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首页> 外文期刊>Journal of Neurophysiology >Physical determinants of the shape of the psychophysical curve relating tactile roughness to raised-dot spacing: Implications for neuronal coding of roughness
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Physical determinants of the shape of the psychophysical curve relating tactile roughness to raised-dot spacing: Implications for neuronal coding of roughness

机译:触觉粗糙度与凸起点间距相关的心理生理曲线形状的物理决定因素:粗糙度的神经元编码的含义

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There are conflicting reports as to whether the shape of the psychometric relation between perceived roughness and tactile element spacing [spatial period (SP)] follows an inverted U-shape or a monotonic linear increase. This is a critical issue because the former result has been used to assess neuronal codes for roughness. We tested the hypothesis that the relation's shape is critically dependent on tactile element height (raised dots). Subjects rated the roughness of low (0.36 mm)- and high (1.8 mm)-raised-dot surfaces displaced under their fingertip. Inverted U-shaped curves were obtained as the SP of low-dot surfaces was increased (1.3-6.2 mm, tetragonal arrays); a monotonic increase was observed for high-dot surfaces. We hypothesized that roughness is not a single sensory continuum across the tested SPs of low-dot surfaces, predicting that roughness discrimination would show deviations from the invariant relation between threshold (ΔS) and the value of the standard (S) surface (Weber fraction, ΔS/S) expected for a single continuum. The results showed that Weber fractions were increased for SPs on the descending limb of the inverted U-shaped curve. There was also an increase in the Weber fraction for high-dot surfaces but only at the peak (3 mm), corresponding to the SP at which the slope of the psychometric function showed a modest decline. Together the results indicate that tactile roughness is not a continuum across low-dot SPs of 1.3-6.2 mm. These findings suggest that correlating the inverted U-shaped function with neuronal codes is of questionable validity. A simple intensive code may well contribute to tactile roughness.
机译:关于感知到的粗糙度和触觉元件间距[空间周期(SP)]之间的心理计量关系的形状遵循倒U形还是单调线性增加的报道相互矛盾。这是一个关键问题,因为以前的结果已用于评估粗糙度的神经元代码。我们检验了这种关系的形状严格取决于触觉元素高度(凸起点)的假设。受试者评定了指尖下移位的低(0.36 mm)和高(1.8 mm)凸起点表面的粗糙度。随着低点表面SP的增加(1.3-6.2 mm,四边形阵列),获得了倒U形曲线。高点表面观察到单调增加。我们假设粗糙度不是经过测试的低点表面SP上的单个感觉连续体,并预测粗糙度判别将显示出与阈值(ΔS)和标准(S)表面值之间的不变关系(韦伯分数,单个连续体的期望值(ΔS/ S)。结果表明,在倒U形曲线的下肢,SP的Weber分数增加。高点表面的韦伯分数也有增加,但仅在峰值(3毫米)处增加,这对应于心理功能的斜率显示适度下降的SP。在一起的结果表明,触觉粗糙度在1.3-6.2mm的低点SP上不是连续的。这些发现表明,将倒U型功能与神经元代码相关联是否值得怀疑。一个简单的强化代码很可能会增加触觉粗糙度。

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