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Comparison of Laterality Index of upper and lower limb movements using brain activated fMRI

机译:脑激活功能磁共振成像比较上下肢运动的横向指数

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Asymmetry of bilateral cerebral function, i.e. laterality, is an important phenomenon in many brain actions such as motor functions. This asymmetry maybe altered in some clinical conditions such as Multiple Sclerosis (MS). The aim of this study was to delineate the laterality differences for upper and lower limbs in healthy subjects to compare this pattern with subjects suffering from MS in advance. Hence 9 Male healthy subjects underwent fMRI assessment, while they were asked to move their limbs in a predetermined pattern. The results showed that hands movement activates the brain with a significant lateralization in pre-motor cortex in comparison with lower limb. Also, dominant hands activate brain more lateralized than the non-dominant hand. In addition, Left basal ganglia were observed to be activated regardless of the hand used, While, These patterns of Brain activation was not detected in lower limbs. We hypothesize that this difference might be attributed to this point that hand is usually responsible for precise and fine voluntary movements, whereas lower limb joints are mainly responsible for locomotion, a function integrating voluntary and automatic bilateral movements.
机译:在许多诸如运动功能的脑部动作中,双侧脑部功能的不对称即侧向性是重要的现象。在某些临床情况下,例如多发性硬化症(MS),这种不对称性可能会改变。这项研究的目的是勾勒出健康受试者上肢和下肢的侧向差异,以便将该模式与预先患有MS的受试者进行比较。因此,对9名男性健康受试者进行了功能磁共振成像评估,同时要求他们以预定模式移动其四肢。结果表明,与下肢相比,手部运动可激活大脑,使运动前皮层具有明显的侧偏作用。同样,优势手比非优势手更能激活大脑。此外,观察到左基底神经节被激活,而与所使用的手无关,而在下肢中未检测到这些脑部激活模式。我们假设这种差异可能归因于这一点,即手通常负责精确而精细的自愿运动,而下肢关节则主要负责运动,该功能整合了自愿和自动的双边运动。

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