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首页> 外文期刊>The Journal of Physiology >Frequency and function in the basal ganglia: the origins of beta and gamma band activity
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Frequency and function in the basal ganglia: the origins of beta and gamma band activity

机译:基底神经节的频率和功能:β和伽马带活动的起源

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Neural oscillations in the basal ganglia (BG) are well studied yet remain poorly understood. Behavioural correlates of spectral activity are well described, yet a quantitative hypothesis linking time domain dynamics and spectral properties to BG function has been lacking. We show, for the first time, that a unified description is possible by interpreting previously ignored structure in data describing globus pallidus interna responses to cortical stimulation. These data were used to expose a pair of distinctive neuronal responses to the stimulation. This observation formed the basis for a new mathematical model of the BG, quantitatively fitted to the data, which describes the dynamics in the data, and is validated against other stimulus protocol experiments. A key new result is that when the model is run using inputs hypothesised to occur during the performance of a motor task, beta and gamma frequency oscillations emerge naturally during static-force and movement, respectively, consistent with experimental local field potentials. This new model predicts that the pallido-striatum connection has a key role in the generation of beta band activity, and that the gamma band activity associated with motor task performance has its origins in the pallido-subthalamic feedback loop. The network's functionality as a selection mechanism also occurs as an emergent property, and closer fits to the data gave better selection properties. The model provides a coherent framework for the study of spectral, temporal and functional analyses of the BG and therefore lays the foundation for an integrated approach to study BG pathologies such as Parkinson's disease in silico.
机译:基底节(BG)神经振荡是很好的研究还仍然知之甚少。频谱活动的行为相关因素有很好的描述,但定量假设联时间域动力学和光谱性质,以BG功能已缺乏。我们发现,对于第一次,一个统一的描述可以通过在描述苍白球INTERNA到皮层刺激的响应数据解释先前被忽视的结构。这些数据被用于曝光对到刺激独特神经元的反应。这一观察形成为BG的一个新的数学模型,定量地拟合到数据,其描述了在数据中的动态变化的基础上,并且对其他刺激协议实验验证。一个关键的新的结果是,该模型是用投入运行时假设的机动任务,β和γ频率振荡的执行过程中发生静电力和运动,分别与实验局部场电位一致的过程中自然产生。这个新的模型预测,苍白球,纹状体连接在β带活动产生了关键的作用,以及与电机任务性能相关的伽玛乐队活动有其在苍白球,丘脑底反馈回路的起源。作为一个选择机制,网络的功能也发生作为一个新兴的财产,并接近拟合的数据给出了更好的选择特性。该模型提供了用于BG的频谱,时间和功能分析研究中的一个一致的框架,所以规定为一体的综合方法来研究BG帕金森在硅片疾病病理,例如基础。

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