首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Identification of cortical activation and white matter architecture according to short-term motor learning in the human brain: Functional MRI and diffusion tensor tractography study
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Identification of cortical activation and white matter architecture according to short-term motor learning in the human brain: Functional MRI and diffusion tensor tractography study

机译:根据人脑中的短期运动学习来识别皮层激活和白质结构:功能性MRI和扩散张量束缚成像研究

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Objectives: The purpose of this study was to examine whether two weeks of short-term motor training led to changes of cortical activation patterns and white matter integrity in cortical and subcortical structures according to motor skill acquisition, using functional MRI (fMRI) and diffusion tensor image (DTI). Methods: We enrolled twenty healthy volunteers, who were randomly assigned to training and control groups. The training group was trained with a serial reaction time (SRT) task, one hour a day for 10 days within two weeks, whereas the control group had no training. Movement accuracy (MA) and movement time (MT) were tested twice before and after training, while fMRI was scanned during SRT task. Immediately after these tests, DTI was conducted. Results: The training group showed significant differences in the increase of MA and the reduction of MT, compared with control group. The activated volume of cortices related to motor function was gradually decreased in the training group, according to motor skill acquisition. DTI analysis showed no significant differences between pre- and post-tests in both groups. Conclusions: Our findings indicated that short-term motor training led to cortical activation patterns of the cerebral cortex according to implicit motor learning. However, changes of white matter integrity were not observed. It seems that short-term motor training may not be enough to change white matter architectures, due to lack of the training period.
机译:目的:本研究旨在通过功能性MRI(fMRI)和扩散张量,根据运动技能的掌握情况,研究两周的短期运动训练是否导致皮质和皮质下结构的皮质激活模式和白质完整性的改变图片(DTI)。方法:我们招募了20名健康志愿者,他们被随机分为训练组和对照组。训练组接受了连续反应时间(SRT)任务的训练,在两周内每天进行1天,共10天,而对照组则没有训练。训练前后对运动准确性(MA)和运动时间(MT)进行了两次测试,而在SRT任务期间对功能磁共振成像进行了扫描。这些测试之后,立即进行了DTI。结果:与对照组相比,训练组在MA的增加和MT的减少方面显示出显着差异。根据运动技能的掌握,在训练组中,与运动功能相关的皮质的激活量逐渐减少。 DTI分析显示两组的测试前和测试后无显着差异。结论:我们的发现表明,根据隐性运动学习,短期运动训练可导致大脑皮层的皮质激活模式。但是,未观察到白质完整性的变化。似乎由于缺乏训练周期,短期运动训练可能不足以改变白质结构。

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