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    • 52. 发明授权
    • Process and system for manufacturing a customized orthosis
    • 制造定制矫形器的工艺和系统
    • US08538570B2
    • 2013-09-17
    • US12879805
    • 2010-09-10
    • Steven J. StanhopeElisa Schrank
    • Steven J. StanhopeElisa Schrank
    • G06F19/00
    • G06F17/50B33Y50/00G01B5/008G06T19/00G06T2210/41
    • A process and system for fitting, customizing and manufacturing an orthosis for a subject. 3-dimensional coordinates for a plurality of landmarks corresponding to anatomical characteristics of the subject, means for attachment of the orthosis to the subject, and a reference plane are digitally acquired. Then, coordinates of one or more virtual landmarks corresponding to one or more anatomical joint centers or joint projection locations are calculated. The landmarks are clinically aligned in a reference position of one of the anatomical joint centers and a customized digital model of the orthosis is created using the clinically aligned landmarks. Finally, the orthosis is fabricated using a computer aided manufacturing process, based upon an output from the customized digital model.
    • 用于安装,定制和制造主题矫形器的过程和系统。 对应于对象的解剖特征的多个地标的三维坐标,用于将矫形器附接到对象的装置和参考平面被数字地获取。 然后,计算与一个或多个解剖关节中心或联合投影位置对应的一个或多个虚拟界标的坐标。 地标在临床上在解剖关节中心之一的参考位置对齐,并且使用临床对准的地标创建矫形器的定制数字模型。 最后,根据定制数字模型的输出,使用计算机辅助制造过程制造矫形器。
    • 55. 发明申请
    • METHODS AND SYSTEMS FOR IDENTIFYING A POINT OF INTEREST ON THE PERIPHERY OF AN OBJECT
    • 用于识别对象周边的兴趣点的方法和系统
    • US20120209561A1
    • 2012-08-16
    • US13370803
    • 2012-02-10
    • John Toland Van Stan, IIMatthew T. JarvisDelphis F. Levia, JR.
    • John Toland Van Stan, IIMatthew T. JarvisDelphis F. Levia, JR.
    • G06F15/00
    • G01B5/0035G06T7/66G06T2207/30188
    • Methods and systems for identifying a point of interest on the periphery of an object are disclosed. A system comprises a track, a carriage, an advancement mechanism, a non-contact measurement device, and a processor. The advancement mechanism is configured to advance the carriage along the path defined by the track. The measurement device comprises a transmitter configured to transmit a beam of radiation toward the periphery of the object and a detector configured to detect at least a portion of the radiation reflected from the periphery of the object. The processor is programmed to (i) advance the carriage along the path, (ii) measure a distance between the periphery of the object and the measurement device, (iii) calculate a center of mass of the object from the measured distances, and (iv) determine the point of interest on the periphery of the object using the calculated center of mass of the object.
    • 公开了用于识别物体周边上的感兴趣点的方法和系统。 系统包括轨道,托架,前进机构,非接触测量装置和处理器。 推进机构被配置为沿着由轨道限定的路径推进托架。 测量装置包括发射器,其被配置为朝向物体的周边传送辐射束;以及检测器,被配置为检测从物体周边反射的辐射的至少一部分。 处理器被编程为(i)沿着路径推进托架,(ii)测量物体的周边与测量装置之间的距离,(iii)根据测量的距离计算物体的质心,和( iv)使用所计算的物体的质心来确定对象周边上的兴趣点。