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Development of wirelessly-powered extracranial brain activator (ECBA) in a large animal model for the future non-invasive human neuromodulation

机译:在大型动物模型中开发无线颅外脑激活剂(ECBA)以用于未来的非侵入性人类神经调节

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摘要

As transcranial electrical stimulation (tES) is an emerging and promising technique for neuromodulation, we developed a novel device; wirelessly-powered, extracranial brain activator (ECBA), which is mounted subcutaneously, and its neuromodulation effect was investigated. The oscillatory changes in electrocorticography (EcoG) were analyzed from two types of stimulation. Two weeks prior to the recording experiment, we underwent surgery for implantation of subdural strips and ECBA module over centroparietal regions of anesthetized beagles. Low-frequency stimulation (LFS) and subsequent high-frequency stimulation (HFS) protocols (600 pulses respectively) were applied. Then, the power changes before and after each stimulation in five different bands were compared. A significantly larger voltage difference with subcutaneous than transcutaneous stimulation measured at EcoG channels indicated a substantial current attenuation between the skin and skull. Compared with the baseline, all subjects showed consistently decreased delta power and increased gamma power after HFS. LFS also induced a similar, but opposite, pattern of power change in four beagles. The results from this study indicate that LFS and HFS with our novel ECBA can consistently and effectively modulate neural activity of the cortex, inducing neural inhibition and facilitation functions, respectively. Future studies are necessary to further ensuring a consistent efficacy and long-term safety.
机译:由于经颅电刺激(tES)是一种新兴的有前途的神经调节技术,因此我们开发了一种新颖的设备。皮下安装的无线颅外脑激活器(ECBA),并研究了其神经调节作用。从两种类型的刺激中分析了皮质电图(EcoG)的振荡变化。在录音实验的前两个星期,我们接受了手术,在麻醉的小猎犬的向心区植入硬膜下带和ECBA模块。应用了低频刺激(LFS)和后续的高频刺激(HFS)方案(分别为600个脉冲)。然后,比较了五个不同频段中每次刺激前后的功率变化。与皮下刺激相比,在EcoG通道测得的皮下电压差明显更大,这表明皮肤和颅骨之间的电流衰减很大。与基线相比,所有受试者在HFS后均表现出持续降低的δ功效和增加的γ功效。 LFS还在四只小猎犬中引起了相似但相反的力量变化模式。这项研究的结果表明,使用我们的新型ECBA的LFS和HFS可以始终有效地调节皮质的神经活动,分别诱导神经抑制和促进功能。有必要进行进一步的研究,以进一步确保一致的疗效和长期安全性。

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