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首页> 外文期刊>Developmental neurobiology >Developmental Changes in Task‐Induced Brain Deactivation in Humans Revealed by a Motor Task
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Developmental Changes in Task‐Induced Brain Deactivation in Humans Revealed by a Motor Task

机译:机动任务揭示的人类脑失效的发育变化

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Abstract Performing tasks activates relevant brain regions in adults while deactivating task‐irrelevant regions. Here, using a well‐controlled motor task, we explored how deactivation is shaped during typical human development and whether deactivation is related to task performance. Healthy right‐handed children (8–11?years), adolescents (12–15?years), and young adults (20–24?years; 20 per group) underwent functional magnetic resonance imaging with their eyes closed while performing a repetitive button‐press task with their right index finger in synchronization with a 1‐Hz sound. Deactivation in the ipsilateral sensorimotor cortex (SM1), bilateral visual and auditory (cross‐modal) areas, and bilateral default mode network (DMN) progressed with development. Specifically, ipsilateral SM1 and lateral occipital deactivation progressed prominently between childhood and adolescence, while medial occipital (including primary visual) and DMN deactivation progressed from adolescence to adulthood. In adults, greater cross‐modal deactivation in the bilateral primary visual cortices was associated with higher button‐press timing accuracy relative to the sound. The region‐specific deactivation progression in a developmental period may underlie the gradual promotion of sensorimotor function segregation required in the task. Task‐induced deactivation might have physiological significance regarding suppressed activity in task‐irrelevant regions. Furthermore, cross‐modal deactivation develops to benefit some aspects of task performance in adults.
机译:摘要执行任务在取消激活任务 - 无关的地区时激活成人中的相关大脑区域。在这里,使用良好控制的电机任务,我们探讨了在典型人类发展期间塑造的失活,以及停用是否与任务性能有关。健康的右手儿童(8-11?年),青少年(12-15?年)和年轻人(20-24岁) - 按照正确的指数手指按照1-Hz声音对任务进行标记。在IPsilateLalsisimotor Cortex(SM1)中停用,双边视觉和听觉(跨模型)区域以及双边默认模式网络(DMN)进行了开发。具体而言,童年和青春期之间的同侧SM1和侧枕腔失活突出,而中间枕(包括初级视觉)和DMN停用从青春期进入成年期。在成人中,双边初级视觉皮质中的更大的跨模型停用与相对于声音相对于声音的纽扣时刻精度更高。发展期间的特定区域的停用进展可能是任务所需的传感器函数分离的逐步推广。任务诱导的失活可能对任务 - 无关地区的抑制活动具有生理学意义。此外,交叉模态停用发展以使成人任务表现的某些方面受益。

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