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接触力对触觉神经纤维对扫描纹理反应的影响。

The Effect of Contact Force on the Responses of Tactile Nerve Fibers to Scanned Textures.

机构信息

Department of Psychology, University of Sheffield, Sheffield, UK.

Committee on Computational Neuroscience, University of Chicago, Chicago, IL, United States.

出版信息

Neuroscience. 2018 Oct 1;389:99-103. doi: 10.1016/j.neuroscience.2017.08.024. Epub 2017 Aug 23.

Abstract

The perception of fine textures relies on highly precise and repeatable spiking patterns evoked in tactile afferents. These patterns have been shown to depend not only on the surface microstructure and material but also on the speed at which it moves across the skin. Interestingly, the perception of texture is independent of scanning speed, implying the existence of downstream neural mechanisms that correct for scanning speed in interpreting texture signals from the periphery. What force is applied during texture exploration also has negligible effects on how the surface is perceived, but the consequences of changes in contact force on the neural responses to texture have not been described. In the present study, we measure the signals evoked in tactile afferents of macaques to a diverse set of textures scanned across the skin at two different contact forces and find that responses are largely independent of contact force over the range tested. We conclude that the force invariance of texture perception reflects the force independence of texture representations in the nerve.

摘要

精细纹理的感知依赖于在触觉传入中引发的高度精确和可重复的尖峰模式。这些模式不仅取决于表面微观结构和材料,还取决于其在皮肤上移动的速度。有趣的是,纹理的感知与扫描速度无关,这意味着存在下游神经机制,可在解释来自外围的纹理信号时对扫描速度进行校正。在纹理探索过程中施加的力对表面的感知也几乎没有影响,但接触力变化对神经对纹理的反应的影响尚未描述。在本研究中,我们测量了猕猴的触觉传入对不同纹理的信号,这些纹理以两种不同的接触力在皮肤上扫描,发现响应在测试范围内基本与接触力无关。我们得出结论,纹理感知的力不变性反映了神经中纹理表示的力独立性。

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