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Modeling of cardiac electrical activity for characterizing vortex components

机译:心脏电活动建模以表征涡旋分量

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In this study, source model for solving biomagnetic inverse problem is developed with a new method, where vortex components along with the flow component of the equivalent source is considered. The model is an aggregation of a single current dipole and a magnetic dipole. The single current dipole denotes the flow component while the magnetic dipole is an abstract of the vortex component of the biomagnetic source. Simulation results indicate that this model could be more efficient for modeling cardiac electrical activity, compared with single current dipole. Despite that this model is more complicated than the single current dipole model; simple algorithm can still be used for solving inverse problem with only small revision. Meaning of the model parameters solved from the inverse problem is also discussed.
机译:在这项研究中,使用新方法开发了解决生物磁逆问题的源模型,其中考虑了涡旋分量以及等效源的流动分量。该模型是单个电流偶极子和磁偶极子的集合。单个电流偶极表示流量分量,而磁偶极表示生物磁源涡旋分量的摘要。仿真结果表明,与单电流偶极子相比,该模型可以更有效地建模心脏电活动。尽管该模型比单电流偶极子模型更为复杂。仅需很小的修改,仍然可以使用简单的算法来解决反问题。还讨论了通过反问题求解的模型参数的含义。

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