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An fMRI pilot study to evaluate brain activation associated with locomotion adaptation

机译:一项功能磁共振成像试验研究,以评估与运动适应相关的脑部激活

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The goal of robotic therapy is to provoke motor plasticity via the application of robotic training strategies. Although robotic haptic guidance is the commonly used motor-training strategy to reduce performance errors while training, research on motor learning has emphasized that errors are a fundamental neural signal that drives motor adaptation. Thus, researchers have proposed robotic therapy algorithms that amplify movement errors rather than decrease them. Studying the particular brain regions involved in learning under different training strategies might help tailoring motor training conditions to the anatomical location of a focal brain insult. In this paper, we evaluate the brain regions involved in locomotion adaptation when training with three different conditions: without robotic guidance, with a random-varying force disturbance, and with repulsive forces proportional to errors. We performed an fMRI pilot study with four healthy subjects who stepped in an fMRI compatible walking robotic device. Subjects were instructed to actively synchronize their left leg with respect to their right leg (passively guided by the robot) while their left leg was affected by any of the three conditions. We observed activation in areas known to be involved in error processing. Although we found that all conditions required the similar cortical network to fulfill the task, we observed a tendency towards more activity in the motor/sensory network as more “challenged” the subjects were.
机译:机器人疗法的目标是通过应用机器人训练策略来激发运动可塑性。尽管机器人触觉引导是减少训练时性能错误的常用运动训练策略,但是对运动学习的研究强调,错误是驱动运动适应的基本神经信号。因此,研究人员提出了一种机器人治疗算法,该算法可以放大运动误差而不是减少运动误差。研究在不同训练策略下参与学习的特定大脑区域可能有助于调整运动训练条件,以适应局灶性脑损伤的解剖位置。在本文中,我们评估了在以下三种不同条件下进行训练时与运动适应有关的大脑区域:无机器人指导,随机变量干扰和排斥力与误差成正比。我们对四名健康受试者进行了fMRI初步研究,这些受试者走进了功能兼容的fMRI行走机器人设备。指示对象在左腿受以下三种情况中的任何一种影响时,主动使他们的左腿相对于右腿同步(由机器人被动地引导)。我们在已知与错误处理有关的区域中观察到激活。尽管我们发现所有条件都需要类似的皮层网络来完成任务,但我们观察到随着“挑战”受试者的增多,运动/感觉网络中的活动逐渐增多的趋势。

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