IEEE Trans Biomed Eng. 2021 Jul;68(7):2233-2240. doi: 10.1109/TBME.2020.3048321. Epub 2021 Jun 17.
This work aims to reduce the acoustic noise level of transcranial magnetic stimulation (TMS) coils. TMS requires high currents (several thousand amperes) to be pulsed through the coil, which generates a loud acoustic impulse whose peak sound pressure level (SPL) can exceed 130 dB(Z). This sound poses a risk to hearing and elicits unwanted neural activation of auditory brain circuits.
We propose a new double-containment coil with enhanced winding mounting (DCC), which utilizes acoustic impedance mismatch to contain and dissipate the impulsive sound within an air-tight outer casing. The coil winding is potted into a rigid block, which is mounted to the outer casing through the block´s acoustic nodes that are subject to minimum vibration during the pulse. The rest of the winding block is isolated from the casing by an air gap, and the sound is absorbed by polyester fiber panels within the casing. The casing thickness under the winding center is minimized to maximize the electric field output.
Compared to commercial figure-of-eight TMS coils, the DCC prototype has 18-41 dB(Z) lower peak SPL at matched stimulation strength, whilst providing 28% higher maximum stimulation strength than equally focal coils.
The DCC design greatly reduces the acoustic noise of TMS while increasing the achievable stimulation strength.
The acoustic noise reduction from our coil design is comparable to that provided by typical hearing protection devices. This coil design approach can enhance hearing safety and reduce auditory co-activations in the brain and other detrimental effects of TMS sound.
本研究旨在降低经颅磁刺激(TMS)线圈的噪声水平。TMS 需要数千安培的脉冲电流通过线圈,这会产生响亮的声脉冲,其峰值声压级(SPL)可超过 130dB(Z)。这种声音对听力有风险,并引起听觉脑回路的不必要神经激活。
我们提出了一种具有增强绕组安装的新型双包容线圈(DCC),该线圈利用声阻抗失配将脉冲声限制在密封的外壳内并使其耗散。线圈绕组被灌注到刚性块中,该刚性块通过刚性块的声学节点安装到外壳上,这些节点在脉冲期间振动最小。绕组块的其余部分与外壳隔离,声音被外壳内的聚酯纤维板吸收。在绕组中心下方的外壳厚度最小化,以最大化电场输出。
与商用的八字形 TMS 线圈相比,DCC 原型在匹配的刺激强度下具有 18-41dB(Z)的更低峰值 SPL,同时提供比同等聚焦线圈高 28%的最大刺激强度。
DCC 设计大大降低了 TMS 的噪声,同时提高了可实现的刺激强度。
我们的线圈设计降低了噪声,与典型的听力保护装置提供的噪声降低效果相当。这种线圈设计方法可以提高听力安全性,并减少 TMS 声音对大脑的听觉共激活和其他有害影响。