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Diffusion tensor imaging metrics of the corpus callosum in relation to bimanual coordination: Effect of task complexity and sensory feedback

机译:bi体与双手协调相关的扩散张量成像指标:任务复杂性和感觉反馈的影响

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摘要

When manipulating objects with both hands, the corpus callosum (CC) is of paramount importance for interhemispheric information exchange. Hence, CC damage results in impaired bimanual performance. Here, healthy young adults performed a complex bimanual dial rotation task with or without augmented visual feedback and according to five interhand frequency ratios (1:1, 1:3, 2:3, 3:1, 3:2). The relation between bimanual task performance and microstructural properties of seven CC subregions (i.e., prefrontal, premotor/supplementary motor, primary motor, primary sensory, occipital, parietal, and temporal) was studied by means of diffusion tensor imaging (DTI). Findings revealed that bimanual coordination deteriorated in the absence as compared to the presence of augmented visual feedback. Simple frequency ratios (1:1) were performed better than the multifrequency ratios (non 1:1). Moreover, performance was more accurate when the preferred hand (1:3–2:3) as compared to the nonpreferred hand (3:1–3:2) moved faster and during noninteger (2:3–3:2) as compared to integer frequency ratios (1:3–3:1). DTI findings demonstrated that bimanual task performance in the absence of augmented visual feedback was significantly related to the microstructural properties of the primary motor and occipital region of the CC, suggesting that white matter microstructure is associated with the ability to perform bimanual coordination patterns in young adults. Hum Brain Mapp, 2013. © 2011 Wiley Periodicals, Inc.
机译:当用双手操纵物体时,call体(CC)对于半球之间的信息交换至关重要。因此,CC损坏会导致双向性能受损。在这里,健康的年轻人根据五种手间频率比率(1:1、1:3、2:3、3:1、3:2)执行复杂的双向拨号旋转任务,无论是否增加视觉反馈。通过扩散张量成像(DTI)研究了七个CC子区域(即前额叶,前运动/辅助运动,主要运动,主要感觉,枕叶,顶叶和颞叶)的双向任务执行与微观结构之间的关系。研究发现,与缺乏视觉反馈的情况相比,在缺乏双手协调的情况下。简单频率比(1:1)比多频率比(非1:1)更好。此外,与非优先手(3:1-3:2)相比,优先手(1:3–2:3)移动得更快,并且在非整数(2:3–3:2)期间,性能更准确。与整数频率比(1:3–3:1)。 DTI的发现表明,在没有增强视觉反馈的情况下,双向任务的执行与CC的主要运动和枕叶区域的微结构特性显着相关,这表明白质的微结构与年轻人中执行双向协调模式的能力有关。 。嗡嗡声脑图,2013年。©2011 Wiley Periodicals,Inc.

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