硬膜外电刺激诱发反应的特点及应用。

Nishant Verma, Ben Romanauski, Danny Lam, Luis Lujan, Stephan Blanz, Kip Ludwig, Scott Lempka, Andrew Shoffstall, Bruce Knudson, Yuichiro Nishiyama, Jian Hao, Hyun-Joo Park, Erika Ross, Igor Lavrov, Mingming Zhang
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引用次数: 1

摘要

背景:硬膜外脊髓电刺激(EES)已被美国食品药品监督管理局批准并用于治疗已有数十年。然而,对局部神经基质以及导致治疗效果的作用机制仍然没有明确的了解。方法:从硬膜外腔放置的电极上采集硬膜外脊髓记录(ESR)。ESR包含多模态信号成分,如诱发的神经反应(由于强直或BurstDR™ 波形)、诱发的肌肉反应、刺激伪影和心脏反应。强直性刺激诱发复合动作电位(ECAP)是ESR的组成部分之一,近年来被提出用于测量EES过程中大量神经元纤维的累积局部电位。结果:在这里,我们首先回顾和研究了参考策略,因为它们适用于家猪动物模型ESR中的ECAP成分。然后,我们研究了ECAP成分如何用于感知导线迁移,导线放置后的不良结果可能会降低治疗效果。最后,我们展示并分离了EES过程中局部背部和腿部肌肉的同时激活,证明从记录触点获得的ESR包含ECAP和EMG成分。结论:这些发现可能进一步指导可植入EES系统中记录和参考接触的实施,并为ECAP成分在ESR中检测铅迁移提供初步证据。我们希望这些结果能促进EES方法的未来发展,并在ESR中使用不同成分来改进EES治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterization and applications of evoked responses during epidural electrical stimulation.

Characterization and applications of evoked responses during epidural electrical stimulation.

Characterization and applications of evoked responses during epidural electrical stimulation.

Characterization and applications of evoked responses during epidural electrical stimulation.

Background: Epidural electrical stimulation (EES) of the spinal cord has been FDA approved and used therapeutically for decades. However, there is still not a clear understanding of the local neural substrates and consequently the mechanism of action responsible for the therapeutic effects.

Method: Epidural spinal recordings (ESR) are collected from the electrodes placed in the epidural space. ESR contains multi-modality signal components such as the evoked neural response (due to tonic or BurstDR™ waveforms), evoked muscle response, stimulation artifact, and cardiac response. The tonic stimulation evoked compound action potential (ECAP) is one of the components in ESR and has been proposed recently to measure the accumulative local potentials from large populations of neuronal fibers during EES.

Result: Here, we first review and investigate the referencing strategies, as they apply to ECAP component in ESR in the domestic swine animal model. We then examine how ECAP component can be used to sense lead migration, an adverse outcome following lead placement that can reduce therapeutic efficacy. Lastly, we show and isolate concurrent activation of local back and leg muscles during EES, demonstrating that the ESR obtained from the recording contacts contain both ECAP and EMG components.

Conclusion: These findings may further guide the implementation of recording and reference contacts in an implantable EES system and provide preliminary evidence for the utility of ECAP component in ESR to detect lead migration. We expect these results to facilitate future development of EES methodology and implementation of use of different components in ESR to improve EES therapy.

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