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A Novel Craniotomy Simulation System for Evaluation of Stereo-pair Reconstruction Fidelity and Tracking

机译:一种用于评估立体对重建保真度和跟踪的新型Craniotmy仿真系统

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Brain shift compensation using computer modeling strategies is an important research area in the field of image-guided neurosurgery (IGNS). One important source of available sparse data during surgery to drive these frameworks is deformation tracking of the visible cortical surface. Possible methods to measure intra-operative cortical displacement include laser range scanners (LRS), which typically complicate the clinical workflow, and reconstruction of cortical surfaces from stereo pairs acquired with the operating microscopes. In this work, we propose and demonstrate a craniotomy simulation device that permits simulating realistic cortical displacements designed to measure and validate the proposed intra-operative cortical shift measurement systems. The device permits 3D deformations of a mock cortical surface which consists of a membrane made of a Dragon Skin? high performance silicone rubber on which vascular patterns are drawn. We then use this device to validate our stereo pair-based surface reconstruction system by comparing landmark positions and displacements measured with our systems to those positions and displacements as measured by a stylus tracked by a commercial optical system. Our results show a 1mm average difference in localization error and a 1.2mm average difference in displacement measurement. These results suggest that our stereo-pair technique is accurate enough for estimating intra-operative displacements in near real-time without affecting the surgical workflow.
机译:使用计算机建模策略的脑班补偿是图像引导神经外科(IMGS)领域的重要研究区域。手术期间可用稀疏数据的一个重要来源,以驱动这些框架是可见皮质表面的变形跟踪。测量手术内皮质位移的可能方法包括激光范围扫描仪(LRS),其通常使临床工作流程复杂化,并从用操作显微镜获取的立体对重建皮质表面。在这项工作中,我们提出并展示了一个开颅造型模拟装置,允许模拟设计用于测量和验证所提出的术中的皮质移位测量系统的逼真皮质位移。该装置允许模拟皮质表面的3D变形,其由由龙皮制成的膜组成?高性能硅橡胶,在血管图案中被拉伸。然后,我们使用该设备通过将使用我们的系统测量的地标位置和位移与由商业光学系统跟踪的触控笔测量来验证基于地标位置和位移来验证基于立体基对的表面重建系统。我们的结果显示了1毫米的定位误差差异和位移测量的1.2mm平均水平。这些结果表明,我们的立体对技术是一种用于估计近实时术中的位移,而不会影响手术工作流程不够准确。

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