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Functional MRI of Rehabilitation in Chronic Stroke Patients Using Novel MR-Compatible Hand Robots

机译:使用新型MR兼容手机器人对慢性中风患者进行功能性MRI康复

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摘要

We monitored brain activation after chronic stroke by combining functional magnetic resonance imaging (fMRI) with a novel MR-compatible, hand-induced, robotic device (MR_CHIROD). We evaluated 60 fMRI datasets on a 3 T MR system from five right-handed patients with left-sided stroke ≥6 months prior and mild to moderate hemiparesis. Patients trained the paretic right hand at approximately 75% of maximum strength with an exercise ball for 1 hour/day, 3 days/week for 4 weeks. Multi-level fMRI data were acquired before, during training, upon completion of training, and after a non-training period using parallel imaging employing GeneRalized Autocalibrating Partially Parallel Acquisitions (GRAPPA) while the participant used the MR_CHIROD. Training increased the number of activated sensorimotor cortical voxels, indicating functional cortical plasticity in chronic stroke patients. The effect persisted four weeks after training completion, indicating the potential of rehabilitation in inducing cortical plasticity in chronic stroke patients.
机译:我们通过将功能磁共振成像(fMRI)与新型MR兼容,手感应的机器人设备(MR_CHIROD)相结合,监测了慢性中风后的大脑激活情况。我们在3 T MR系统上评估了60例fMRI数据集,该数据来自5例左手卒中≥6个月且轻度至中度偏瘫的右手患者。患者使用健身球以1小时/天,3天/周,4周的时间训练球状右手达到最大力量的大约75%。多级功能磁共振成像数据是在训练之前,训练期间,训练完成之后以及非训练时间之后使用GeneRalized自动校准部分并行采集(GRAPPA)的并行成像获取的,而参与者则使用了MR_CHIROD。训练增加了激活的感觉运动皮层体素的数量,表明慢性卒中患者的功能性皮层可塑性。该效果在训练完成后四周持续存在,表明康复的潜力在慢性中风患者中诱导皮质可塑性。

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