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Long-term detection of Parkinsonian tremor activity from subthalamic nucleus local field potentials

机译:从丘脑底核局部场电位长期检测帕金森氏震颤活动

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Current deep brain stimulation paradigms deliver continuous stimulation to deep brain structures to ameliorate the symptoms of Parkinson's disease. This continuous stimulation has undesirable side effects and decreases the lifespan of the unit's battery, necessitating earlier replacement. A closed-loop deep brain stimulator that uses brain signals to determine when to deliver stimulation based on the occurrence of symptoms could potentially address these drawbacks of current technology. Attempts to detect Parkinsonian tremor using brain signals recorded during the implantation procedure have been successful. However, the ability of these methods to accurately detect tremor over extended periods of time is unknown. Here we use local field potentials recorded during a deep brain stimulation clinical follow-up visit 1 month after initial programming to build a tremor detection algorithm and use this algorithm to detect tremor in subsequent visits up to 8 months later. Using this method, we detected the occurrence of tremor with accuracies between 68-93%. These results demonstrate the potential of tremor detection methods for efficacious closed-loop deep brain stimulation over extended periods of time.
机译:当前的深部脑刺激范例向深部脑结构提供连续刺激,以减轻帕金森氏病的症状。这种持续的刺激会产生不良的副作用,并会缩短电池的使用寿命,因此必须尽早更换电池。使用脑信号来确定何时基于症状的发生来传递刺激的闭环深层脑刺激器可能会解决当前技术的这些缺点。尝试使用在植入过程中记录的脑信号检测帕金森氏震颤的尝试已经成功。但是,这些方法在长时间内准确检测震颤的能力尚不清楚。在这里,我们使用在初始编程后1个月进行的深部脑刺激临床随访期间记录的局部电势,以构建震颤检测算法,并使用该算法在长达8个月后的后续访视中检测震颤。使用这种方法,我们检测到震颤的发生率在68%至93%之间。这些结果证明了震颤检测方法在延长的时间段内对有效的闭环深部脑刺激的潜力。

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