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    • 45. 发明申请
    • SCLERAL DEPRESSOR
    • 沙特尔·达普尔
    • US20090171364A1
    • 2009-07-02
    • US12194377
    • 2008-08-19
    • Timothy W. OlsenPaul E. LoftnessArthur G. Erdman
    • Timothy W. OlsenPaul E. LoftnessArthur G. Erdman
    • A61F9/007
    • A61B17/0231A61B2090/306
    • A remotely controllable system and method for positioning and operating a scleral depressor. A track is positioned to encircle at least a portion of the eye. One or more independent thrusters, or actuators, are radially positionable about the eye. An actuator is selectively deployable and selectively retractable by remote control. Thrusters may be mechanically operated and include pneumatic, hydraulic, electrical, chemical or other power supply forces. Remote control is provided by hand-operated controls, foot-operated switches or voice-operated control. A light source is positioned about at least a portion of the eye to provide transcleral illumination.
    • 一种用于定位和操作巩膜抑制器的可远程控制的系统和方法。 轨道定位成环绕眼睛的至少一部分。 一个或多个独立的推进器或致动器可围绕眼睛径向定位。 致动器可选择性地展开,并通过遥控器选择性地缩回。 推进器可以是机械操作的,并且包括气动,液压,电气,化学或其他供电力。 遥控器由手动控制,脚踏开关或语音控制提供。 光源围绕眼睛的至少一部分定位以提供超声照明。
    • 49. 发明授权
    • Automated high-precision fabrication of objects of complex and unique
geometry
    • 自动化的高精度制造复杂而独特的几何形状
    • US5184306A
    • 1993-02-02
    • US812588
    • 1991-12-20
    • Arthur G. ErdmanElizabeth D. RekowDonald R. RileyBarney KlameckiYang ZhuJeong-Ho Ahn
    • Arthur G. ErdmanElizabeth D. RekowDonald R. RileyBarney KlameckiYang ZhuJeong-Ho Ahn
    • A61C9/00A61C13/00G05B19/42
    • A61C13/0004A61C9/0046G05B19/4207A61C9/0093
    • The present invention provides a method and apparatus for the automated reproduction of three dimensional objects of complex and unique geometry. A computer acquires data describing an object and its surroundings, constructs a computer-based three dimensional model of the object from that data, superimposes an ideal geometry on the computer-based model, alters the ideal geometry to fit the form and function required of the reproduction, and then guides a milling machine in the fabrication of the reproduction. In contrast to the prior art, the present invention does not require human intervention in the reproduction process. The present invention provides two preferred embodiments for the automated high precison reproduction of objects of complex and unique geometry. Both embodiments can machine reproductions solely from generic forms stored in the computer, thus eliminating the need for scanning. Alternatively, the reproductions may be machined solely from scanned data, without resort to generic forms stored in the computer.
    • 本发明提供一种用于自动再现复杂和独特几何形状的三维物体的方法和装置。 计算机获取描述对象及其周围环境的数据,从该数据构建对象的基于计算机的三维模型,在基于计算机的模型上叠加理想的几何形状,改变理想的几何形状以适应所需的形式和功能 再生,然后引导铣床制造再现。 与现有技术相比,本发明不需要人为干预再现过程。 本发明提供了用于复杂和独特几何形状的对象的自动化高精度再现的两个优选实施例。 两个实施例都可以仅从存储在计算机中的通用形式来加载再现,从而消除对扫描的需要。 或者,可以仅从扫描的数据来加工复制品,而不必诉诸于存储在计算机中的通用形式。