Neurorehabilitation Research Institute, Morinomiya Hospital, Osaka, Japan.
PLoS One. 2012;7(3):e32234. doi: 10.1371/journal.pone.0032234. Epub 2012 Mar 2.
Accumulating evidence indicates that motor imagery and motor execution share common neural networks. Accordingly, mental practices in the form of motor imagery have been implemented in rehabilitation regimes of stroke patients with favorable results. Because direct monitoring of motor imagery is difficult, feedback of cortical activities related to motor imagery (neurofeedback) could help to enhance efficacy of mental practice with motor imagery. To determine the feasibility and efficacy of a real-time neurofeedback system mediated by near-infrared spectroscopy (NIRS), two separate experiments were performed. Experiment 1 was used in five subjects to evaluate whether real-time cortical oxygenated hemoglobin signal feedback during a motor execution task correlated with reference hemoglobin signals computed off-line. Results demonstrated that the NIRS-mediated neurofeedback system reliably detected oxygenated hemoglobin signal changes in real-time. In Experiment 2, 21 subjects performed motor imagery of finger movements with feedback from relevant cortical signals and irrelevant sham signals. Real neurofeedback induced significantly greater activation of the contralateral premotor cortex and greater self-assessment scores for kinesthetic motor imagery compared with sham feedback. These findings suggested the feasibility and potential effectiveness of a NIRS-mediated real-time neurofeedback system on performance of kinesthetic motor imagery. However, these results warrant further clinical trials to determine whether this system could enhance the effects of mental practice in stroke patients.
越来越多的证据表明,运动想象和运动执行共享共同的神经网络。因此,以运动想象形式进行的心理练习已被应用于脑卒中患者的康复治疗中,并取得了良好的效果。由于直接监测运动想象较为困难,因此与运动想象相关的皮质活动的反馈(神经反馈)可以帮助提高运动想象的心理练习效果。为了确定近红外光谱(NIRS)介导的实时神经反馈系统的可行性和功效,进行了两项独立的实验。实验 1 在 5 名受试者中进行,以评估运动执行任务期间实时皮质含氧血红蛋白信号反馈是否与离线计算的参考血红蛋白信号相关。结果表明,NIRS 介导的神经反馈系统能够可靠地实时检测到含氧血红蛋白信号的变化。在实验 2 中,21 名受试者进行手指运动的运动想象,并接受相关皮质信号和不相关的假信号的反馈。与假反馈相比,真实反馈引起了对侧运动前皮质的显著更大的激活,以及对运动想象的动觉自我评估得分更高。这些发现表明,NIRS 介导的实时神经反馈系统在运动想象的表现上具有可行性和潜在的有效性。然而,这些结果需要进一步的临床试验来确定该系统是否可以增强脑卒中患者的心理练习效果。