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Numerical Simulation of Pulsed Electromagnetic Field (PEMF) Tissue Therapy

机译:脉冲电磁场​​(PEMF)组织治疗的数值模拟

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Pulsed Electromagnetic Field (PEMF) therapy involves the use of pulsed radiofrequency (rf) electromagnetic waves to treat a range of maladies from chronic wounds to fractured bones. This non-invasive therapy is applied using an external coil that is pulsed and generates a time-varying magnetic field within the treated tissue. This in turn induces a time-varying electric field and associated current flow in the tissue that stimulates a variety of biological processes from increased blood flow to an enhanced cellular function that collectively promotes healing of bones and tissue. In this paper, we demonstrate a 2D-axisymmetric computational model for predicting electromagnetic aspects of PEMF therapy. Specifically, the model predicts the generation and penetration of a coil-generated rf magnetic field, the induced electric field and current by taking into account the different tissue layers and their individual frequency-dependent electrical properties. In addition, we use the Pennes' bioheat equation to predict the temperature rise due to the current induced Joule heating throughout the treated tissue. The computational model provides a fundamental understanding of PEMF-tissue coupling and enables the rational design of novel PEMF medical devices.
机译:脉冲电磁场​​(PEMF)治疗涉及使用脉冲射频(rf)电磁波来治疗从慢性伤口到骨折的各种疾病。这种非侵入性治疗是使用外部线圈施加脉冲的,并在治疗组织内产生随时间变化的磁场。反过来,这会在组织中引起随时间变化的电场和相关电流,从而刺激各种生物学过程,从增加的血流到增强的细胞功能,共同促进骨骼和组织的愈合。在本文中,我们演示了预测PEMF治疗的电磁方面的二维轴对称计算模型。具体而言,该模型通过考虑不同的组织层及其各自的频率相关电特性来预测线圈产生的rf磁场,感应电场和电流的产生和渗透。此外,我们使用Pennes的生物热方程来预测由于电流在整个治疗组织中引起的焦耳热所引起的温度升高。该计算模型提供了对PEMF-组织耦合的基本了解,并使新型PEMF医疗设备的合理设计成为可能。

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