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纹状体对感觉时间的贡献:基于体素的电生理标记物损伤图谱。

Striatal contributions to sensory timing: Voxel-based lesion mapping of electrophysiological markers.

作者信息

Schwartze Michael, Stockert Anika, Kotz Sonja A

机构信息

School of Psychological Sciences, University of Manchester, Manchester, United Kingdom; Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany; Language and Aphasia Laboratory, University of Leipzig, Leipzig, Germany.

出版信息

Cortex. 2015 Oct;71:332-40. doi: 10.1016/j.cortex.2015.07.016. Epub 2015 Aug 4.

Abstract

To achieve precise timing, the brain needs to establish a representation of the temporal structure of sensory input and use this information to generate timely responses. These operations engage the basal ganglia. Current research in this direction is limited by reliance on animal models, motor and/or offline tasks, small sample sizes, the low temporal resolution of functional magnetic resonance imaging, and the study of progressive neurodegeneration. Here, we combine the excellent temporal resolution of electrophysiological potentials with the high spatial resolution of structural neuroimaging to investigate basal ganglia contributions to sensory timing. Chronic-stage lesion patients and healthy controls listened to pure-tone sequences differing exclusively in temporal regularity. Event-related potentials (ERPs) indicate a selective indifference against this manipulation in patients, attributable to the striatal part of the basal ganglia on the basis of a lesion-mapping approach. These findings provide evidence for a crucial contribution of the basal ganglia to basic sensory functioning.

摘要

为了实现精确计时,大脑需要建立感觉输入的时间结构表征,并利用这些信息产生及时的反应。这些操作涉及基底神经节。目前这一方向的研究受到依赖动物模型、运动和/或离线任务、小样本量、功能磁共振成像的低时间分辨率以及进行性神经退行性变研究的限制。在这里,我们将电生理电位的出色时间分辨率与结构神经成像的高空间分辨率相结合,以研究基底神经节对感觉计时的贡献。慢性期病变患者和健康对照者聆听仅在时间规律性上不同的纯音序列。事件相关电位(ERP)表明患者对这种操作存在选择性无反应,基于病变映射方法,这归因于基底神经节的纹状体部分。这些发现为基底神经节对基本感觉功能的关键贡献提供了证据。

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