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Phantom Validation for Ultrasound to Statistical Shape Model Registration of Human Pelvis

机译:超声对人体骨盆的统计形状模型配准的幻像验证

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Total Hip Replacement (THR) has become a common surgical procedure in recent years, as a result of increasing aging population with osteoarthritis of the hip joint. Localization of the pelvic anatomical coordinate system (PaCS) is a critical step in accurate placement of the femur prosthesis in the acetabulum in THR. Intra-operative ultrasound (US) imaging can provide a radiation-free navigation system for localization of the PaCS. However, US images are noisy and cannot provide any anatomical information beneath the bone surface due to the total reflection of US beam at the bone-soft tissue interface. A solution to this problem is to fuse intra-operative US with pre-operative imaging or a statistical shape model (SSM) of the pelvis. Here, we propose a multi-slice to volume intensity-based registration of the pelvic SSM to a sparse set of 2D US images in order to localize the PaCS in the US. In this registration technique, a set of 2D slices are extracted from a pelvic SSM using the approximate location and orientation of their corresponding 2D US images. During the registration, the comparison between the SSM slices and the US images is made using an ultrasound simulation technique and a correlation-based similarity metric. We demonstrate the feasibility of our proposed approach in localizing the PaCS on five patient-based phantoms. These results indicate the necessity of including pubic symphysis landmarks in the 2D US slices in order to have a precise estimation of the PaCS.
机译:由于髋关节骨关节炎的人口老龄化,全髋关节置换术(THR)近年来已成为一种常见的外科手术方法。骨盆解剖坐标系(PaCS)的定位是在THR中将股骨假体准确放置在髋臼中的关键步骤。术中超声(US)成像可为PaCS的定位提供无辐射的导航系统。但是,由于US射线在骨软组织界面处的全反射,US图像比较吵杂,无法在骨骼表面下方提供任何解剖信息。解决此问题的方法是将术中超声与术前影像或骨盆的统计形状模型(SSM)融合在一起。在这里,我们提出了基于体积强度的骨盆SSM到稀疏2D US图像的多切片配准,以便在美国定位PaCS。在这种配准技术中,使用相应的2D US图像的大概位置和方向从骨盆SSM中提取2D切片的集合。在注册期间,使用超声模拟技术和基于相关性的相似性度量对SSM切片和US图像进行比较。我们证明了我们提出的方法在将PaCS定位在五个基于患者的幻像上的可行性。这些结果表明在二维US切片中包括耻骨联合界标的必要性,以便对PaCS进行精确估计。

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