手指敲击
基底神经节
苍白球
神经科学
神经可塑性
运动前皮质
辅助电机区
初级运动皮层
运动皮层
背外侧前额叶皮质
医学
功能磁共振成像
意识的神经相关物
心理学
中枢神经系统
前额叶皮质
听力学
解剖
背
认知
刺激
作者
Yongmin Chang,Huijin Song,Jaejun Lee,Jeehye Seo,Joohyun Kim,Hui Joong Lee,Hye Jung Kim,Yangho Kim,Joon‐Ho Ahn,Sin-Jae Park,Jee Hyun Kwon,Kyoung Sook Jeong,Doo-Kyo Jung
出处
期刊:Occupational and Environmental Medicine
[BMJ]
日期:2010-09-10
卷期号:67 (12): 809-815
被引量:20
标识
DOI:10.1136/oem.2009.052761
摘要
Background In a previous study, regional delivery of manganese (Mn)ions within the brain revealed that the metal accumulates in the basal ganglia, where it induces degeneration of the globus pallidus. Degeneration of the basal ganglia impairs motor ability by compromising an important neural circuit involved in the regulation of motor control. Therefore, much research has been devoted to identifying a sensitive and non-invasive imaging marker to evaluate the functional correlates of Mn-related brain dysfunction. Methods We performed the first-ever sequential finger-tapping functional MRI (fMRI) experiment to investigate the behavioural significance of additionally recruited brain regions in welders with chronic Mn exposure. Results During the finger tapping task, activation of the bilateral primary sensorimotor cortex (SM1), bilateral supplementary motor area (SMA), bilateral dorsolateral premotor cortex, bilateral superior parietal cortex and ipsilateral dentate nucleus was higher in the welding group (42 welders) than in the control group (26 controls). The pallidal index correlated with the activation observed in the contralateral SM1 for the finger tapping task of the left hand. The fMRI variables correlated with motor behaviour. Grooved Pegboard performances (right hand) correlated with activation, as seen in the ipsilateral and contralateral SMAs obtained during the finger tapping task of the right hand. Conclusion Our findings suggest that increased brain activation results from the compensational activation of ancillary cortical pathways, which ensures adequate motor function.
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