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Post-stroke Engagement-sensitive Balance Rehabilitation Under An Adaptive Multi-level Electrotherapy: Clinical Hypothesis and Computational Framework

机译:自适应多级电疗下的中风后接触敏感平衡康复:临床假设和计算框架

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摘要

Stroke is caused due to burst or clot in an artery carrying blood from heart to an area in the brain. This prevents delivery of oxygen and nutrients to neurons thereby causing their death and leading to disability. Since about half of the stroke survivors are left with some degree of disability so innovative methodologies for restorative neurorehabilitation are urgently required to reduce long-term disability. Here, the ability of the nervous system to respond to stimuli by reorganizing its structure, function and connections may play an important role which is called neuroplasticity. Beneficial neuroplastic changes can be facilitated early in post-stroke rehabilitation using sensory and motor stimulation towards sensorimotor integration where electrical stimulation of the neural tissue may play an important role. Furthermore, active cortical participation may be required for such sensorimotor integration where volitional effort, detected with electromyogram- (EMG) and electroencephalogram- (EEG) derived biopotentials, may be assisted with non-invasive electrotherapy, such as neuromuscular electrical stimulation (NMES) and non-invasive brain stimulation (NIBS). In this article, we discuss this novel concept for an engagement-sensitive interactive system consisting of a low-cost static posturography system with adaptive response non-invasive electrotherapy technology for post-stroke balance rehabilitation that integrates a multi-level (central and peripheral nervous system) electrotherapy paradigm to assist volitional postural control.
机译:中风是由于在患有血液到大脑中的一个区域的动脉卷曲或凝块引起的。这可以防止氧气和营养物递送至神经元,从而导致其死亡并导致残疾。由于大约一半的中风幸存者留下了一定程度的残疾,因此迫切需要进行恢复性神经晕染的创新方法来减少长期残疾。这里,神经系统通过重组其结构,功能和连接来响应刺激的能力可能发挥称为神经塑性的重要作用。使用感觉和电动机刺激在中风后康复的促进型传感器积分中可以促进有益的神经塑料变化,其中神经组织的电刺激可能起着重要作用。此外,可能需要有源皮质参与,以便在用电灰度(EMG)和脑电图(EEG)衍生的生物能递中检测到的激动机电多源集成,可以辅助非侵入性电疗,例如神经肌肉电刺激(NMES)和非侵入性脑刺激(尖端)。在本文中,我们讨论了这种新颖的敏感互动系统,包括具有适应性响应非侵入性电疗技术的低成本静态后辐射电疗技术,用于划分多级(中央和外周神经的康复系统)电疗范式以协助激动式姿势控制。

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