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触觉感知 2D 图案与纹理时皮质脊髓兴奋性的差异调节。

Differential modulation of corticospinal excitability during haptic sensing of 2-D patterns vs. textures.

机构信息

University of Ottawa, Ontario, Canada.

出版信息

BMC Neurosci. 2010 Nov 25;11:149. doi: 10.1186/1471-2202-11-149.

Abstract

BACKGROUND

Recently, we showed a selective enhancement in corticospinal excitability when participants actively discriminated raised 2-D symbols with the index finger. This extra-facilitation likely reflected activation in the premotor and dorsal prefrontal cortices modulating motor cortical activity during attention to haptic sensing. However, this parieto-frontal network appears to be finely modulated depending upon whether haptic sensing is directed towards material or geometric properties. To examine this issue, we contrasted changes in corticospinal excitability when young adults (n = 18) were engaged in either a roughness discrimination on two gratings with different spatial periods, or a 2-D pattern discrimination of the relative offset in the alignment of a row of small circles in the upward or downward direction.

RESULTS

A significant effect of task conditions was detected on motor evoked potential amplitudes, reflecting the observation that corticospinal facilitation was, on average, ~18% greater in the pattern discrimination than in the roughness discrimination.

CONCLUSIONS

This differential modulation of corticospinal excitability during haptic sensing of 2-D patterns vs. roughness is consistent with the existence of preferred activation of a visuo-haptic cortical dorsal stream network including frontal motor areas during spatial vs. intensive processing of surface properties in the haptic system.

摘要

背景

最近,当参与者用食指主动辨别凸起的二维符号时,我们发现皮质脊髓兴奋性出现了选择性增强。这种额外的促进作用可能反映了运动前皮质和背侧前额叶皮质的激活,在注意触觉感知时调节运动皮质活动。然而,这个顶叶-额叶网络似乎根据触觉感知是指向材料还是几何属性而被精细地调节。为了研究这个问题,我们比较了当年轻成年人(n=18)参与两个具有不同空间周期的光栅的粗糙度辨别,或者一个向上或向下方向的小圆圈行对齐的相对偏移的二维模式辨别时,皮质脊髓兴奋性的变化。

结果

运动诱发电位幅度的任务条件存在显著影响,反映了这样的观察结果,即在模式辨别中,皮质脊髓的促进作用平均比在粗糙度辨别中高出约 18%。

结论

在触觉感知二维模式与粗糙度时,皮质脊髓兴奋性的这种差异调节与存在优先激活包括额叶运动区在内的视触觉皮质背侧流网络是一致的,在触觉系统中,这种网络在空间处理与强度处理表面属性时会被激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82e7/3003249/4b8a86201c98/1471-2202-11-149-1.jpg

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