脑深部刺激时皮质-基底神经节网络和局部场电位的模型

Eleanor Dunn, M. Lowery
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引用次数: 3

摘要

帕金森病患者β频带(12-30 Hz)的振荡神经活动升高,并与相关的运动症状相关。这些振荡可以通过深部脑刺激(DBS)电极记录的局部场电位(LFP)来监测,可以深入了解DBS的作用机制和治疗效果。提出了丘脑下核(STN) DBS过程中皮质-基底神经节网络的详细生理模型。该模型结合了STN传入纤维的细胞外刺激,具有正态和反态激活,并在电极上检测到LFP。我们模拟了皮层-基底神经节网络内的病理性β带振荡,发现在DBS应用后减弱。然后评估不同DBS参数(包括脉冲幅度、持续时间和频率)对DBS电极LFP的影响。本文提出的模型可以进一步用于理解DBS与皮质-基底神经节网络复杂动态的相互作用,以及随后在LFP中观察到的变化。
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A model of the cortico-basal ganglia network and local field potential during deep brain stimulation
Oscillatory neural activity in the beta frequency band (12-30 Hz) is elevated in Parkinson's disease and is correlated with the associated motor symptoms. These oscillations, which can be monitored through the local field potential (LFP) recorded by a deep brain stimulation (DBS) electrode, can give insight into the mechanisms of action, as well as treatment efficacy, of DBS. A detailed physiological model of the cortico-basal ganglia network during DBS of the subthalamic nucleus (STN) is presented. The model incorporates extracellular stimulation of STN afferent fibers, with both orthodromic and antidromic activation, and the LFP detected at the electrode. Pathological beta-band oscillations within the cortico-basal ganglia network were simulated and found to be attenuated following the application of DBS. The effects of varying DBS parameters, including pulse amplitude, duration and frequency, on the LFP at the DBS electrode were then assessed. The model presented here can be further used to understand the interaction of DBS with the complex dynamics of the cortico-basal ganglia network and subsequent changes observed in the LFP.
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