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指尖、手掌前臂、大脚趾和脚跟处的振动触觉阈值。

Vibrotactile thresholds at the fingertip, volar forearm, large toe, and heel.

作者信息

Morioka Miyuki, Whitehouse Darren J, Griffin Michael J

机构信息

Human Factors Research Unit, Institute of Sound and Vibration Research, University of Southampton, Southampton, UK.

出版信息

Somatosens Mot Res. 2008;25(2):101-12. doi: 10.1080/08990220802045574.

Abstract

Thresholds for the perception of vibration vary with location on the body due to the organization of tactile channels in hairy and non-hairy skin, and variations in receptor density. This study determined vibration thresholds at four locations on the body with two different contactors so as to assist the identification of the tactile channel determining the threshold at each location. Vibrotactile thresholds at six frequencies from 8 to 250 Hz were measured on the distal phalanx of the index finger, the volar forearm, the large toe, and the heel with two contactors: (i) a 1-mm diameter circular probe with a 1-mm gap to a fixed circular surround (i.e., 7.1-mm(2) excitation area), and (ii) a 6-mm diameter circular probe with a 2-mm gap to a fixed circular surround (i.e., 79-mm(2) excitation area). At all frequencies and with both contactors, thresholds on the fingertip were lower than thresholds on the volar forearm, the large toe, and the heel, consistent with a greater density of mechanoreceptors at the fingertip. Thresholds with the larger contactor were lower than thresholds with the smaller contactor on the fingertip at high frequencies (63, 125, and 250 Hz), on the large toe (except at 250 Hz), on the heel (at all frequencies), and on the volar forearm at 250 Hz. It is concluded that at least two tactile channels (Pacinian from 63 to 250 Hz, and non-Pacinian from 8 to 31.5 Hz) determined vibrotactile thresholds at the fingertip, whereas non-Pacinian channels had a dominant influence on vibrotactile thresholds at the volar forearm. The role of Pacinian and non-Pacinian channels could not be confirmed at the large toe or the heel despite some evidence of spatial summation.

摘要

由于有毛皮肤和无毛皮肤中触觉通道的组织方式以及感受器密度的差异,身体不同部位对振动的感知阈值也有所不同。本研究使用两种不同的接触器测定了身体四个部位的振动阈值,以帮助确定在每个部位决定阈值的触觉通道。使用两种接触器在食指末节指骨、掌侧前臂、大脚趾和脚跟处测量了8至250Hz六个频率的振动触觉阈值:(i)一个直径1mm的圆形探头,与固定的圆形周边有1mm的间隙(即7.1mm²的激发面积),以及(ii)一个直径6mm的圆形探头,与固定的圆形周边有2mm的间隙(即79mm²的激发面积)。在所有频率下,使用两种接触器时,指尖的阈值均低于掌侧前臂、大脚趾和脚跟的阈值,这与指尖处机械感受器密度更高一致。在高频(63、125和250Hz)时,在指尖、大脚趾(250Hz除外)、脚跟(所有频率)以及250Hz时的掌侧前臂,使用较大接触器时的阈值低于使用较小接触器时的阈值。得出的结论是,至少有两个触觉通道(63至250Hz的帕西尼小体通道和8至31.5Hz的非帕西尼小体通道)决定了指尖的振动触觉阈值,而非帕西尼小体通道对掌侧前臂的振动触觉阈值有主要影响。尽管有一些空间总和的证据,但在大脚趾或脚跟处无法确定帕西尼小体通道和非帕西尼小体通道的作用。

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