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Morphometric study of the human lumbar spine for operation-workspace specifications.

机译:人体腰椎的形态测量研究,用于操作-工作空间规范。

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STUDY DESIGN: The anatomy of the lumbar vertebrae of 55 patients was measured by use of data provided by computed tomography. On the basis of these measurements, the location of puncture points and the orientation of the surgical instruments for pedicle, vertebral body, and disc entry points were calculated for open as well as percutaneous surgery. OBJECTIVE: Normal anatomic variations of the lumbar spine were investigated to define the workspace for several spinal procedures and to define the workspace of a robot designed to guide the physician during those procedures. SUMMARY OF BACKGROUND: Several comprehensive studies of vertebrae dimensions have been conducted in the past, but they lack several dimensions that are needed to determine the exact location of the entry point and orientation of the tool, in particular when a computerized guidance system is used. METHODS: Fifty-five spinal columns (L1-L5, total 250 vertebrae) were measured by computed tomography. These data provide geometric relations that determine entry points and tool orientations for different spinal interventions. RESULTS: The workspace for spinal operations was defined on the basis of anatomic data taken from computed tomography scans. The data included 15 measurements for each vertebra that defined its shape. The processed data provided puncture points for several spinal procedures in both open and percutaneous surgery. CONCLUSIONS: This study provides additional information on vertebral structure needed to calculate accurately the entry point and tool orientation in various spinal procedures. These statistical data are also valuable for model and implant designs and for workspace specifications for a robot-assisted surgery system.
机译:研究设计:使用计算机断层扫描提供的数据测量了55位患者的腰椎解剖结构。基于这些测量,计算了开放式和经皮手术的穿刺点位置以及椎弓根,椎体和椎间盘进入点的手术器械的方向。目的:研究腰椎的正常解剖变化,以定义几种脊柱手术的工作空间,并定义旨在指导医师在这些手术过程中使用的机器人的工作空间。背景技术:过去已经对椎骨尺寸进行了几项全面的研究,但是它们缺乏确定进入点的确切位置和工具的方向所需的若干尺寸,尤其是在使用计算机引导系统时。方法:计算机X线断层扫描测量55个脊柱(L1-L5,总共250个椎骨)。这些数据提供了确定不同脊柱干预的切入点和工具方向的几何关系。结果:脊柱手术的工作空间是基于从计算机断层扫描获得的解剖数据定义的。数据包括每个定义其形状的椎骨的15次测量。处理后的数据为开放式和经皮手术中的几种脊柱手术提供了穿刺点。结论:本研究提供了有关椎骨结构的其他信息,这些信息可准确计算各种脊柱手术中的进入点和工具方向。这些统计数据对于模型和植入物设计以及机器人辅助手术系统的工作空间规范也很有价值。

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