首页> 美国卫生研究院文献>Journal of Clinical Medicine >Brain Gray Matter Volume Is Modulated by Visual Input and Overall Learning Success but Not by Time Spent on Learning a Complex Balancing Task
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Brain Gray Matter Volume Is Modulated by Visual Input and Overall Learning Success but Not by Time Spent on Learning a Complex Balancing Task

机译:脑灰物质的量由视觉输入和整体学习的成功程度来调节而不是由学习复杂的平衡任务所花费的时间来调节

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摘要

To better understand the process of neuroplasticity, this study assesses brain changes observed by voxel-based morphometry (VBM) in response to two different learning conditions. Twenty-two young, healthy subjects learned slacklining, a complex balancing task, with either their eyes open (EO, n = 11) or their eyes closed (EC, n = 11). The learning took place three times per week for four weeks, with learning periods of 1 hour, providing a total of 12 hours of learning. The scanning and testing protocols were applied at three time-points: (1) immediately before learning (baseline), (2) immediately afterwards (post-test), and (3) two months afterwards (follow-up). The EO group performed better on the task-specific test. Significant group*time interaction effects were found in sensory-motor areas at the post-test, with increases in the EO group only. The results suggest that VBM-observed brain changes in response to learning a complex balancing task vary depending on the learning success and the availability of visual input, and not solely on the amount of time spent on learning. These findings should be taken into account by future studies using similar methodologies.
机译:为了更好地理解神经可塑性的过程,本研究评估了基于体素的形态计量学(VBM)响应于两种不同学习条件而观察到的大脑变化。 22名年轻健康的受试者睁开眼睛(EO,n = 11)或睁开眼睛(EC,n = 11),学习松弛,这是一项复杂的平衡任务。该学习每周进行三次,共四个星期,学习时间为1个小时,总共提供12个小时的学习时间。在三个时间点应用了扫描和测试方案:(1)刚好在学习之前(基线),(2)刚在学习之后(后测试),以及(3)两个月后(随访)。 EO组在针对特定任务的测试中表现更好。测试后在感觉运动区发现了显着的组*时间相互作用效应,仅EO组增加。结果表明,VBM观察到的响应于学习复杂的平衡任务而发生的脑部变化取决于学习成功和视觉输入的可用性,而不仅取决于学习所花费的时间。这些发现应在以后使用类似方法的研究中加以考虑。

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