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首页> 外文期刊>Stereotactic and Functional Neurosurgery: Official Journal of the World Society for Stereotactic and Functional Neurosurgery >Chronic evaluation of a clinical system for deep brain stimulation and recording of neural network activity
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Chronic evaluation of a clinical system for deep brain stimulation and recording of neural network activity

机译:慢性脑刺激临床系统的慢性评估和神经网络活动的记录

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Background/Aims: In conjunction with therapeutic stimulation, next-generation deep brain stimulation (DBS) devices may offer the ability to record and analyze neural signals, providing for unprecedented insight into DBS effects on neural networks. This work was conducted to evaluate an implantable, clinical-grade system that permits concurrent stimulation and recording using a large animal (ovine) model recently developed to study DBS for epilepsy. Methods: Following anesthesia and 1.5-tesla MRI acquisition, unilateral anterior thalamic and hippocampal DBS leads were implanted (n = 3) using a frameless stereotactic system. Chronic, awake recordings of evoked potentials (EPs) and local field potentials were collected with the implanted device and analyzed off-line. Results: Hippocampal EPs were stable over long-term (>1 year) recording and consistent in morphology and latency with prior acute results. Thalamic and hippocampal DBS produced both excitatory and inhibitory network effects that were stimulation site and parameter dependent. Free roaming recordings illustrated periods of highly correlated activity between these two structures within the circuit of Papez. Conclusions: These results provide further insight into mechanisms of DBS therapy for epilepsy and an encouraging demonstration of the capabilities of this new technology, which in the future, may afford unique opportunities to study human brain function and neuromodulation mechanism of action.
机译:背景/目的:结合治疗性刺激,下一代深部脑部刺激(DBS)设备可以提供记录和分析神经信号的能力,从而提供对DBS对神经网络影响的前所未有的洞察力。这项工作是为了评估可植入的临床级系统,该系统允许使用最近开发用于研究癫痫的DBS的大型动物(绵羊)模型同时刺激和记录。方法:在麻醉和1.5 tesla MRI采集后,使用无框架立体定向系统植入n侧单前丘脑和海马DBS引线(n = 3)。用植入的装置收集诱发电位(EPs)和局部场电位的慢性清醒记录,并进行离线分析。结果:海马EP长期(> 1年)记录稳定,形态和潜伏期与先前的急性结果一致。丘脑和海马DBS产生兴奋性和抑制性网络效应,这些效应取决于刺激部位和参数。免费漫游记录说明了帕佩兹电路内这两个结构之间的高度相关活动。结论:这些结果为DBS癫痫的治疗机制提供了进一步的见识,并令人鼓舞地证明了这项新技术的功能,该技术将来可能为研究人脑功能和神经调节作用机制提供独特的机会。

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