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The perception and neural coding of complex vibrotactile stimuli.

机译:复杂的触觉刺激的感知和神经编码。

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摘要

The perception and neural coding of AM and FM modulated, sinusoidal vibrations were investigated in a series of studies that combined psychophysical experiments on humans with neurophysiological experiments on peripheral mechanoreceptive afferents in monkeys. The stimuli consisted of pure and modulated vibratory stimuli delivered by a cylinder and a 1-mm diameter punctate probe. Each stimulus type was vibration in directions parallel and perpendicular to the skin.; The psychophysical studies showed: (1) when subjects actively grasped the cylinder, absolute detection thresholds for 200 Hz stimuli were as low as 0.02 {dollar}mu{dollar}m. (2) Thresholds were highly affected by changes in contact area but were unaffected by changes in contact force and the direction of vibration. (3) At low modulation frequencies {dollar}rm (fsb{lcub}m{rcub}s),{dollar} subjects perceived the modulation envelope, whereas at high {dollar}rm fsb{lcub}m{rcub}s{dollar} the percept was more complex, being described by some subjects as rough. (4) Modulation detection thresholds varied with the waveform type, the center frequency {dollar}rm (fsb{lcub}c{rcub}){dollar} and the modulation frequency.; The neurophysiological study using the cylinder showed: (1) While both RA and PC afferents responded to pure tone and modulating stimuli at 40 Hz, the PC afferents responded with much higher firing rates than RA afferents. (2) Only the PC afferents responded to pure tone and modulating stimuli with a 300 Hz {dollar}rm fsb{lcub}c{rcub}.{dollar} (3) SA afferents did not respond to vibratory stimuli delivered by the cylinder, at either frequency. (4) For RA and PC afferents, the mean firing rate across the population did not change with modulation depth; however, both the instantaneous rate and phase-locking responses increased with modulation level.; A comparison of the psychophysical and the neurophysiological data indicates that at 40 Hz modulation detection is coded by modulation in the instantaneous rate and phase-locking responses, in predominantly the PC afferent population. This coding scheme does not account for the psychophysical data obtained at 300 Hz.
机译:在一系列研究中研究了AM和FM调制的正弦振动的感知和神经编码,该研究将对人类的心理物理实验与对猴的外周机械感受传入的神经生理实验相结合。刺激物由圆柱体和直径为1毫米的点状探针传递的纯净且经过调制的振动刺激物组成。每种刺激类型都是沿平行于和垂直于皮肤的方向的振动。心理物理学研究表明:(1)当受试者主动抓住圆柱体时,200 Hz刺激的绝对检测阈值低至0.02 {μm}美元。 (2)阈值受接触面积变化的影响很大,但不受接触力和振动方向变化的影响。 (3)在低调制频率{dol}} rm(fsb {lcub} m {rcub} s)时,{dollar}受试者感知调制包络,而在高{dollar} rm fsb {lcub} m {rcub} s {dollar }感知更为复杂,一些主题将其描述为粗糙的。 (4)调制检测阈值随波形类型,中心频率{rm}(fsb {lcub} c {rcub}){美元}和调制频率而变化。使用圆柱体进行的神经生理学研究表明:(1)虽然RA和PC传入神经都对纯音和40 Hz的调制刺激做出反应,但PC传入的发声速率远高于RA传入。 (2)只有PC传入神经以300 Hz {美元} rm fsb {lcub} c {rcub}对纯音和调制刺激做出反应。(3)SA传入神经对圆柱体传递的振动刺激无反应,在任何一个频率。 (4)对于RA和PC传入,整个人群的平均发射率没有随着调制深度而变化;然而,瞬时速率和锁相响应都随调制水平的增加而增加。心理生理数据和神经生理数据的比较表明,在40 Hz时,调制检测是通过调制PC传入人群的瞬时速率和锁相响应来编码的。此编码方案不考虑在300 Hz下获得的心理数据。

著录项

  • 作者

    Brisben, Amy Jean.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Biomedical.; Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 437 p.
  • 总页数 437
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;神经科学;
  • 关键词

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