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A Novel Ultrasound-guided Shoulder Arthroscopic Surgery

机译:一种新型的超声引导式肩关节镜手术

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This paper presents a novel ultrasound-guided computer system for arthroscopic surgery of the shoulder joint. Intra-operatively, the system tracks and displays the surgical instruments, such as arthroscope and arthroscopic burrs, relative to the anatomy of the patient. The purpose of this system is to improve the surgeon's perception of the three-dimensional space within the anatomy of the patient in which the instruments are manipulated and to provide guidance towards the targeted anatomy. Pre-operatively, computed tomography images of the patient are acquired to construct virtual three-dimensional surface models of the shoulder bone structure. Intra-operatively, live ultrasound images of pre-selected regions of the shoulder are captured using an ultrasound probe whose three-dimensional position is tracked by an optical camera. These images are used to register the surface model to the anatomy of the patient in the operating room. An initial alignment is obtained by matching at least three points manually selected on the model to their corresponding points identified on the ultrasound images. The registration is then improved with an iterative closest point or a sequential least squares estimation technique. In the present study the registration results of these techniques are compared. After the registration, surgical instruments are displayed relative to the surface model of the patient on a graphical screen visible to the surgeon. Results of laboratory experiments on a shoulder phantom indicate acceptable registration results and sufficiently fast overall system performance to be applicable in the operating room.
机译:本文提出了一种新型的超声引导计算机系统,用于肩关节关节镜手术。术中,该系统相对于患者的解剖结构跟踪并显示外科器械,例如关节镜和关节镜毛刺。该系统的目的是改善外科医生对在其中操纵器械的患者的解剖结构内的三维空间的感知,并提供针对目标解剖结构的指导。术前,获取患者的计算机断层扫描图像以构建肩骨结构的虚拟三维表面模型。术中,使用超声探头捕获肩部预选区域的实时超声图像,该探头的三维位置由光学相机跟踪。这些图像用于将表面模型注册到手术室中患者的身体结构。通过将在模型上手动选择的至少三个点与在超声图像上标识的它们的对应点进行匹配,可以获得初始对齐。然后使用迭代最近点或顺序最小二乘估计技术改进配准。在本研究中,比较了这些技术的注册结果。配准后,外科手术器械会在外科医生可见的图形屏幕上相对于患者的表面模型显示。在肩膀模型上的实验室实验结果表明可接受的配准结果和足够快的整体系统性能,可应用于手术室。

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