Nandedkar S D, Sanders D B, Stålberg E V, Andreassen S
Division of Neurology, Duke University Medical Center, Durham, NC 27710.
Muscle Nerve. 1988 Feb;11(2):151-9. doi: 10.1002/mus.880110211.
Computer simulations of motor unit action potentials (MUAPs) as measured by a concentric needle (CN) electromyography (EMG) electrode in normal motor units (MUs) indicated that the MUAP amplitude is determined mainly by the proximity of the electrode to the closest muscle fiber. The area and duration of the simulated MUAPs were affected by all muscle fibers in front of the active recording surface but mainly by those that were less than 2 and 2.5 mm, respectively, from the active recording surface. The MUAP area was also affected by the proximity of the electrode to the closest muscle fiber. The number of phases of the simulated MUAPs increased when the dispersion of the arrival times of individual muscle fiber APs at the electrode was increased. Increased temporal dispersion of APs decreased the MUAP amplitude and area slightly but did not affect the MUAP duration. It is inferred that different features of the CN MUAP are determined by the distribution of muscle fibers within different portions of the MU territory and thus provide complementary information about the MU architecture.
通过同心针电极在正常运动单位中测量运动单位动作电位(MUAPs)的计算机模拟表明,MUAP的幅度主要由电极与最接近的肌纤维的距离决定。模拟MUAP的面积和持续时间受活动记录表面前方所有肌纤维的影响,但主要受分别距离活动记录表面小于2毫米和2.5毫米的肌纤维的影响。MUAP面积也受电极与最接近的肌纤维的距离的影响。当单个肌纤维动作电位(APs)到达电极的时间分散增加时,模拟MUAP的相数增加。APs时间分散增加会使MUAP幅度和面积略有减小,但不影响MUAP持续时间。据推断,同心针MUAP的不同特征由运动单位区域不同部分内肌纤维的分布决定,因此提供了关于运动单位结构的补充信息。