首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Alterations in Cortical Activity due to Robotic Gait Training in Traumatic Brain Injury*
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Alterations in Cortical Activity due to Robotic Gait Training in Traumatic Brain Injury*

机译:创伤性脑损伤中的机器人步态训练导致皮层活动的改变*

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Traumatic brain injury (TBI), is one of the leading causes of motor deficits in children and adults, affecting motor control, coordination, and acuity. This results in reduced functional ambulation and quality of life. Robotic exoskeletons (REs) are quickly becoming an effective method for gait neurorehabilitation in individuals with TBI. Neurorehabilitation is based on the principle that the human brain is capable of reorganization due to high dose motor training. Understanding the underlying mechanisms of cortical reorganization will help improve current rehabilitation. The objective of the study is to understand the cortical activity differences due to RE training and recovery of functional ambulation for individuals with chronic TBI, using functional near-infrared spectroscopy. There was an increase in cortical activation in the prefrontal cortex (PFC), bilateral premotor cortex (PMC) and motor cortex (M1) while walking with RE versus without RE at follow-up. Furthermore, decreased activation was observed in PFC, bilateral PMC and M1 from baseline to follow-up while walking without RE with a corresponding improvement in functional ambulation. These preliminary results for one participant provide initial evidence to understand the cortical mechanisms during RE gait training and the recovery induced due to the training.
机译:颅脑外伤(TBI)是儿童和成人运动功能障碍的主要原因之一,会影响运动控制,协调和敏锐度。这导致功能性活动减少和生活质量降低。机器人外骨骼(RE)迅速成为TBI个体步态神经康复的一种有效方法。神经康复基于这样的原理:由于高剂量的运动训练,人的大脑能够重组。了解皮层重组的基本机制将有助于改善当前的康复。这项研究的目的是使用功能性近红外光谱技术了解由于RE训练和慢性TBI患者功能性活动恢复引起的皮层活动差异。在有RE的情况下,随访时无RE的步行时,前额叶皮层(PFC),双侧前运动皮层(PMC)和运动皮层(M1)的皮质激活增加。此外,从基线到随访期间,在没有RE的情况下行走时,PFC,双侧PMC和M1的激活均降低,功能性行走功能得到相应改善。这些针对一名参与者的初步结果提供了初步的证据,以了解RE步态训练过程中的皮质机制以及由于训练而引起的恢复。

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