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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Investigating Synchronous Oscillation and Deep Brain Stimulation Treatment in A Model of Cortico-Basal Ganglia Network
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Investigating Synchronous Oscillation and Deep Brain Stimulation Treatment in A Model of Cortico-Basal Ganglia Network

机译:在皮质-基底神经节网络模型中研究同步振荡和深部脑刺激治疗。

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摘要

Altered firing properties and increased pathological oscillations in the basal ganglia have been proven to be hallmarks of Parkinson's disease (PD). Increasing evidence suggests that abnormal synchronous oscillations and suppression in the cortex may also play a critical role in the pathogenic process and treatment of PD. In this paper, a new closed-loop network including the cortex and basal ganglia using the Izhikevich models is proposed to investigate the synchrony and pathological oscillations in motor circuits and their modulation by deep brain stimulation (DBS). Results show that more coherent dynamics in the cortex may cause stronger effects on the synchrony and pathological oscillations of the subthalamic nucleus (STN). The pathological beta oscillations of the STN can both be efficiently suppressed with DBS applied directly to the STN or to cortical neurons, respectively, but the underlying mechanisms by which DBS suppresses the beta oscillations are different. This research helps to understand the dynamics of pathological oscillations in PD-related motor regions and supports the therapeutic potential of stimulation of cortical neurons.
机译:射击特性的改变和基底神经节中病理性振荡的增加已被证明是帕金森氏病(PD)的标志。越来越多的证据表明,皮层异常同步振荡和抑制也可能在PD的致病过程和治疗中起关键作用。在本文中,提出了一种使用Izhikevich模型的包括皮质和基底神经节的新型闭环网络,以研究运动回路的同步性和病理性振荡以及深部脑刺激(DBS)对它们的调制。结果表明,皮层中更连贯的动力学可能会对丘脑下核(STN)的同步性和病理性振荡产生更强的影响。分别通过直接应用于STN或皮层神经元的DBS可以有效地抑制STN的病理性β振荡,但是DBS抑制β振荡的基本机制是不同的。这项研究有助于了解PD相关运动区域病理振荡的动态,并支持刺激皮质神经元的治疗潜力。

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