Stålberg E, Karlsson L
Department of Clinical Neurophysiology, University Hospital, SE-751 85, Uppsala, Sweden.
Clin Neurophysiol. 2001 Mar;112(3):464-71. doi: 10.1016/s1388-2457(01)00459-x.
To study the correlation between anatomical parameters and EMG signals by means of simulations.
A mathematical model of the electrical activity from muscle fibres and motor units has been developed. The electrical fields around the muscle fibres are simulated using a line source model. The model permits the simulation of single muscle fibre action potentials obtained by SFEMG, concentric and Macro EMG electrodes. By using appropriate anatomical parameters EMG recordings with these electrodes can be simulated. The model is flexible and permits a number of anatomical parameters to be changed such as; number of muscle fibres in a motor unit, fibre diameter distribution, and motor end-plate geometry. Some physiological parameters can be optionally varied; firing rate, threshold for recruitment, jitter.
In this study, simulations of CNEMG are performed and the influence of a number of parameters on the CNEMG signal is studied. It is shown that the model produces motor unit potentials reasonably well resembling those from live recordings. More important is however the relative change in MUP parameters when certain conditions are changed; number of muscle fibres in a motor unit, recording position, muscle fibre diameters and some special effects of the recording conditions.
The simulated muscle and corresponding EMG recording can be used both as a research tool and for teaching.
通过模拟研究解剖学参数与肌电图信号之间的相关性。
建立了肌肉纤维和运动单位电活动的数学模型。使用线源模型模拟肌肉纤维周围的电场。该模型允许模拟通过单纤维肌电图、同心针电极和宏肌电图电极获得的单根肌肉纤维动作电位。通过使用适当的解剖学参数,可以模拟使用这些电极进行的肌电图记录。该模型具有灵活性,允许改变许多解剖学参数,如运动单位中的肌肉纤维数量、纤维直径分布和运动终板几何形状。一些生理参数也可以选择性地改变,如发放频率、募集阈值、颤抖。
在本研究中,进行了常规肌电图的模拟,并研究了一些参数对常规肌电图信号的影响。结果表明,该模型产生的运动单位电位与实际记录的电位相当相似。然而,更重要的是当某些条件改变时运动单位电位参数的相对变化,如运动单位中的肌肉纤维数量、记录位置、肌肉纤维直径以及记录条件的一些特殊影响。
模拟的肌肉和相应的肌电图记录既可以用作研究工具,也可以用于教学。