首页> 外文会议>International workshop on computational methods and clinical applications for spine imaging;International conference on medical imaging computing for computer assisted intervention >Towards a Deformable Multi-surface Approach to Ligamentous Spine Models for Predictive Simulation-Based Scoliosis Surgery Planning
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Towards a Deformable Multi-surface Approach to Ligamentous Spine Models for Predictive Simulation-Based Scoliosis Surgery Planning

机译:预测基于仿真的脊柱侧弯手术计划的韧带脊柱模型的可变形多表面方法

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Scoliosis correction surgery is typically a highly invasive procedure that involves either an anterior or posterior release, which respectively entail the resection of ligaments and bone facets from the front or back of the spine, in order to make it sufficiently compliant to enable the correction of the deformity. In light of progress in other areas of surgery in minimally invasive therapies, orthopedic surgeons have begun envisioning computer simulation-assisted planning that could answer unprecedented what-if questions. This paper presents preliminary steps taken towards simulation-based surgery planning that will provide answers as to how much anterior or posterior release is truly necessary, provided we also establish the amplitude of surgical forces involved in corrective surgery. This question motivates us to pursue a medical image-based anatomical modeling pipeline that can support personalized finite elements simulation, based on models of the spine that not only feature vertebrae and inter-vertebral discs (IVDs), but also descriptive ligament models. This paper suggests a way of proceeding, based on the application of deformable multi-surface Simplex model applied to a CAD-based representation of the spine that makes explicit all spinal ligaments, along with vertebrae and IVDs. It presents a preliminary model-based segmentation study whereby Simplex meshes of CAD vertebrae are registered to the subject's corresponding vertebrae in CT data, which then drives ligament and IVD model registration by aggregation of neighboring vertebral transformations. This framework also anticipates foreseen improvements in MR imaging that could achieve better contrasts in ligamentous tissues in the future.
机译:脊柱侧弯矫正手术通常是高度侵入性的手术,涉及前释放或后释放,其分别需要从脊柱的前部或后部切除韧带和骨小面,以使其充分顺应以能够矫正股骨。畸形。鉴于微创治疗在其他外科领域的进展,骨科医生已经开始设想计算机模拟辅助的计划,该计划可以回答前所未有的假设问题。本文介绍了迈向基于模拟的手术计划的初步步骤,这些步骤将提供关于真正需要多少前向或后向释放的答案,前提是我们还要确定矫正手术所涉及的手术力量的幅度。这个问题促使我们寻求一种基于医学图像的解剖建模流水线,该流水线不仅基于具有脊椎和椎间盘(IVD)特征的脊柱模型,而且还具有描述性韧带模型,可以支持个性化有限元仿真。本文提出了一种可变形的方法,该方法基于可变形的多表面单纯形模型的应用,该模型应用于基于CAD的脊柱表征,使脊柱韧带以及椎骨和IVD清晰可见。它提出了一项基于模型的初步分割研究,该研究将CAD椎骨的单纯形网格注册到CT数据中对象的相应椎骨上,然后通过聚集相邻的椎骨转换驱动韧带和IVD模型注册。该框架还预期在MR成像方面可预见的改进,将来可以在韧带组织中获得更好的对比度。

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