Blok J H, Stegeman D F, van Oosterom A
Department of Clinical Neurophysiology, Institute of Neurology, University Medical Center Nijmegen, The Netherlands.
Ann Biomed Eng. 2002 Apr;30(4):566-77. doi: 10.1114/1.1475345.
On comparing multichannel surface electromyographic measurements of the m. biceps brachii with simulations performed with a previously developed two-layer volume conduction model, we found substantial discrepancies. To incorporate an apparent distorting effect of the skin tissue, the model was extended to three layers. This new model describes the potential resulting from an eccentric bioelectric source in a finite, cylindrical, and anisotropic volume conductor consisting of three layers, representing muscle, subcutaneous fat, and skin tissue. This contribution presents the governing mathematical equations of the three-layer volume conductor model as well as our approach to their solution. A comparison of various models shows that the three-layer model best describes measured potential distributions. Furthermore, we present the "ANVOLCON" (analytical volume conductor) software package. This package has been developed to facilitate the use of the model for scientific and educational purposes and is freely available from http://www.mbfys.kun.nl/knf
在将肱二头肌的多通道表面肌电图测量结果与使用先前开发的两层容积传导模型进行的模拟结果进行比较时,我们发现了显著差异。为了纳入皮肤组织的明显扭曲效应,该模型扩展为三层。这个新模型描述了由偏心生物电源在一个有限的、圆柱形的和各向异性的容积导体中产生的电位,该导体由三层组成,分别代表肌肉、皮下脂肪和皮肤组织。本文介绍了三层容积导体模型的控制数学方程以及我们求解这些方程的方法。对各种模型的比较表明,三层模型最能描述测量到的电位分布。此外,我们还介绍了“ANVOLCON”(分析容积导体)软件包。开发这个软件包是为了便于将该模型用于科学和教育目的,可从http://www.mbfys.kun.nl/knf免费获取。