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Determination of Pelvic Orientation from Ultrasound Images Using Patch-SSMs and a Hierarchical Speed of Sound Compensation Strategy

机译:使用Patch-SSM和声补偿策略的分层速度从超声图像确定骨盆方向

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In the field of computer assisted orthopedic surgery (CAOS) the anterior pelvic plane (APP) is a common concept to determine the pelvic orientation by digitizing distinct pelvic landmarks. As percutaneous palpation is - especially for obese patients - known to be error-prone, B-mode ultrasound (US) imaging could provide an alternative means. Several concepts of using ultrasound imaging to determine the APP landmarks have been introduced. In this paper we present a novel technique, which uses local patch statistical shape models (SSMs) and a hierarchical speed of sound compensation strategy for an accurate determination of the APP. These patches are independently matched and instantiated with respect to associated point clouds derived from the acquired ultrasound images. Potential inaccuracies due to the assumption of a constant speed of sound are compensated by an extended reconstruction scheme. We validated our method with in-vitro studies using a plastic bone covered with a soft-tissue simulation phantom and with a preliminary cadaver trial.
机译:在计算机辅助骨科手术(CAOS)领域,骨盆前平面(APP)是通过数字化不同的骨盆界标来确定骨盆方向的常见概念。由于经皮触诊-特别是对于肥胖患者-容易出错,因此B型超声(US)成像可提供替代方法。已经介绍了使用超声成像确定APP标志的几种概念。在本文中,我们提出了一种新颖的技术,该技术使用局部补丁统计形状模型(SSM)和声音补偿策略的分层速度来准确确定APP。相对于从所获取的超声图像导出的相关联的点云,独立地匹配和实例化了这些补丁。通过扩展的重建方案可以补偿由于假设音速恒定而导致的潜在误差。我们使用覆盖有软组织模拟体模的塑料骨骼进行了体外研究,并进行了尸体初步试验,从而验证了我们的方法。

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