Kekoni J, Hämäläinen H, Rautio J, Tukeva T
Department of Psychology, University of Helsinki, Finland.
Exp Brain Res. 1989;78(2):419-24. doi: 10.1007/BF00228915.
The mechanoreceptive properties of the sole of the foot were determined by measuring the detection thresholds to vibratory stimuli of 20, 80, and 240 Hz frequency and 300 ms duration. The thresholds were measured at six different sites on the left sole and at toes 1 and 3 with probes of 2 and 8 mm diameter connected to the moving coil of an electromechanical vibrator. The subject sat in an armchair during the experiments, with the left leg supported horizontally by a vacuum cast positioned on a table. Six subjects participated in the experiments. A simple method of limits was used to make the measurements. Lower average thresholds were obtained with higher vibration frequencies, the average thresholds varying between 40-90 microns at 20 Hz and well below 10 microns at 240 Hz. The major decrease in thresholds occurred between 20 and 80 Hz. Interindividual variability in thresholds was large, but the threshold curves obtained from different subjects and from different stimulation points were of the same general shape. The highest thresholds were measured from the toes, but this regional differences in sensibility was obtained only at the higher vibration frequencies. Comparison of the threshold values at the sole with those found with similar stimuli at the thenar eminence and middle fingertip indicates that the mechanoreceptor mechanisms transmitting information about low-frequency vibration in the sole are similar to those in the palmar skin of the hand.
通过测量对频率为20、80和240Hz且持续时间为300ms的振动刺激的检测阈值,来确定脚底的机械感受特性。使用直径为2mm和8mm的探头连接到电动机械振动器的动圈,在左脚底的六个不同部位以及大脚趾和第三脚趾处测量阈值。实验期间,受试者坐在扶手椅上,左腿由放置在桌子上的真空模型水平支撑。六名受试者参与了实验。测量采用简单的极限法。振动频率越高,平均阈值越低,20Hz时平均阈值在40 - 90微米之间变化,240Hz时远低于10微米。阈值的主要下降发生在20Hz至80Hz之间。个体间阈值的变异性很大,但从不同受试者和不同刺激点获得的阈值曲线总体形状相同。脚趾处测得的阈值最高,但这种敏感性的区域差异仅在较高振动频率下才出现。将脚底的阈值与在鱼际隆起和中指指尖用类似刺激测得的阈值进行比较表明,传递脚底低频振动信息的机械感受器机制与手部掌侧皮肤中的机制相似。