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Compensation of Sound Speed Deviations in 3-D B-Mode Ultrasound for Intraoperative Determination of the Anterior Pelvic Plane

机译:术中确定骨盆前平面的3D B型超声声速偏差补偿

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摘要

An accurate determination of the pelvic orientation is inevitable for the correct cup prosthesis placement of navigated total hip arthroplasties. Conventionally, this step is accomplished by percutaneous palpation of anatomic landmarks. Sterility issues and an increased landmark localization error for obese patients lead to the application of B-mode ultrasound imaging in the field of computer-assisted orthopedic surgery. Many approaches have been proposed in the literature to replace the percutaneous digitization by 3-D B-mode ultrasound imaging. However, the correct depth localization of the pelvic landmarks could be significantly affected by the acoustic properties of the penetrated tissues. Imprecise depth estimation could lead to a miscalculation of the pelvic orientation and subsequently to a misalignment of the acetabular cup implant. But so far, no solution has been presented, which compensates for acoustic property differences for correct depth estimation. In this paper, we present a novel approach to determine pelvic orientation from ultrasound images by applying a hierarchical registration scheme based on patch statistical shape models to compensate for differences in speed of sound. The method was validated based on plastic bones and a cadaveric specimen.
机译:对于正确的全髋关节置换术杯假体放置,不可避免地要准确确定骨盆方向。通常,该步骤通过经皮触诊解剖学界标来完成。肥胖患者的不育问题和标志性定位误差的增加导致了B型超声成像在计算机辅助骨科手术领域的应用。文献中已经提出了许多方法来代替3-D B-模式超声成像的经皮数字化。但是,骨盆界标的正确深度定位可能会受到穿透组织的声学特性的显着影响。不精确的深度估计可能导致骨盆方向的错误计算,并随后导致髋臼杯植入物的未对齐。但是到目前为止,还没有提出解决方案,该解决方案补偿了声学特性的差异以进行正确的深度估计。在本文中,我们提出了一种新颖的方法,通过应用基于斑块统计形状模型的分层配准方案来补偿声速差异,从而从超声图像确定骨盆方向。该方法已基于塑料骨骼和尸体标本进行了验证。

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