the iris.
    • 提供用于改变人或动物中的虹膜色素的技术,从而将虹膜的虹膜颜色从第一虹膜颜色改变为第二虹膜颜色。 一种装置包括至少一个激光装置和掩蔽装置。 另一装置包括至少一个激光装置和隐形眼镜。 所述至少一个激光装置可以产生至少一个光束以从虹膜中选择性地去除至少一种预选颜料颜色的虹膜色素。 至少一个光束的能级在预定范围内。 掩模装置包括透明部分和不透明部分。 一个这种掩模装置的不透明部分遮挡至少一个光束的一部分以保护瞳孔区域。 另一种这种掩蔽装置的不透明部分产生椭圆形光束,用于从光圈侧面侧向地施加光束或用于虹膜横向曝光的一些其它不同角度。 隐形眼镜包括透明部分和不透明部分。 这种隐形眼镜的不透明部分封闭至少一个光束的一部分以保护瞳孔区域。 在具体实施例中,该装置还包括能够产生第二光束以从虹膜中选择性地去除第二预选颜料颜色的虹膜色素的第二激光装置。
    • 89. 发明申请
    • Digital eye camera
    • 数码眼镜
    • US20040196432A1
    • 2004-10-07
    • US10758695
    • 2004-01-15
    • Wei SuNorbert A. Massle
    • A61B003/14
    • A61B3/14A61B3/0008A61B3/12A61B3/152A61B3/154A61B5/0002A61F9/008A61F9/00817A61F2009/00844A61F2009/00846A61F2009/00863A61F2009/00872
    • A digital camera that combines the functions of the retinal camera and corneal camera into one, single, small, easy to use instrument The single camera can acquire digital images of a retinal region of an eye, and digital images of a corneal region of the eye. The camera includes a first combination of optical elements for making said retinal digital images, and a second combination of optical elements for making said corneal digital images. In a preferred embodiment, a portion of these elements are shared elements including a first objective element of an objective lens combination, a digital image sensor and at least one eyepiece for viewing either the retina or the cornea. Also, preferably, the retinal combination also includes a first changeable element of said objective lens system for focusing, in combination with said first objective element, portions or all of said retinal region at or approximately at a common image plane. Also, preferably, the retinal combination also includes a retinal illuminating light source, an aperture within said fame and positioned within said first combination to form an effective retinal aperture located at or approximately at the lens of the eye defining an effective retinal aperture position, an infrared camera for determining eye position, and an aperture adjustment mechanism for adjusting the effective retinal aperture based on position signals from said infrared camera. Also, preferably, the cornea combination of elements includes a second changeable element of said objective lens system for focusing, in combination with said first objective element, portions or all of said cornea region at or approximately at a common image plane.
    • 将视网膜摄像机和角膜摄像机的功能组合成一个,单个,小型,易于使用的仪器的数码相机单个摄像机可以获取眼睛视网膜区域的数字图像和眼睛角膜区域的数字图像 。 相机包括用于制造所述视网膜数字图像的光学元件的第一组合以及用于制造所述角膜数字图像的光学元件的第二组合。 在优选实施例中,这些元件的一部分是共享元件,包括物镜组合的第一目标元件,数字图像传感器和用于观察视网膜或角膜的至少一个目镜。 此外,优选地,视网膜组合还包括所述物镜系统的第一可变元件,用于与所述第一物镜组合在一起或近似于共同的图像平面处聚焦所述视网膜区域的一部分或全部。 此外,优选地,视网膜组合还包括视网膜照明光源,所述声望之内的孔,并且定位在所述第一组合内,以形成位于眼睛的眼睛或近似于眼睛的镜片处的有效视网膜孔,限定有效的视网膜孔位置, 用于确定眼睛位置的红外摄像机,以及用于基于来自所述红外摄像机的位置信号来调节有效视网膜孔径的光圈调节机构。 此外,优选地,元件的角膜组合包括所述物镜系统的第二可变元件,用于与所述第一物镜元件组合在一起或接近共同的图像平面处聚焦所述角膜区域的一部分或全部。