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SA1 and RA Afferent Responses to Static and Vibrating Gratings

机译:SA1和RA对静态和振动光栅的响应

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摘要

SA1 and RA afferent fibers differ both in their ability to convey information about the fine spatial structure of tactile stimuli and in their frequency sensitivity profiles. In the present study, we investigated the extent to which the spatial resolution of the signal conveyed by SA1 and RA fibers depends on the temporal properties of the stimulus. To that end, we recorded the responses evoked in SA1 and RA fibers of macaques by static and vibrating gratings that varied in spatial period, vibratory frequency, and amplitude. Gratings were oriented either parallel to the long axis of the finger (vertical) or perpendicular to it (horizontal). We examined the degree to which afferent responses were dependent on the spatial period, vibratory frequency, amplitude, and orientation of the gratings. We found that the spatial modulation of the afferent responses increased as the spatial period of the gratings increased; the spatial modulation was the same for static and vibrating gratings, despite large differences in evoked spike rates; the spatial modulation in SA1 responses was independent of stimulus amplitude over the range of amplitudes tested, whereas RA modulation decreased slightly as the stimulus amplitude increased; vertical gratings evoked stronger and more highly modulated responses than horizontal gratings; the modulation in SA1 responses was higher than that in RA responses at all frequencies and amplitudes. The behavioral consequences of these neurophysiological findings are examined in a companion paper.
机译:SA1和RA传入纤维在传达有关触觉刺激的精细空间结构的信息的能力和频率灵敏度方面都不同。在本研究中,我们调查了SA1和RA纤维所传递信号的空间分辨率在多大程度上取决于刺激的时间特性。为此,我们记录了通过在空间周期,振动频率和振幅上变化的静态和振动光栅在猕猴的SA1和RA纤维中引起的响应。光栅的方向平行于手指的长轴(垂直)或垂直于手指(水平)。我们检查了传入响应的程度取决于空间周期,振动频率,幅度和光栅的方向。我们发现传入响应的空间调制随着光栅空间周期的增加而增加;尽管引起的尖峰率差异很大,但静态和振动光栅的空间调制是相同的。在测试的幅度范围内,SA1响应中的空间调制与刺激幅度无关,而RA调制随着刺激幅度的增加而略有降低。垂直光栅比水平光栅具有更强,更高的调制响应;在所有频率和振幅下,SA1响应的调制均高于RA响应。这些神经生理学发现的行为后果在随附的论文中进行了研究。

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