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时空特性在感觉引导运动期间调节对早期体感加工的多感觉影响。

Spatiotemporal properties modulate intermodal influences on early somatosensory processing during sensory-guided movement.

作者信息

Meehan Sean K, Legon Wynn, Staines W Richard

机构信息

Department of Kinesiology, University of Waterloo, 200 University Ave. West, Waterloo, Ont., Canada N2L 3G1.

出版信息

Clin Neurophysiol. 2009 Jul;120(7):1371-80. doi: 10.1016/j.clinph.2009.05.005. Epub 2009 Jun 5.

Abstract

OBJECTIVES

Somatosensory evoked potentials (SEPs) were used to (1) investigate intermodal influences upon somatosensory processing in primary somatosensory cortex (S1), (2) determine the influence of spatiotemporal relationships between bimodal stimuli in S1 and (3) observe behavioral changes associated with intermodal modulation.

METHODS

Median nerve SEPs were elicited from electrical stimulation and recorded from scalp electrodes during continuous tracking of one of two simultaneously presented stimuli (vibrotactile/visual). In Experiment 1, spatial relationship was manipulated by placing the visual stimulus in the same/opposite hemi-field as the vibrotactile stimulus. In Experiment 2, temporal synchrony was manipulated by altering the pattern of intensity changes such that they followed identical/different patterns.

RESULTS

For Experiment 1, greater spatial relationship reduced the amplitude of the P27 SEP component whereas in Experiment 2 greater temporal synchrony increased the amplitude of the P27 SEP component. Temporal synchrony increased P50 amplitude only during vibrotactile tracking. Tracking performance mirrored early SEP amplitude changes. In Experiment 2, task-relevance was associated with increased N140 amplitude.

CONCLUSIONS

The changes in P27 amplitude observed in Experiments 1 and 2 reflect an intermodal mechanism of somatosensory gating dependent upon spatiotemporal properties of bimodal stimulation whereas the P50 reflects multisensory aspects of somatosensory processing. Changes in behavior may reflect the importance of these early influences to sensorimotor transformations.

SIGNIFICANCE

Modulation of the P27 component reflects an intermodal sensory gating in somatosensory processing.

摘要

目的

体感诱发电位(SEPs)用于(1)研究初级体感皮层(S1)中多模态对体感加工的影响,(2)确定S1中双峰刺激之间时空关系的影响,以及(3)观察与多模态调制相关的行为变化。

方法

在连续跟踪同时呈现的两种刺激(振动触觉/视觉)之一的过程中,通过电刺激引出正中神经SEP,并从头皮电极记录。在实验1中,通过将视觉刺激置于与振动触觉刺激相同/相反的半视野中来操纵空间关系。在实验2中,通过改变强度变化模式来操纵时间同步,使其遵循相同/不同的模式。

结果

对于实验1,更大的空间关系降低了P27 SEP成分的幅度,而在实验2中,更大的时间同步增加了P27 SEP成分的幅度。仅在振动触觉跟踪期间,时间同步增加了P50幅度。跟踪性能反映了早期SEP幅度变化。在实验2中,任务相关性与N140幅度增加有关。

结论

实验1和实验2中观察到的P27幅度变化反映了一种体感门控的多模态机制,该机制依赖于双峰刺激的时空特性,而P50反映了体感加工的多感官方面。行为变化可能反映了这些早期影响对感觉运动转换的重要性。

意义

P27成分的调制反映了体感加工中的多模态感觉门控。

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