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Extracting Displacement Data from Co-Registered Ultrasound for Brain Modeling

机译:从共同登记超声中提取位移数据以进行脑建模

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Image guided neurosurgery systems rely on rigid registration of the brain to preoperative images, not taking into account the displacement of brain tissue during surgery. Co-registered ultrasound appears to be a promising means of detecting tissue shift in the operating room. Although the use of ultrasound images alone may be insufficient for adequately describing intraoperative brain deformation, they could be used in conjunction with a computational model to predict full volume deformation. We rigorously test the assumption that co-registered ultrasound is an accurate source of sparse displacement data. Our co-registered ultrasound system is studied in both clinical applications as well as in a series of porcine experiments. Qualitative analysis of patient data indicates that ultrasound correctly depicts displaced tissue. The porcine studies demonstrate that features from co-registered ultrasound and CT or MR images are properly aligned to within approximately 1.7 mm. Tissue tracking in pigs suggests that the magnitude of displaced tissue may be more accurately predicted than the actual location of features. We conclude that co-registered ultrasound is capable of detecting brain tissue shift, and that incorporating displacement data into computational model appears feasible.
机译:图像引导神经外科系统依靠脑大脑的刚性登记到术前图像,不考虑手术期间脑组织的位移。共同登记的超声似乎是检测手术室中的组织偏移的有希望的意义手段。尽管单独使用超声图像可能不足以充分描述术中脑变形,但它们可以与计算模型结合使用以预测全容积变形。我们严格测试了共登记超声是一种准确的稀疏位移数据来源的假设。我们的共同注册的超声系统是在临床应用中以及一系列猪实验中进行的。患者数据的定性分析表明超声波正确地描绘了位移组织。猪研究表明,来自共登记超声和CT或MR图像的特征在约1.7mm内适当地对准。猪中的组织跟踪表明,比特征的实际位置可以更准确地预测出位移组织的大小。我们得出结论,共同登记的超声能够检测脑组织移位,并且将位移数据纳入计算模型中可行。

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