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纹状体中等棘状神经元功能障碍可能模型中的动作选择:一名良性遗传性舞蹈病患者的行为和脑电图数据

Action selection in a possible model of striatal medium spiny neuron dysfunction: behavioral and EEG data in a patient with benign hereditary chorea.

作者信息

Beste Christian, Saft Carsten

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, University of Dresden, Schubertstrasse 42, 01309, Dresden, Germany,

出版信息

Brain Struct Funct. 2015 Jan;220(1):221-8. doi: 10.1007/s00429-013-0649-9. Epub 2013 Oct 18.

Abstract

Chaining or cascading of different actions and responses is necessary to accomplish a goal. Yet, little is known about the functional neuroanatomical-electrophysiological mechanisms mediating these processes. Computational models suggest that medium spiny neurons (MSNs) play an important role in action cascading, but this assumption has hardly been tested relating neuroanatomical and electrophysiological parameters in a human model of circumscribed MSN dysfunction. As a possible human model of circumscribed MSN dysfunction, we investigate benign hereditary chorea in a case-control study applying bootstrap statistics. To investigate these mechanisms, we used a stop-change paradigm, where we apply mathematical constraints to describe the degree of how task goals are activated with more or less overlap during action cascading. We record event-related potentials and analyze neural synchronization processes. The results show that MSN dysfunctions lead to deficits in action cascading processes only when two response options seek simultaneous access to response selection resources. Attentional selection processes are not affected, but processes reflecting the transition between stimulus evaluation and responding are affected. The results underline computational models of MSN functioning and show that dysfunction in these networks leads to a more parallel and hence inefficient response selection.

摘要

为实现一个目标,不同的动作和反应需要串联或层叠起来。然而,对于介导这些过程的功能性神经解剖学 - 电生理机制,我们却知之甚少。计算模型表明,中等棘状神经元(MSNs)在动作层叠中起重要作用,但在一个局限性MSN功能障碍的人体模型中,将神经解剖学和电生理参数联系起来检验这一假设的研究却几乎没有。作为一个可能的局限性MSN功能障碍的人体模型,我们在一项应用自助统计的病例对照研究中对良性遗传性舞蹈病进行了调查。为了研究这些机制,我们使用了一个停止 - 改变范式,在此范式中,我们应用数学约束来描述在动作层叠过程中任务目标以或多或少的重叠方式被激活的程度。我们记录事件相关电位并分析神经同步过程。结果表明,只有当两个反应选项同时寻求获取反应选择资源时,MSN功能障碍才会导致动作层叠过程出现缺陷。注意力选择过程未受影响,但反映刺激评估和反应之间转换的过程受到了影响。这些结果强调了MSN功能的计算模型,并表明这些网络中的功能障碍会导致更平行从而效率更低的反应选择。

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