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首页> 外文期刊>Journal of Neurophysiology >The firing characteristics of foot sole cutaneous mechanoreceptor afferents in response to vibration stimuli
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The firing characteristics of foot sole cutaneous mechanoreceptor afferents in response to vibration stimuli

机译:粉底唯一皮肤机械感染响应振动刺激的射击特性

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Single unit microneurography was used to record the firing characteristics of the four classes of foot sole cutaneous afferents [fast and slowly adapting type I and II (FAI, FAII, SAI, and SAII)] in response to sinusoidal vibratory stimuli. Frequency (3-250 Hz) and amplitude (0.001-2 mm) combinations were applied to afferent receptive fields through a 6-mm diameter probe. The impulses per cycle, defined as the number of action potentials evoked per vibration sine wave, were measured over 1 s of vibration at each frequency-amplitude combination tested. Afferent entrainment threshold (lowest amplitude at which an afferent could entrain 1: 1 to the vibration frequency) and afferent firing threshold (minimum amplitude for which impulses per cycle was greater than zero) were then obtained for each frequency. Increases in vibration frequency are generally associated with decreases in expected impulses per cycle (P < 0.001), but each foot sole afferent class appears uniquely tuned to vibration stimuli. FAII afferents tended to have the lowest entrainment and firing thresholds (P < 0.001 for both); however, these afferents seem to be sensitive across frequency. In contrast to FAII afferents, SAI and SAII afferents tended to demonstrate optimal entrainment to frequencies below 20 Hz and FAI afferents faithfully encoded frequencies between 8 and 60 Hz. Contrary to the selective activation of distinct afferent classes in the hand, application of class-specific frequencies in the foot sole is confounded due to the high sensitivity of FAII afferents. These findings may aid in the development of sensorimotor control models or the design of balance enhancement interventions.
机译:单位微型术用于记录四种脚底皮肤传统的烧制特性[响应正弦振动刺激,致响亮的四种脚鞋底脚鞋底鞋底鞋底鞋底唯一皮肤传入[快速和缓慢地调整I和II(FAI,Faii,Sai和Saii)]。频率(3-250Hz)和振幅(0.001-2mm)组合通过6mm直径探针施加到传入的接收领域。每个循环的脉冲定义为每个振动正弦波唤起的动作电位的数量,在测试的每个频率幅度组合上以1 s的振动测量。随后获得传入夹带阈值(参与传入的最低幅度为振动频率)和传入烧制阈值(每个频率都获得了累赘的烧制阈值(每个循环脉冲大于零的最小幅度)。振动频率的增加通常与每循环预期脉冲的降低有关(P <0.001),但每只脚唯一的传入类别似乎唯一调整到振动刺激。 Faii传入倾向于具有最低的夹带和烧制阈值(两者P <0.001);但是,这些传统似乎跨越频率敏感。与Faii传入相比,SAI和SAII传入倾向于证明最佳夹带到频率低于20赫兹和FAI引入忠实编码8至60 Hz的频率。与手中的不同传入类别的选择性激活相反,由于Faii传入的高灵敏度,脚底的特定频率的应用是混淆的。这些发现可能有助于开发感觉电流控制模型或平衡增强干预的设计。

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