首页> 美国卫生研究院文献>The Journal of Physiology >Stimulus-response functions of slowly adapting mechanoreceptors in the human glabrous skin area.
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Stimulus-response functions of slowly adapting mechanoreceptors in the human glabrous skin area.

机译:在人类无毛皮肤区域中缓慢适应机械感受器的刺激反应功能。

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摘要

1. Single unit impluses were recorded from the ulnar and median nerves of awake human subjects with tungsten electrodes inserted percutaneously in the upper arm. 2. One hundred and one slowly adapting receptors with receptive fields in the glabrous skin area were studied. The units were classified as type SA-I and type SA-II largely on the basis of their responses to lateral stretching of the skin. Eighty-eight receptors did not respond to this type of stimulus (type SA-I), whereas thirteen receptors readily responded to stretching (type SA-II), AND OFTEN EXHIBITED DIRECTIONAL SENSITIVITY. 3. The SA-I receptors showed no spontaneous discharge, and the discharge pattern was mostly rather irregular, whereas most of the SA-II receptors had a spontaneous discharge, and a very regular discharge pattern. 4. The conduction velocities of the afferent were all in a A alpha range. The mean value for the SA-I receptors was 58-7 plus or minus 2-3m/sec, and for the SA-II receptors 45.3 plus or minus 3.6 m/sec. 5. The neural response to stimuli of varying skin indentation amplitudes was analyzed. The threshold for a dynamic response ranged for the SA-I receptors from 0.15 to 1.35 mm and for the SA-II receptors from 0.25 to 0.95 mm. The threshold for a static discharge ranged for the SA-I receptors from 0.25 to more than 2.0 mm and for the SA-II receptors from 0.55 to 1.65 mm. 6. The stimulus-response functions were analysed for 25 SA-I receptors and 2 SA-II receptors. A hyperbolic log tangent function was the best description when the neural response was defined as the total number of impluses evoked by a stimulus of 1 sec duration. When only the static part of this type of plot was analyzed, a power function was a very good description for many units, but other functions (linear, logarithmic exponential, log tanh) were equally good or better for many units. This was also the dase when the mean impulse frequency of the sustained discharge was defined as a measure of the neural response. These two latter types of plots were clearly negatively accelerating, the exponent of the power function being 0.66 (mean).
机译:1.在清醒的人类受试者的尺神经和正中神经上记录单个单位的残缺,在上臂中经皮插入钨电极。 2.研究了在皮肤无毛区域中具有接受域的一百一十种缓慢适应性受体。这些单元主要根据它们对皮肤横向拉伸的反应而分类为SA-I型和SA-II型。 88个受体对这种类型的刺激(SA-I型)没有反应,而十三种受体对伸展(SA-II型)很敏感,并且经常表现出方向敏感性。 3. SA-I受体未显示自发放电,并且放电模式大多相当不规则,而大多数SA-II受体具有自发放电,并且放电模式非常规则。 4.传入的传导速度均在A alpha范围内。 SA-I受体的平均值为58-7 +/- 2-3m / sec,SA-II受体为45.3 +/- 3.6m / sec。 5.分析了对不同皮肤压痕幅度的刺激的神经反应。 SA-1受体动态响应的阈值范围为0.15至1.35 mm,SA-1 II受体动态响应的阈值范围为0.25至0.95 mm。 SA-I受体的静电放电阈值范围为0.25至大于2.0 mm,SA-II受体的静电放电阈值范围为0.55至1.65 mm。 6.分析了25种SA-I受体和2种SA-II受体的刺激-反应功能。当将神经反应定义为持续1秒钟的刺激引起的累加总数时,双曲线对数切线函数是最好的描述。当仅分析此类图的静态部分时,幂函数对于许多单位来说是一个很好的描述,而其他函数(线性,对数指数,对数tanh)对于许多单位而言同样好或更好。当持续放电的平均冲动频率被定义为神经反应的量度时,这也是一个问题。后两种类型的图显然是负加速的,幂函数的指数为0.66(均值)。

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