Hennings Kristian, Kamavuako Ernest Nlandu, Farina Dario
Center for Sensory-Motor Interaction (SMI), Department of Health Science and Technology, Aalborg University, Fredrik Bajers Vej 7 D-2, DK-9220 Aalborg, Denmark.
Clin Neurophysiol. 2007 Feb;118(2):283-91. doi: 10.1016/j.clinph.2006.10.017. Epub 2006 Dec 15.
The development of a novel collision technique for assessment of the activation order of electrically activated nerve fibers, which is an important question in functional electrical therapy or for interpretation of results of motor unit number estimates.
Compound muscle action potentials were recorded with the belly-tendon configuration from the abductor digiti minimi. A novel modified Hopf's collision technique was applied on ten healthy male subjects to determine the distributions of conduction velocities (DCV) of all ulnar nerve fibers and of the fibers activated by electrical stimuli eliciting 20%, 50%, and 80% of the maximal muscle response.
The maximum nerve conduction velocity was (means+/-SE) 64.1+/-0.85m/s. The median conduction velocity of estimated DCV was 58.9+/-0.97m/s (stimulus at 20%), 58.0+/-0.98m/s (50%), 57.2+/-0.91m/s (80%), and 56.5+/-0.84m/s (whole nerve) (all different between each other, P<0.001).
The proposed collision technique allows the assessment of nerve conduction velocity distributions at maximal and sub-maximal stimulation levels and provided evidence for an inverse activation order of nerve fibers with electrical stimulation.
The excessive fatigue seen with nerve electrical stimulation can be explained by a preferential activation of large diameter nerve fibers. The motor units first activated with electrical stimulation are likely not representative of the motor unit pool in the muscle, which poses limitations in the reliability of some of the proposed methods for motor unit counting.
开发一种用于评估电激活神经纤维激活顺序的新型碰撞技术,这在功能性电疗法或运动单位数量估计结果的解释中是一个重要问题。
采用肌腹 - 肌腱配置记录小指展肌的复合肌肉动作电位。一种新型改良的霍普夫碰撞技术应用于10名健康男性受试者,以确定所有尺神经纤维以及由引发最大肌肉反应的20%、50%和80%的电刺激激活的纤维的传导速度(DCV)分布。
最大神经传导速度为(均值±标准误)64.1±0.85m/s。估计的DCV的中位数传导速度在20%刺激时为58.9±0.97m/s,50%刺激时为58.0±0.98m/s,80%刺激时为57.2±0.91m/s,全神经时为56.5±0.84m/s(彼此均不同,P<0.001)。
所提出的碰撞技术允许在最大和次最大刺激水平下评估神经传导速度分布,并为电刺激时神经纤维的反向激活顺序提供了证据。
神经电刺激时出现的过度疲劳可以通过大直径神经纤维的优先激活来解释。电刺激首先激活的运动单位可能不代表肌肉中的运动单位池,这对一些提议的运动单位计数方法的可靠性构成了限制。