Deng Zhi-De, Peterchev Angel V, Lisanby Sarah H
Department of Electrical Engineering and with the Division of Brain Stimulation and Therapeutic Modulation, Columbia University, New York, 10032, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2008;2008:5675-9. doi: 10.1109/IEMBS.2008.4650502.
Deep-brain transcranial magnetic stimulation (dTMS) could provide new, non-invasive therapeutic options for various psychiatric and neurological disorders. Figures of merit (FoMs) are proposed to evaluate and compare dTMS coil designs. These FoMs characterize the depth of electric field penetration, scalp stimulation, focality, and energy. Two coil configurations potentially suitable for dTMS are analyzed: circular crown coil and C-core coil. These coils have significantly less attenuation of the electric field strength in depth, compared to conventional TMS coils. In the limiting case as the coil dimensions become large relative to the head, the electric field decay in depth becomes linear, which indicates that, at best, the electric field attenuation is directly proportional to the depth of the target. The charge density and heating induced in the brain are at safe levels, but the risk of unintended neuromodulation and seizures with dTMS has to be evaluated further. Preliminary simulation results suggest that the crown coil has the best overall performance for dTMS. Finally, synchronous firing of all TMS coil elements appears more effective at stimulating deep neurons than is sequential firing.
深部脑经颅磁刺激(dTMS)可为各种精神和神经疾病提供新的非侵入性治疗选择。提出了品质因数(FoM)来评估和比较dTMS线圈设计。这些品质因数表征了电场穿透深度、头皮刺激、聚焦性和能量。分析了两种可能适用于dTMS的线圈配置:圆冠线圈和C形芯线圈。与传统TMS线圈相比,这些线圈在深度上电场强度的衰减明显更小。在极限情况下,当线圈尺寸相对于头部变得很大时,电场在深度上的衰减变为线性,这表明,充其量,电场衰减与目标深度成正比。大脑中诱导的电荷密度和发热处于安全水平,但dTMS意外神经调节和癫痫发作的风险必须进一步评估。初步模拟结果表明,圆冠线圈在dTMS方面具有最佳的整体性能。最后,所有TMS线圈元件的同步激发在刺激深部神经元方面似乎比顺序激发更有效。