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手指皮肤温度变化对振动触觉感知阈值的影响。

Effect of changes in finger skin temperature on vibrotactile perception threshold.

作者信息

Harazin Barbara, Harazin-Lechowska Agnieszka

机构信息

Occupational Health Protection Unit, Public Health Faculty, Medical University of Silesia, Katowice, Poland.

出版信息

Int J Occup Med Environ Health. 2007;20(3):223-7. doi: 10.2478/v10001-007-0027-z.

Abstract

OBJECTIVES

The purpose of the study was to determine the influence of finger skin temperature on the vibrotactile perception threshold at fingertips, determined according to the method described in ISO 13091-1 standard.

MATERIALS AND METHODS

The effect of the cooling and warming of hands on vibration perception was investigated in 21 healthy women. Vibration perception measurements were conducted using P8 pallesthesiometer (EMSON-MAT, Poland) designed according to ISO 13091-1 standard requirements. Vibrotactile perception threshold was measured in two series of experiments performed on the index finger of the right hand at frequencies of 4 Hz, 25 Hz and 125 Hz and skin temperature of 33 degrees C, 28 degrees C, 23 degrees C, 18 degrees C and 15 degrees C.

RESULTS

The findings of the study showed that as the finger skin temperature decreased, the vibrotactile perception threshold increased, but only at the frequency of 125 Hz. The changes in finger skin temperature did not affect the vibration perception at 4 Hz and 25 Hz. No significant differences in VPT were found between the two experimental series.

CONCLUSIONS

A short-time cooling and warming of hands had a significant impact on increasing or decreasing vibrotactile perception threshold, only at the highest frequency mediated by Pacinian mechanoreceptors.

摘要

目的

本研究旨在根据ISO 13091-1标准所述方法,确定手指皮肤温度对指尖振动触觉感知阈值的影响。

材料与方法

对21名健康女性进行了手部冷却和加热对振动感知影响的研究。使用根据ISO 13091-1标准要求设计的P8触觉计(波兰EMSON-MAT公司)进行振动感知测量。在右手食指上进行的两个系列实验中,分别在4 Hz、25 Hz和125 Hz频率以及33摄氏度、28摄氏度、23摄氏度、18摄氏度和15摄氏度的皮肤温度下测量振动触觉感知阈值。

结果

研究结果表明,随着手指皮肤温度降低,振动触觉感知阈值升高,但仅在125 Hz频率下如此。手指皮肤温度的变化在4 Hz和25 Hz频率下不影响振动感知。两个实验系列之间在振动感知阈值上未发现显著差异。

结论

手部的短时冷却和加热仅在由帕西尼机械感受器介导的最高频率下,对振动触觉感知阈值的升高或降低有显著影响。

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