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Bimanual motor deficits in older adults predicted by diffusion tensor imaging metrics of corpus callosum subregions

机译:通过diffusion体子区域扩散张量成像指标预测的老年人双体运动功能障碍

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摘要

Age-related changes in the microstructural organization of the corpus callosum (CC) may explain declines in bimanual motor performance associated with normal aging. We used diffusion tensor imaging in young (n = 33) and older (n = 33) adults to investigate the microstructural organization of seven specific CC subregions (prefrontal, premotor, primary motor, primary sensory, parietal, temporal and occipital). A set of bimanual tasks was used to assess various aspects of bimanual motor functioning: the Purdue Pegboard test, simultaneous and alternating finger tapping, a choice reaction time test and a complex visuomotor tracking task. The older adults showed age-related deficits on all measures of bimanual motor performance. Correlation analyses within the older group showed that white matter fractional anisotropy of the CC occipital region was associated with bimanual fine manipulation skills (Purdue Pegboard test), whereas better performance on the other bimanual tasks was related to higher fractional anisotropy in the more anterior premotor, primary motor and primary sensory CC subregions. Such associations were less prominent in the younger group. Our findings suggest that structural alterations of subregional callosal fibers may account for bimanual motor declines in normal aging.
机译:call体(CC)的微结构组织中与年龄相关的变化可能解释了与正常衰老相关的双手运动能力下降。我们在年轻(n = 33)和老年人(n = 33)成年人中使用扩散张量成像技术研究了七个特定CC子区域(前额叶,运动前,初级运动,主要感觉,顶叶,颞叶和枕叶)的显微组织。一组双向任务用于评估双向运动功能的各个方面:Purdue Pegboard测试,同时和交替的手指敲击,选择反应时间测试以及复杂的视觉运动跟踪任务。老年人在所有双手运动表现指标上均显示出与年龄相关的缺陷。老年组中的相关性分析表明,CC枕叶区的白质分数各向异性与双手精细操作技能有关(Purdue Pegboard测试),而其他两项任务中表现更好的表现与前运动越强的分数各向异性越高有关,主要运动和主要感觉CC子区域。这种联系在年轻的群体中不那么突出。我们的研究结果表明,次区域call骨纤维的结构改变可能解释了正常衰老过程中双手运动的下降。

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