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The effects of single-trial averaging on the temporal resolution of functional MRI.单次试验平均对功能磁共振成像时间分辨率的影响。
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下橄榄核对刺激时间的反应特异性。

Specificity of inferior olive response to stimulus timing.

作者信息

Liu T, Xu D, Ashe J, Bushara K

机构信息

Brain Science Center, Minneapolis Veterans Affairs Medical Center, Minneapolis, Minnesota, USA.

出版信息

J Neurophysiol. 2008 Sep;100(3):1557-61. doi: 10.1152/jn.00961.2007. Epub 2008 Jul 16.

DOI:10.1152/jn.00961.2007
PMID:18632890
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2544464/
Abstract

The inferior olive is the sole source of the climbing fiber system, one of the two major afferent systems of the cerebellum; however, its exact role remains unknown. A longstanding hypothesis is that the inferior olive with its unique intrinsic rhythmic firing properties mediates motor timing. However, direct evidence linking the inferior olive to timing behavior has been difficult to demonstrate in animal or human studies likely due to the inhibition of inferior olive responses by self-produced movement. Here we used event-related functional magnetic resonance imaging (fMRI) and a perceptual task that dissociates the temporal from nontemporal attributes of sensory input. Subjects were asked to attend to rhythmically occurring identical visual stimuli and to detect a change in their timing, spatial orientation, or color. Inferior olive activation was seen only when perceiving a change in stimulus timing. These results are consistent with animal studies demonstrating that the inferior olive is especially sensitive to "unexpected" sensory events and further provide evidence supporting the specificity of the inferior olive response to stimulus timing. The results are consistent with the view that the inferior olive and the climbing fiber system mediate the encoding of temporal information required for both motor and nonmotor cognitive processes.

摘要

下橄榄核是小脑两大主要传入系统之一——攀缘纤维系统的唯一来源;然而,其确切作用仍不清楚。一个长期存在的假说是,具有独特内在节律性放电特性的下橄榄核介导运动定时。然而,在动物或人体研究中,将下橄榄核与定时行为联系起来的直接证据很难得到证明,这可能是由于自身产生的运动对下橄榄核反应的抑制。在这里,我们使用了事件相关功能磁共振成像(fMRI)和一项感知任务,该任务将感觉输入的时间属性与非时间属性区分开来。受试者被要求关注有节奏出现的相同视觉刺激,并检测其时间、空间方向或颜色的变化。仅在感知刺激时间变化时才观察到下橄榄核激活。这些结果与动物研究一致,表明下橄榄核对“意外”感觉事件特别敏感,并进一步提供了支持下橄榄核反应对刺激时间特异性的证据。这些结果与以下观点一致,即下橄榄核和攀缘纤维系统介导运动和非运动认知过程所需的时间信息编码。