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Developmental grey matter changes in superior parietal cortex accompany improved transitive reasoning

机译:高级耳廓皮质的发育灰质变化随附改善的传递推理

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摘要

The neural basis of developmental changes in transitive reasoning in parietal regions was examined, using voxel-based morphometry. Young adolescents and adults performed a transitive reasoning task, subsequent to undergoing anatomical magnetic resonance imaging (MRI) brain scans. Behaviorally, adults reasoned more accurately than did the young adolescents. Neural results showed (i) less grey matter density in superior parietal cortex in the adults than in the young adolescents, possibly due to a developmental period of synaptic pruning; (ii) improved performance in the reasoning task was negatively correlated with grey matter density in superior parietal cortex in the adolescents, but not in the adult group; and (iii) the latter results were driven by the more difficult trials, requiring greater spatial manipulation. Taken together, the results support the idea that during development, regions in superior parietal cortex are fine-tuned, to support more robust spatial manipulation, resulting in greater accuracy and efficiency in transitive reasoning.
机译:研究了基于体形态的形态学,研究了位于瓣膜区域区域的传递变化的神经基础。年轻的青少年和成年人进行了一个传递推理任务,随后经历解剖磁共振成像(MRI)脑扫描。行为地,成年人比年轻的青少年更准确地推出。神经结果表明(i)成人在成人中的高级耳廓皮质中的灰质密度低于年轻青少年,可能是由于突触修剪的发育期间; (ii)在推理任务中的提高性能与青少年的高级耳廓皮质中的灰质密度呈负相关,但不在成人组; (iii)后一种结果是由更困难的试验驱动,需要更大的空间操纵。在一起,结果支持的想法是,在开发过程中,卓越的耳廓皮层中的地区是微调的,以支持更强大的空间操纵,导致传递推理的准确性和效率更高。

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