Oostendorp T F, van Oosterom A
IEEE Trans Biomed Eng. 1989 Mar;36(3):382-91. doi: 10.1109/10.19859.
In this paper it is demonstrated that the use of a direct matrix inverse in the solution of the forward problem in volume conduction problems greatly facilitates the application of standard, nonlinear parameter estimation procedures for finding the strength as well as the location of current sources inside an inhomogeneous volume conductor of arbitrary shape from potential measurements at the outer surface (inverse procedure). This, in turn, facilitates the inclusion of a priori constraints. Where possible, the performance of the method is compared to that of the Gabor-Nelson method. Applications are in the fields of bioelectricity (e.g., electrocardiography and electroencephalography).
本文证明,在体积传导问题的正问题求解中使用直接矩阵求逆,极大地促进了标准非线性参数估计程序的应用,该程序可根据外表面的电位测量值(逆程序)来确定任意形状非均匀体积导体内电流源的强度和位置。反过来,这也便于纳入先验约束。在可能的情况下,将该方法的性能与加博尔 - 尼尔森方法的性能进行了比较。应用领域包括生物电(例如,心电图和脑电图)。