Marini Francesca, Zenzeri Jacopo, Pippo Valentina, Morasso Pietro, Campus Claudio
IEEE Int Conf Rehabil Robot. 2019 Jun;2019:1019-1024. doi: 10.1109/ICORR.2019.8779552.
Innovative research in the fields of prosthetic, neurorehabilitation, motor control and human physiology has been focusing on the study of proprioception, the sense through which we perceive the position and movement of our body, and great achievements have been obtained regarding its assessment and characterization. However, how proprioceptive signals are combined with other sensory modalities and processed by the central nervous system to form a conscious body image, is still unknown. Such a crucial question was addressed in this study, which involved 23 healthy subjects, by combining a robot-based proprioceptive test with a specific analysis of electroencephalographic activity (EEG) in the $\mu$ frequency band (8-12 Hz). We observed important activation in the motor area contralateral to the moving hand, and besides, a substantial bias in brain activation and proprioceptive acuity when visual feedback was provided in addition to the proprioceptive information during movement execution. In details, brain activation and proprioceptive acuity were both higher in case of movements performed with visual feedback. Remarkably, we also found a correlation between the level of activation in the brain motor area contralateral to the moving hand and the value of proprioceptive acuity.
假肢、神经康复、运动控制和人体生理学领域的创新性研究一直聚焦于本体感觉的研究,即我们感知身体位置和运动的感觉,并且在其评估和特征描述方面已经取得了巨大成就。然而,本体感觉信号如何与其他感觉模态相结合并由中枢神经系统进行处理以形成有意识的身体形象,仍然未知。本研究针对这一关键问题展开,该研究涉及23名健康受试者,通过将基于机器人的本体感觉测试与对μ频段(8 - 12赫兹)脑电图活动(EEG)的特定分析相结合。我们观察到运动手对侧的运动区域有重要激活,此外,在运动执行过程中,除了本体感觉信息外还提供视觉反馈时,大脑激活和本体感觉敏锐度存在显著偏差。具体而言,在有视觉反馈的情况下进行运动时,大脑激活和本体感觉敏锐度都更高。值得注意的是,我们还发现运动手对侧大脑运动区域的激活水平与本体感觉敏锐度值之间存在相关性。