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Anticipation of brain shift in Deep Brain Stimulation automatic planning

机译:预期深部脑刺激自动计划中的脑转移

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Deep Brain Stimulation is a neurosurgery procedure consisting in implanting an electrode in a deep structure of the brain. This intervention requires a preoperative planning phase, with a millimetric accuracy, in which surgeons decide the best placement of the electrode depending on a set of surgical rules. However, brain tissues may deform during the surgery because of the brain shift phenomenon, leading the electrode to mistake the target, or moreover to damage a vital anatomical structure. In this paper, we present a patient-specific automatic planning approach for DBS procedures which accounts for brain deformation. Our approach couples an optimization algorithm with FEM based brain shift simulation. The system was tested successfully on a patient-specific 3D model, and was compared to a planning without considering brain shift. The obtained results point out the importance of performing planning in dynamic conditions.
机译:深度脑部刺激是一种神经外科手术,包括在脑部深层结构中植入电极。这种干预需要精确到毫米级的术前计划阶段,在该阶段中,外科医生会根据一组手术规则来决定电极的最佳放置位置。但是,由于脑移位现象,大脑组织在手术过程中可能会变形,从而导致电极误认为目标,或者损害重要的解剖结构。在本文中,我们为DBS程序提供了一种针对患者的自动计划方法,该方法可解决大脑变形的问题。我们的方法将优化算法与基于FEM的脑转移仿真相结合。该系统已在针对特定患者的3D模型上成功进行了测试,并与未考虑脑部转移的计划进行了比较。获得的结果指出了在动态条件下执行计划的重要性。

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