Affiliation:
1. Departments of Neurology & Rehabilitation Medicine New York University Grossman School of Medicine New York NY USA
2. Texas Biomedical Device Center The University of Texas at Dallas Richardson TX USA
3. Erik Jonsson School of Engineering and Computer Science The University of Texas at Dallas Richardson TX USA
Abstract
AbstractPaired vagus nerve stimulation (VNS) has emerged as a promising strategy to potentiate recovery after neurological injury. This approach, which combines short bursts of electrical stimulation of the vagus nerve with rehabilitation exercises, received approval from the US Food and Drug Aministration in 2021 as the first neuromodulation‐based therapy for chronic stroke. Because this treatment is increasingly implemented in clinical practice, there is a need to take stock of what we know about this approach and what we have yet to learn. Here, we provide a survey on the foundational basis of VNS therapy for stroke and offer insight into the mechanisms that underlie potentiated recovery, focusing on the principles of neuromodulatory reinforcement. We discuss the current state of observations regarding synaptic reorganization in motor networks that are enhanced by VNS, and we propose other prospective loci of neuromodulation that should be evaluated in the future. Finally, we highlight the future opportunities and challenges to be faced as this approach is increasingly translated to clinical use. Collectively, a clearer understanding of the mechanistic basis of VNS therapy may reveal ways to maximize its benefits.
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Reference92 articles.
1. Vagus nerve stimulation in ischemic stroke;Andalib S.;Current Neurology and Neuroscience Reports,2023
2. The nucleus of the solitary tract in the monkey: Projections to the thalamus and brain stem nuclei;Beckstead R. M.;Journal of Comparative Neurology,1980
3. An autoradiographic examination of the central distribution of the trigeminal, facial, glossopharyngeal, and vagal nerves in the monkey;Beckstead R. M.;Journal of Comparative Neurology,1979
4. Origins of specificity during tDCS: Anatomical, activity‐selective, and input‐bias mechanisms;Bikson M.;Frontiers in Human Neuroscience,2013
5. Vagus nerve stimulation drives selective circuit modulation through cholinergic reinforcement;Bowles S.;Neuron,2022