Piotrkiewicz M, Churikova L, Person R
Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Warsaw.
Biol Cybern. 1992;66(3):253-9. doi: 10.1007/BF00198478.
The activity of single motoneurones of m. flexor carpi ulnaris (FCU) was investigated by recording their motor unit (MU) action potentials during weak and moderate voluntary muscle contractions. The MU firing rate range was 4.5-15 imp/s. The excitability of motoneurones was tested with a number of single stimuli eliciting a monosynaptic H-reflex of low amplitude. Two different indices were defined which relate to motoneuronal excitability: the response index--the ratio of the number of responses of a motoneurone to the total number of stimuli, and the response time--the time after the last background MU discharge at which motoneurone is ready to respond to the excitatory volley. Both the response index and the response time were determined for single motoneurones at different levels of background activity. In the lower range of firing rates, the response index for all motoneurones decreased when increasing the firing rate, but it remained constant in the higher rate range. This kind of response seems to be a typical motoneuronal response to the stimulation with single stimuli. The data on the response time were used to study the excitability of the same single motoneurones to computer simulated repetitive stimulation (stimulation rate 40-100 imp/s). In this case, the excitability of each motoneurone was determined as an increment of its firing rate in response to the stimulation. For the lower firing rate range, the excitability for all motoneurones also decreased when the firing rates increased whereas a variety of slopes was obtained in the higher rate range.(ABSTRACT TRUNCATED AT 250 WORDS)
通过在轻微和适度的自主肌肉收缩期间记录其运动单位(MU)动作电位,研究了尺侧腕屈肌(FCU)单个运动神经元的活动。MU放电频率范围为4.5 - 15次/秒。用一系列能引出低幅度单突触H反射的单个刺激来测试运动神经元的兴奋性。定义了两个与运动神经元兴奋性相关的不同指标:反应指数——运动神经元的反应次数与总刺激次数的比值,以及反应时间——在最后一次背景MU放电后运动神经元准备好对兴奋性冲动作出反应的时间。在不同背景活动水平下,对单个运动神经元测定了反应指数和反应时间。在较低的放电频率范围内,所有运动神经元的反应指数随放电频率增加而降低,但在较高频率范围内保持恒定。这种反应似乎是运动神经元对单个刺激的典型反应。利用反应时间的数据来研究同一单个运动神经元对计算机模拟重复刺激(刺激频率40 - 100次/秒)的兴奋性。在这种情况下,每个运动神经元的兴奋性被确定为其放电频率对刺激的增量。对于较低的放电频率范围,所有运动神经元的兴奋性也随放电频率增加而降低,而在较高频率范围内得到了不同的斜率。(摘要截短于250字)