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Harnessing Neuroplasticity of Postural Sensorimotor Networks Using Non-Invasive Spinal Neuromodulation to Maximize Functional Recovery After Spinal Cord Injury

Harnessing Neuroplasticity of Postural Sensorimotor Networks Using Non-Invasive Spinal Neuromodulation to Maximize Functional Recovery After Spinal Cord Injury
利用姿势感觉运动网络的神经可塑性,使用非侵入性脊髓神经调节最大限度地提高脊髓损伤后的功能恢复
批准号:
10532353
负责人:
Dimitry Sayenko
金额:
$64.01万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-12-01 至 2027-08-31

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中文摘要
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英文摘要
ABSTRACT Transcutaneous (TSS) and epidural spinal stimulation (ESS) are both electrophysiological techniques that have been used to investigate the interactions between exogenous electrical stimuli and spinal sensorimotor networks that integrate descending motor signals with afferent inputs from the periphery during motor tasks such as standing and stepping. Recently, pilot phase clinical trials using each of these stimulation modalities have demonstrated restoration of motor functions that were previously lost due to spinal cord injury (SCI). However, the spinal network interactions that occur in response to TSS or ESS with rehabilitation training have yet to be characterized and directly compared. Thus, it is imperative to (1) understand the neurophysiological profiles of individual participants comprehensively, thereby delineating the underlying mechanisms and (2) establish the relative effectiveness of TSS versus ESS in regaining motor function. Our central hypothesis is that ESS and TSS will promote similar levels of stimulation-augmented standing. We will compare the immediate functional and neurophysiological effects of TSS versus ESS in the same participants (Aim 1). We hypothesize that ESS and TSS will generate comparable motor output during standing due to similar level of modulated excitability of sensorimotor networks. Then, we will compare immediate and delayed effects of standing training combined with TSS versus ESS (Aim 2). We hypothesize that both TSS- and ESS-combined trainings will result in similar functional gain. We further predict that after one month of rest following standing training with TSS or ESS, the excitability and responsiveness of spinal and supraspinal sensorimotor networks will differ from baseline levels and Sham. Completion of this study will establish the efficacy of both non-invasive and invasive spinal neuromodulatory approaches to improve functions after SCI, impacting both research and clinical communities. Further, it will shed light on the underlying mechanisms of spinal neuromodulation, allowing ourselves and others to refine and improve stimulation protocols to maximize functional recovery.
期刊论文(8)
专著(0)
科研奖励(0)
会议论文
DOI: 10.3390/jcm10245958
发表时间: 2021-12-18
期刊: Journal of clinical medicine
影响因子: 3.9
作者: [Steele AG, Atkinson DA, Varghese B, Oh J, Markley RL, Sayenko DG]
通讯作者: Sayenko DG
DOI: 10.1038/s41598-023-48811-0
发表时间: 2023-12-06
期刊: Scientific reports
影响因子: 4.6
作者: []
通讯作者:
DOI: 10.21203/rs.3.rs-3513515/v1
发表时间: 2023
期刊: Research square
影响因子: --
作者: [Oh,Jeonghoon, Scheffler,MichelleS, Martin,CatherineA, Dinh,Jenny, Sheynin,Jony, Steele,AlexanderG, Sayenko,DimitryG]
通讯作者: Sayenko,DimitryG
Mapping lumbar efferent and afferent spinal circuitries via paddle array in a porcine model.
通过猪模型中的桨阵列绘制腰椎传出和传入脊髓回路。
DOI: 10.1016/j.jneumeth.2024.110104
发表时间: 2024
期刊: Journal of neuroscience methods
影响因子: 3
作者: [Steele,AG, Taccola,G, Frazier,AM, Manzella,M, Hogan,M, Horner,PJ, Faraji,AH, Sayenko,DG]
通讯作者: Sayenko,DG
Harnessing Neuroplasticity of Postural Sensorimotor Networks Using Non-Invasive Spinal Neuromodulation to Maximize Functional Recovery After Spinal Cord Injury
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