首页> 外文会议>IEEE Global Conference on Signal and Information Processing >ELECTROPHYSIOLOGICAL SIGNAL PROCESSING FOR INTRAOPERATIVE LOCALIZATION OF SUBTHALAMIC NUCLEUS DURING DEEP BRAIN STIMULATION SURGERY
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ELECTROPHYSIOLOGICAL SIGNAL PROCESSING FOR INTRAOPERATIVE LOCALIZATION OF SUBTHALAMIC NUCLEUS DURING DEEP BRAIN STIMULATION SURGERY

机译:深脑刺激手术期间亚饱和核术中定位的电生理信号处理

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In this paper, a novel technique is proposed for localization of Subthalamic Nucleus (STN) during deep brain stimulation (DBS) Surgery. DBS surgery is performed on individuals living with Parkinson's disease (PD) to permanently implant stimulation electrodes for managing some motor symptoms of PD. The most challenging part of this surgery is to accurately place the electrodes inside the STN. Commonly, microelectrode recordings (MERs) are interpreted by the surgical team intraoperatively to estimate the location of electrodes and detect the borders of the STN. In this work, we aim to automate the process of localizing the STN using a machine learning technique (trained based on the electrophysiological signals that we have collected during 20 surgeries). The proposed approach is capable of detecting the dorsal borders of the STN during the procedure with high accuracy (85%), and outperforms the current state-of-the-art approach for this application.
机译:本文提出了一种新型技术,用于在深脑刺激(DBS)手术期间的亚饱和核(STN)的定位。 DBS手术是对帕金森病(PD)的个体进行,以永久植入刺激电极,用于管理PD的一些运动症状。这种手术的最具挑战性的部分是准确地将电极放在STN内。通常,微电极记录(MERS)由手术团队术中解释为估计电极的位置并检测STN的边界。在这项工作中,我们的目标是使用机器学习技术自动化定位STN的过程(基于我们在20次手术期间收集的电生理学信号培训)。所提出的方法能够在高精度(85 %)的过程中检测STN的背部边框,并且优于该应用的当前最先进的方法。

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