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Tactile discrimination of shape: responses of slowly and rapidly adapting mechanoreceptive afferents to a step indented into the monkey fingerpad

机译:形状的触觉辨别:机械适应性传入和传入的缓慢和快速适应压入猴子指垫的台阶

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摘要

The representation of shape in the responses of monkey cutaneous mechanoreceptive afferents to steps of varying shape vertically indented into the fingerpad was studied. A series of flat plates was used, each with a step change in thickness in the middle so that one- half of the plate was thicker than the other. The cross-sectional shape of the step approximated that of a half-cycle sinusoid, 0.5 mm high, that was varied in half-cycle wavelength (step width) and hence in steepness and curvature. The steps fell into 2 categories, characterized as “steep” and “‘gradual.” Evoked action potentials were recorded from single, slowly adapting and from rapidly adapting Meissner corpuscle mechanoreceptive afferent fibers (SA and RA, respectively) innervating the fingerpad of the anesthetized monkey while each step was indented at a succession of lateral positions across the fiber's receptive field. The responses of each SA provided a spatial response profile (number of evoked impulses as a function of step position) that was directly related to the variation in curvature across the step. The rate of discharge was greatest under the sharpest (convex) portion of the step, least under the adjacent concave portion, and intermediate under the flat portions of the steps. The results indicated an exquisite sensitivity of the SA, even during the ramp phase of vertical indentation, to the changes in skin curvature. The spatial response profile remained relatively undistorted over time during the ensuing steady phase, while the contrast between the peak and the minimum response improved. RAs responded only during the ramp phase and with fewer responses, and gave rise to a poorly modulated spatial response profile, even though half of the RAs tested showed limited sensitivity to the amount or rate of change of skin curvature. It was hypothesized that RA responses are predominantly influenced by the vertical velocity of the most sensitive spot in the receptive field. When the same step stimuli were applied to the human fingerpad, the capacities of humans to discriminate differences in step shape were found to correlate with the discriminability of SAs, as opposed to the considerably poorer discriminability of RAs. It is concluded that information concerning the local curvature and hence the shape of objects indenting the skin is primarily coded by the SAs. In the 2 preceding papers (LaMotte and Srinivasan, 1987a, b), we investigated the responses of SAs and RAs to the same sinusoidal steps stroked back and forth across the fingerpad under constant compressional force.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:研究了猴子皮肤机械感受传入传入对垂直压入指垫的不同形状台阶的反应中的形状表示。使用了一系列平板,每个平板的中间厚度都有逐步变化,因此平板的一半比另一平板厚。台阶的横截面形状近似为0.5 mm高的半周期正弦曲线,其半周期波长(台阶宽度)变化,因此陡度和曲率变化。这些步骤分为两类,分别是“陡峭”和“渐进”。从单个,缓慢适应和快速适应的Meissner小体机械感受传入纤维(分别为SA和RA)诱发麻醉猴子的指垫时记录了诱发的动作电位,而每一步都在整个纤维感受野的一系列横向位置上进行了缩进。每个SA的响应提供了一个空间响应曲线(诱发的脉冲数作为台阶位置的函数),该曲线与整个台阶的曲率变化直接相关。放电速率在台阶的最尖锐(凸)部分下最大,在相邻的凹入部分下最小,在台阶的平坦部分下中间。结果表明,即使在垂直压痕的倾斜阶段,SA对皮肤曲率的变化也具有出色的敏感性。在随后的稳定阶段,空间响应曲线在一段时间内保持相对不变,而峰值和最小响应之间的对比度得到了改善。 RA仅在斜波阶段响应且响应较少,即使一半的RA对皮肤曲率的变化量或速率显示出有限的敏感性,RA的调制后的空间响应曲线也较差。假设RA反应主要受感受野中最敏感点的垂直速度影响。当将相同的脚步刺激应用于人的指垫时,发现人辨别脚步形状差异的能力与SA的可辨别性相关,而不是RA的可辨别性较差。可以得出结论,有关局部曲率的信息以及因此使皮肤凹陷的物体的形状主要由SA编码。在之前的两篇论文中(LaMotte和Srinivasan,1987a,b),我们研究了SA和RA对在恒定压缩力下在指板上来回敲击的相同正弦台阶的响应(抽象截断为400个单词)

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