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    • 1. 发明授权
    • Determining shaft and femur neck axes and three-dimensional reconstruction
    • 确定轴和股骨颈轴和三维重建
    • US08463004B2
    • 2013-06-11
    • US11356737
    • 2006-02-17
    • Gregor TumaMario SchubertFrank GruenschlaegerMartin Haimerl
    • Gregor TumaMario SchubertFrank GruenschlaegerMartin Haimerl
    • G06K9/00
    • A61B5/064A61B5/103A61B5/4504A61B5/4528A61B6/00G16H50/50
    • A method for determining a characteristic axis of a body structure includes generating at least two two-dimensional recordings of an area of the body structure; comparing each of the at least two recordings of the area with a generic model of the area in question, said generic model containing information on the position of the characteristic axis; ascertaining a mapping protocol for mapping the respective generic model onto the respective recording of the area; using the ascertained mapping protocol to map the respective position of the characteristic axis in the respective generic model to obtain the respective position of the characteristic axis in the two-dimensional mapping of the body structure; and using rear projection to determine a three-dimensional position of the characteristic axis from the at least two characteristic axes in the two-dimensional mappings.
    • 一种用于确定身体结构的特征轴的方法包括产生身体结构区域的至少两个二维记录; 将所述区域的所述至少两个记录中的每一个与所述区域的通用模型进行比较,所述通用模型包含关于所述特征轴的位置的信息; 确定用于将各个通用模型映射到该区域的相应记录上的映射协议; 使用确定的映射协议来映射各个通用模型中的特征轴的相应位置,以获得身体结构的二维映射中的特征轴的相应位置; 并且使用背投影来确定特征轴在二维映射中的至少两个特征轴的三维位置。
    • 9. 发明申请
    • DETERMINING A PLANE OF AN ANATOMICAL BODY PART
    • 确定解剖部位的平面图
    • US20120232802A1
    • 2012-09-13
    • US13394465
    • 2010-08-10
    • Martin HaimerlMario SchubertSabine KlingMelanie Wegner
    • Martin HaimerlMario SchubertSabine KlingMelanie Wegner
    • G06F19/00
    • A61B5/103A61B5/4528A61B5/6878A61B34/10A61B90/39
    • A data processing method for determining the position of a main plane of an anatomical body part, comprising the steps of: ·providing absolute auxiliary point data which describe the position of at least one actual auxiliary point of the body part relative to a marker device attached to the body part, the at least one actual auxiliary point being outside the main plane; ·providing relative point data which constrain the possible positions of the main plane relative to the at least one actual auxiliary point; ·providing absolute main point data which describe the position of one or two actual main points of the body part relative to the marker device attached to the body part, said one or two actual main points lying in the main plane and/or calculating the position of at least one virtual main point relative to the marker device, said at least one virtual main point being in the main plane and being calculated based on the absolute auxiliary point data and the relative point data; ·calculating a position of the main plane relative to the marker device, wherein the calculation uses the relative point data and auxiliary point data as well as the provided absolute main point data and/or the calculated position of the at least one virtual main point.
    • 一种用于确定解剖体部分的主平面的位置的数据处理方法,包括以下步骤:·提供绝对辅助点数据,其描述身体部分的至少一个实际辅助点相对于附接的标记装置的位置 所述至少一个实际辅助点在所述主体部分之外; ·提供约束所述主平面相对于所述至少一个实际辅助点的可能位置的相对点数据; ·提供绝对主要点数据,其描述身体部分相对于附接到身体部位的标记装置的一个或两个实际主要点的位置,所述一个或两个实际主要点位于主平面中和/或计算位置 相对于所述标记装置的至少一个虚拟主要点,所述至少一个虚拟主要点位于所述主平面中,并且基于所述绝对辅助点数据和所述相对点数据来计算; ·计算主平面相对于标记装置的位置,其中所述计算使用所述相对点数据和辅助点数据以及所提供的绝对主要点数据和/或所述至少一个虚拟主要点的计算位置。
    • 10. 发明申请
    • METHOD, SYSTEM AND DEVICE FOR POSITIONING AN IMPLANT
    • 用于定位植入物的方法,系统和装置
    • US20140114179A1
    • 2014-04-24
    • US14125722
    • 2011-06-17
    • Heiko MüllerMario SchubertMartin Haimerl
    • Heiko MüllerMario SchubertMartin Haimerl
    • A61B5/06A61F2/46
    • A61B5/067A61B34/20A61B2017/00477A61B2034/105A61B2034/2048A61B2034/2055A61B2034/2068A61B2090/0818A61F2/4603A61F2/4609
    • The present invention relates to a method for measuring or verifying the position of a medical implant located in an anatomical body part(s) and/or structure(s) relative to the body part(s) and/or structure(s) or specific points, landmarks or planes of the same, wherein a device is provided which has an at least partially known or previously determined geometry or at least partially known dimensions and is connected to the medical implant; positional or landmark information regarding the anatomical body part(s) and/or structure(s) is acquired; the position of the medical implant is calculated using a navigation system and a reference structure which is or can be connected to the device; and the calculated position of the medical implant is related to or compared with the acquired positional or landmark information regarding the anatomical body part(s) and/or structure(s) in order to measure or verify the position of the medical implant within or relative to the anatomical body part(s) and/or structure(s).
    • 本发明涉及一种用于测量或验证位于相对于身体部位和/或结构或具体的身体部位和/或结构的解剖体部分和/或结构中的医疗植入物的位置的方法 点,地标或平面,其中提供具有至少部分已知或预先确定的几何形状或至少部分已知尺寸并且连接到医疗植入物的装置; 获取关于解剖体部分和/或结构的位置或地标信息; 使用导航系统和可以连接到该装置的参考结构来计算医疗植入物的位置; 并且医学植入物的计算位置与所获取的关于解剖体部分和/或结构的位置或标志性信息相关或与之相比较,以便测量或验证医疗植入物在或相对内部的位置 到解剖体部分和/或结构。