首页> 外文会议>2011 8th International Conference on Ubiquitous Robots and Ambient Intelligence >Cerebral activation patterns of bimanual and unilateral-limb trainings —Additional verification of an upper-limb rehabilitation robot by using near-infrared spectroscopic technology
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Cerebral activation patterns of bimanual and unilateral-limb trainings —Additional verification of an upper-limb rehabilitation robot by using near-infrared spectroscopic technology

机译:双手和单肢训练的大脑激活模式—使用近红外光谱技术对上肢康复机器人的补充验证

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Our previous work has introduced a new self-controlled bimanual training robot, and confirmed a positive training effect with increased brain activation amount and motion tracking precision. Even though it was confirmed that the proposed bimanual training induced greater brain activation than single-limb training, we could not assure that bimanual training induced greater cerebral activation only in the dominant hemisphere or in the both hemispheres. Therefore, we performed a new training experiment by quantifying brain activation using near-infrared spectroscopy (NIRS). Bimanual and unilateral-limb tasks were performed in two reverse control directions and in both the active-resisted and active-assisted modes. The inter-hemispheric asymmetry of cerebral activation was compared between the two control directions for different training patterns. As for the comparison of the inter-hemispheric asymmetry of cerebral activation between the two control directions, the unilateral-limb training achieved a greater difference than the bimanual training. The results revealed the bimanual task induced a better symmetry of the two hemispheres in cerebral activation. Therefore, the bimanual training supported by our robot may be more favorable for promoting the recovery and enhancement of two limbs coordination function.
机译:我们先前的工作已经引入了一种新的自我控制的双向训练机器人,并通过增加大脑激活量和运动跟踪精度来确认积极的训练效果。即使已证实拟议的双手训练比单肢训练能引起更大的大脑激活,但我们不能保证双手训练只会在优势半球或两个半球引起更大的大脑激活。因此,我们通过使用近红外光谱(NIRS)量化大脑激活进行了新的训练实验。在两个反向控制方向上以及在主动抵抗和主动辅助模式下都执行了单手和单肢任务。比较了不同训练模式下两个控制方向之间大脑活动的半球间不对称性。至于两个控制方向之间大脑活动的半球间不对称性的比较,单侧肢训练比双向训练有更大的差异。结果表明,在大脑激活过程中,双向任务诱导了两个半球更好的对称性。因此,由我们的机器人支持的双手训练可能更有利于促进恢复和增强两肢协调功能。

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