Pertovaara A, Huopaniemi T, Tukeva T
Exp Brain Res. 1986;62(3):486-94. doi: 10.1007/BF00236027.
The response characteristics of mechanoreceptive neurons (RA, SA, and PC) innervating the foot pad of cat were determined in the cuneate nucleus. The mechanical stimuli were single sinusoidal pulses of varying frequency (20, 60, 150, and 240 Hz), and vibratory trains of varying frequency (80 and 240 Hz) and duration (50, 100, and 400 ms). Thresholds and stimulus-response functions were determined with single pulses. Absolute thresholds (1 impulse/train), tuning thresholds (1 impulse/cycle), and atonal intervals (the range between absolute and tuning thresholds) were determined with vibratory stimulus trains. When tested with single pulses the thresholds resembled those of primary afferents in all unit populations. The stimulus-response function of PC units but not of all RA units were comparable to those of primary afferents. Noxious conditioning stimulation did not influence the thresholds of cuneate mechanoreceptors in the tested sample (N = 6). Mostly PC units were tested with vibratory trains. Absolute thresholds were not dependent on stimulus duration, which is a consistent finding with peripheral units. In contrast to peripheral units, the tuning thresholds in most PC units were elevated with increasing stimulus duration. The variability in the range of atonal intervals was much larger than in the periphery. Thus, it seems that both the type of the tactile signal and the type of the studied mechanoreceptive neuron are critical parameters in determining whether the response characteristics of neurons in the cuneate and in the periphery are identical or not.
在楔状核中测定了支配猫脚垫的机械感受神经元(快速适应神经元、慢速适应神经元和 Pacinian 小体神经元)的反应特性。机械刺激包括不同频率(20、60、150 和 240 Hz)的单个正弦脉冲,以及不同频率(80 和 240 Hz)和持续时间(50、100 和 400 ms)的振动序列。用单个脉冲测定阈值和刺激 - 反应函数。用振动刺激序列测定绝对阈值(每序列 1 个冲动)、调谐阈值(每周期 1 个冲动)和无调区间(绝对阈值和调谐阈值之间的范围)。当用单个脉冲测试时,所有单位群体的阈值与初级传入纤维的阈值相似。Pacinian 小体神经元单位的刺激 - 反应函数,但并非所有快速适应神经元单位的刺激 - 反应函数,与初级传入纤维的相似。有害条件刺激不影响测试样本(N = 6)中楔状核机械感受器的阈值。大多数 Pacinian 小体神经元单位用振动序列进行测试。绝对阈值不依赖于刺激持续时间,这与外周单位的一致发现。与外周单位相反,大多数 Pacinian 小体神经元单位的调谐阈值随刺激持续时间增加而升高。无调区间范围的变异性比外周大得多。因此,似乎触觉信号的类型和所研究的机械感受神经元的类型都是决定楔状核和外周神经元反应特性是否相同的关键参数。