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青年成人音乐训练期间海马体前后部的结构协方差变化

Structural Covariance Changes of Anterior and Posterior Hippocampus During Musical Training in Young Adults.

作者信息

Guo Panfei, Li Qiongling, Wang Xuetong, Li Xinwei, Wang Shaoyi, Xie Yongqi, Xie Yachao, Fu Zhenrong, Zhang Xiaohui, Li Shuyu

机构信息

School of Biological Science and Medical Engineering, Beihang University, Beijing, China.

Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing, China.

出版信息

Front Neuroanat. 2020 May 19;14:20. doi: 10.3389/fnana.2020.00020. eCollection 2020.

Abstract

Musical training can induce the functional and structural changes of the hippocampus. The hippocampus is not a homogeneous structure which can be divided into anterior and posterior parts along its longitudinal axis, and the whole-brain structural covariances of anterior (aHC) and posterior hippocampus (pHC) show distinct patterns in young adults. However, little is known about whether the anterior and posterior hippocampal structural covariances change after long-term musical training. Here, we investigated the musical training-induced changes of the whole-brain structural covariances of bilateral aHC and pHC in a longitudinal designed experiment with two groups (training group and control group) across three time points [the beginning (TP1) and the end (TP2) of 24 weeks of training, and 12 weeks after training (TP3)]. Using seed partial least square, we identified two significant patterns of structural covariance of the aHC and pHC. The first showed common structural covariance of the aHC and pHC. The second pattern revealed distinct structural covariance of the two regions and reflected the changes of structural covariance of the left pHC in the training group across three time points: the left pHC showed significant structural covariance with bilateral hippocampus and parahippocampal gyrus, left calcarine sulcus only at TP1 and TP3. Furthermore, the integrity of distinct structural networks of aHC and pHC in the second pattern significantly increased in the training group. Our findings suggest that musical training could change the organization of structural whole-brain covariance for left pHC and enhance the degree of the structural covariance network differentiation of the aHC and pHC in young adults.

摘要

音乐训练可以诱发海马体的功能和结构变化。海马体并非一个均匀的结构,可沿其纵轴分为前部和后部,在年轻人中,海马体前部(aHC)和后部(pHC)的全脑结构协方差呈现出不同的模式。然而,对于长期音乐训练后海马体前后部的结构协方差是否发生变化,人们知之甚少。在此,我们在一个纵向设计的实验中,对两组(训练组和对照组)在三个时间点[24周训练开始时(TP1)、训练结束时(TP2)以及训练后12周(TP3)],研究了音乐训练诱发的双侧aHC和pHC全脑结构协方差的变化。使用种子偏最小二乘法,我们确定了aHC和pHC结构协方差的两种显著模式。第一种显示了aHC和pHC的共同结构协方差。第二种模式揭示了这两个区域不同的结构协方差,并反映了训练组中左侧pHC在三个时间点的结构协方差变化:左侧pHC仅在TP1和TP3时与双侧海马体和海马旁回、左侧距状沟显示出显著的结构协方差。此外,训练组中第二种模式下aHC和pHC不同结构网络的完整性显著增加。我们的研究结果表明,音乐训练可以改变左侧pHC的全脑结构协方差组织,并增强年轻人中aHC和pHC结构协方差网络的分化程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a19/7248297/8a5a6f827dd8/fnana-14-00020-g001.jpg

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