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Which Effects on Neuroanatomy and Path-Integration Survive? Results of a Randomized Controlled Study on Intensive Balance Training

机译:对神经解剖学和路径整合有哪些影响尚存?强化平衡训练的随机对照研究结果

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摘要

Balancing is a complex task requiring the integration of visual, somatosensory and vestibular inputs. The vestibular system is linked to the hippocampus, a brain structure crucial for spatial orientation. Here we tested the immediate and sustained effects of a one-month-long slackline training program on balancing and orientation abilities as well as on brain volumes in young adults without any prior experience in that skill. On the corrected level, we could not find any interaction effects for brain volumes, but the effect sizes were small to medium. A subsequent within-training-group analysis revealed volumetric increments within the somatosensory cortex and decrements within posterior insula, cerebellum and putamen remained stable over time. No significant interaction effects were observed on the clinical balance and the spatial orientation task two months after the training period (follow-up). We interpret these findings as a shift away from processes crucial for automatized motor output towards processes related to voluntarily controlled movements. The decrease in insular volume in the training group we propose to result from multisensory interaction of the vestibular with the visual and somatosensory systems. The discrepancy between sustained effects in the brain of the training group on the one hand and transient benefits in function on the other may indicate that for the latter to be retained a longer-term practice is required.
机译:平衡是一项复杂的任务,需要整合视觉,体感和前庭输入。前庭系统与海马相连,海马是对空间定向至关重要的大脑结构。在这里,我们测试了为期一个月的松弛线训练计划对平衡和定向能力以及对没有此技能的任何经验的年轻人的大脑容量的即时和持续影响。在校正的水平上,我们找不到对大脑体积的任何相互作用的影响,但影响的大小从中到小。随后的训练组内分析显示,随着时间的推移,体感皮层内的体积增加,后岛岛,小脑和壳状核内的体积减少保持稳定。训练期(随访)后两个月,对临床平衡和空间定向任务没有观察到明显的相互作用。我们将这些发现解释为从对马达自动输出至关重要的过程向与自动控制运动有关的过程的转变。我们建议,训练组的前庭容积减少是由于前庭与视觉和体感系统的多感官相互作用引起的。一方面,训练组的大脑持续作用与另一方面的暂时性功能益处之间的差异可能表明,要保留后者,则需要长期练习。

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