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SIMULATION OF MAGNETIC FIELD INDUCED CURRENT FOR MAGNETIC SEIZURE THERAPY

机译:磁疗治疗中磁场感应电流的模拟

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Magnetic seizure therapy (MST) is currently on trial as an alternative to Electro-convulsive therapy (ECT) to treat patients suffering from treatment resistant depression (TRD). This paper is concerned with developing a deeper understanding of the mechanics behind MST by employing finite element analysis (FEA) of brain. To this end, a model that consists of concentric spherical layers that represent a realistic anatomical head model has been employed. Simulations performed via COMSOL Multi-physics helped identify the dimensions and coil types for the MST device as well as the angular probing orientations. Largest induced current due to the externally imposed magnetic field was found in the cerebrospinal fluid (CSF), which act as a barrier to induce current in the gray matter. Different copper coil configurations were experimented with namely the cap coil, stacked coil and the multi-stacked coil. These studies are envisaged to provide a quantitative approach to virtually simulate the MST procedure and hence enhance the benefits clinical trials that are currently underway.
机译:磁惊厥疗法(MST)目前正在试验中,作为电惊厥疗法(ECT)的替代疗法,用于治疗患有抗药性抑郁症(TRD)的患者。本文致力于通过运用大脑的有限元分析(FEA)来加深对MST背后机理的理解。为此,已经采用了由同心球形层组成的模型,这些同心球形层代表了现实的解剖学头部模型。通过COMSOL Multi-physics进行的仿真有助于识别MST设备的尺寸和线圈类型以及角度探测方向。在脑脊髓液(CSF)中发现了由于外部施加的磁场而产生的最大感应电流,它是在灰质中感应电流的屏障。实验了不同的铜线圈配置,即帽形线圈,堆叠线圈和多层堆叠线圈。设想这些研究将提供一种定量方法,以虚拟模拟MST程序,从而增强当前正在进行的临床试验的益处。

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