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A Combined Robotic and Cognitive Training for Locomotor Rehabilitation: Evidences of Cerebral Functional Reorganization in Two Chronic Traumatic Brain Injured Patients

机译:运动康复的机器人和认知训练相结合:两名慢性颅脑外伤患者脑功能重组的证据

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摘要

It has been demonstrated that automated locomotor training can improve walking capabilities in spinal cord-injured subjects but its effectiveness on brain damaged patients has not been well established. A possible explanation of the discordant results on the efficacy of robotic training in patients with cerebral lesions could be that these patients, besides stimulation of physiological motor patterns through passive leg movements, also need to train the cognitive aspects of motor control. Indeed, another way to stimulate cerebral motor areas in paretic patients is to use the cognitive function of motor imagery. A promising possibility is thus to combine sensorimotor training with the use of motor imagery. The aim of this paper is to assess changes in brain activations after a combined sensorimotor and cognitive training for gait rehabilitation. The protocol consisted of the integrated use of a robotic gait orthosis prototype with locomotor imagery tasks. Assessment was conducted on two patients with chronic traumatic brain injury and major gait impairments, using functional magnetic resonance imaging. Physiatric functional scales were used to assess clinical outcomes. Results showed greater activation post-training in the sensorimotor and supplementary motor cortices, as well as enhanced functional connectivity within the motor network. Improvements in balance and, to a lesser extent, in gait outcomes were also found.
机译:已经证明,自动运动训练可以改善脊髓损伤的受试者的步行能力,但是其对脑损伤患者的有效性尚不明确。机器人训练对脑损伤患者疗效的不一致结果的可能解释可能是,这些患者除了通过被动腿部运动刺激生理性运动模式外,还需要训练运动控制的认知方面。的确,刺激麻痹性患者脑运动区域的另一种方法是利用运动图像的认知功能。因此,将感觉运动训练与运动图像的使用相结合的可能性很大。本文的目的是评估对步态康复进行感觉运动和认知训练相结合后的大脑激活变化。该协议包括机器人步态矫形器原型与运动图像任务的综合使用。使用功能性磁共振成像对两名患有慢性外伤性脑损伤和步态严重障碍的患者进行了评估。生理功能量表用于评估临床结局。结果显示,感觉运动和辅助运动皮层的训练后激活程度更高,并且运动网络内的功能连接性得到增强。还发现平衡能力和步态结果有所改善。

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