Electrical and Computer Engineering Department, University of California Los Angeles, Los Angeles, CA, USA.
Department of Neurosurgery, University of California at Los Angeles, Los Angeles, CA, USA.
Sci Rep. 2022 May 17;12(1):8184. doi: 10.1038/s41598-022-11850-0.
Neuromodulation of peripheral nerves has been clinically used for a wide range of indications. Wireless and batteryless stimulators offer important capabilities such as no need for reoperation, and extended life compared to their wired counterparts. However, there are challenging trade-offs between the device size and its operating range, which can limit their use. This study aimed to examine the functionality of newly designed wirelessly powered and controlled implants in vagus nerve stimulation for pigs. The implant used near field inductive coupling at 13.56 MHz industrial, scientific, and medical band to harvest power from an external coil. The circular implant had a diameter of 13 mm and weighed 483 mg with cuff electrodes. The efficiency of the inductive link and robustness to distance and misalignment were optimized. As a result, the specific absorption rate was orders of magnitude lower than the safety limit, and the stimulation can be performed using only 0.1 W of external power. For the first time, wireless and batteryless VNS with more than 5 cm operation range was demonstrated in pigs. A total of 84 vagus nerve stimulations (10 s each) have been performed in three adult pigs. In a quantitative comparison of the effectiveness of VNS devices, the efficiency of systems on reducing heart rate was similar in both conventional (75%) and wireless (78.5%) systems. The pulse width and frequency of the stimulation were swept on both systems, and the response for physiological markers was drawn. The results were easily reproducible, and methods used in this study can serve as a basis for future wirelessly powered implants.
外周神经的神经调节已在广泛的适应证中得到临床应用。无线和无电池刺激器提供了重要的功能,例如无需再次手术,并且与有线刺激器相比,使用寿命更长。然而,在设备尺寸与其工作范围之间存在具有挑战性的权衡,这可能会限制它们的使用。本研究旨在检查新设计的无线供电和控制植入物在猪的迷走神经刺激中的功能。该植入物使用 13.56 MHz 工业、科学和医疗频段的近场感应耦合从外部线圈中获取能量。圆形植入物的直径为 13mm,带有袖口电极,重量为 483mg。优化了感应链路的效率及其对距离和不对准的鲁棒性。结果,比吸收率低于安全限值几个数量级,仅使用 0.1W 的外部功率即可进行刺激。首次在猪中演示了具有超过 5cm 工作范围的无线和无电池 VNS。在三只成年猪中总共进行了 84 次迷走神经刺激(每次 10s)。在 VNS 设备有效性的定量比较中,常规(75%)和无线(78.5%)系统降低心率的效率相似。在两个系统上扫频刺激的脉冲宽度和频率,并绘制生理标记的响应。结果易于重现,本研究中使用的方法可以为未来的无线供电植入物提供基础。