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Advanced Methods for Target Navigation using Microelectrode Recordings in Stereotactic Neurosurgery for Deep Brain Stimulation

机译:使用微电极记录在刻膜神经外科术中的目标导航先进方法,深脑刺激

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This study describes novel methods for navigating and placing of electrodes into specific structures in the basal ganglia for deep brain stimulation (DBS), as it is common in the treatment of Parkinson's disease. Critical to these procedures in neurosurgery is the localization and identification of different target structures such as subthalamic nucleus (STN) along the electrode's trajectory and finding the best position for the stimulating electrode. Typically, microelectrode recordings (MER) of local neural activity along up to five parallel trajectories are used by neurosurgeons for detecting the target region and creating the anatomic positions of the electrodes by imagination. We developed a method for automatic classification of the MER signals, which provides an electrode model with patient specific borders of the STN. In addition, a method is provided for finding the best matching of the electrode model with a 3D model of the STN. As a result, a 2.5D visualization of the target region is produced with the most probable positions of the electrodes and their intersections.
机译:该研究描述了用于在基础神经节的基础神经节的特定结构中导航和放置电极的新方法,用于深脑刺激(DBS),因为它在帕金森病的治疗中是常见的。对神经外科的这些程序至关重要是沿电极的轨迹的不同靶结构的定位和鉴定,例如分粒子核(STN),并找到刺激电极的最佳位置。通常,神经外部使用沿着多达五个平行轨迹的局部神经活动的微电极记录(MER)用于检测目标区域并通过想象产生电极的解剖位置。我们开发了一种用于自动分类MER信号的方法,它提供了具有STN的患者特异性边界的电极模型。另外,提供了一种方法,用于找到具有STN的3D模型的电极模型的最佳匹配。结果,使用电极的最可能位置及其交叉点来产生目标区域的2.5D可视化。

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