Arabadzhiev T I, Dimitrov G V, Dimitrova N A
Centre of Biomedical Engineering, Bulgarian Academy of Sciences, Sofia, Bulgaria.
J Electromyogr Kinesiol. 2003 Oct;13(5):403-15. doi: 10.1016/s1050-6411(03)00036-1.
Ability to estimate motor unit propagation velocity correctly using different two-channel methods for delay estimation and different non-invasive spatial filters was analysed by simulation. It was established that longitudinal double difference electrodes could be not a better choice than simple bipolar parallel electrodes. Spatial filtration with a new multi-electrode (performing difference between signals detected by two transversal double difference electrodes positioned along the muscle fibres) promises to give the best estimate. Delay estimation between reference points is more preferable than that based on the cross-correlation technique, which is considerably sensitive to the fundamental properties of the muscle fibre extracellular fields. Preliminary averaging and approximation of the appropriate parts of the signals around chosen reference points could reduce the larger noise sensitivity and the effects of local tissue inhomogeneities as well as eliminate the sampling problem. A correct estimate of the propagation velocity could be impossible, even in the case of not very deep motor units (15 or 10 mm, depending on the spatial filter used) with relatively long (about 120 mm) muscle fibres. In the case of fibres with asymmetrical location of the end-plates in respect to the fibre ends, the propagation velocity estimates could be additionally biased above the longer semilength of the motor unit fibres.
通过模拟分析了使用不同的双通道延迟估计方法和不同的非侵入性空间滤波器正确估计运动单位传播速度的能力。结果表明,纵向双差分电极可能并不比简单的双极平行电极更好。使用新的多电极进行空间滤波(对沿肌纤维定位的两个横向双差分电极检测到的信号进行差分)有望提供最佳估计。基于参考点之间的延迟估计比基于互相关技术的估计更可取,互相关技术对肌纤维细胞外场的基本特性相当敏感。对所选参考点周围信号的适当部分进行初步平均和近似可以降低较大的噪声敏感性和局部组织不均匀性的影响,并消除采样问题。即使对于肌纤维相对较长(约120毫米)、深度不是很深的运动单位(15或10毫米,取决于所使用的空间滤波器),也可能无法正确估计传播速度。对于终板相对于纤维末端位置不对称的纤维,传播速度估计可能会在运动单位纤维较长的半长度之上产生额外偏差。