Park Hee-Jin, Seol Jae Hun, Ku Jeonghun, Kim Sohee
IEEE Trans Biomed Eng. 2016 Jan;63(1):158-67. doi: 10.1109/TBME.2015.2490244. Epub 2015 Oct 14.
Micromagnetic stimulation using coils sufficiently small to be implanted has been suggested as a potential method to overcome the limitations of electrical stimulation. We investigated the temperature increases in the brain implanted with planar coils.
We conducted computational simulations on the thermal effects of implantable magnetic stimulation in a brain model using finite-element analysis, by varying geometric parameters of planar spiral coils, and repetitive stimulation pulse patterns.
It was revealed that the temperature increase in the brain can be controlled by a careful design of coils to implant. The coil diameter greater than 8 mm was required to induce a temperature rise in the brain of less than 1 °C. If the coil diameter was larger than 10 mm, the subsequent temperature rises in the brain tissue was maintained consistently at about 0.24 °C or lower.
Selection of the number of coil turns must rely on tradeoffs between the required current and voltage that the implanted source can generate, as the required voltage increases while the required current decreases with increasing number of coil turns. Additionally, the coil insulation with a thickness of a few micrometers was found to suppress the temperature rise in the brain effectively.
Although these simulations employed only one threshold value of 10 V/m, which is rather on the lower end of stimulation threshold, the simulation results are expected to serve as guidelines for designing planar coils to be implanted in the brain for magnetic stimulation.
使用足够小以植入的线圈进行微磁刺激已被提议作为一种克服电刺激局限性的潜在方法。我们研究了植入平面线圈的大脑中的温度升高情况。
我们通过有限元分析,在大脑模型中对可植入磁刺激的热效应进行了计算模拟,改变平面螺旋线圈的几何参数以及重复刺激脉冲模式。
结果表明,通过精心设计植入线圈,可以控制大脑中的温度升高。需要直径大于8毫米的线圈才能使大脑中的温度升高小于1℃。如果线圈直径大于10毫米,大脑组织随后的温度升高将持续保持在约0.24℃或更低。
线圈匝数的选择必须在植入源能够产生的所需电流和电压之间进行权衡,因为随着线圈匝数增加,所需电压增加而所需电流减小。此外,发现厚度为几微米的线圈绝缘能有效抑制大脑中的温度升高。
尽管这些模拟仅采用了10 V/m这一相当低的刺激阈值,但模拟结果有望为设计用于大脑磁刺激的植入平面线圈提供指导。