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Effects of Time-Compressed Speech Training on Multiple Functional and Structural Neural Mechanisms Involving the Left Superior Temporal Gyrus

机译:时间压缩语音训练对涉及左颞颞回的多种功能和结构神经机制的影响

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摘要

Time-compressed speech is an artificial form of rapidly presented speech. Training with time-compressed speech (TCSSL) in a second language leads to adaptation toward TCSSL. Here, we newly investigated the effects of 4 weeks of training with TCSSL on diverse cognitive functions and neural systems using the fractional amplitude of spontaneous low-frequency fluctuations (fALFF), resting-state functional connectivity (RSFC) with the left superior temporal gyrus (STG), fractional anisotropy (FA), and regional gray matter volume (rGMV) of young adults by magnetic resonance imaging. There were no significant differences in change of performance of measures of cognitive functions or second language skills after training with TCSSL compared with that of the active control group. However, compared with the active control group, training with TCSSL was associated with increased fALFF, RSFC, and FA and decreased rGMV involving areas in the left STG. These results lacked evidence of a far transfer effect of time-compressed speech training on a wide range of cognitive functions and second language skills in young adults. However, these results demonstrated effects of time-compressed speech training on gray and white matter structures as well as on resting-state intrinsic activity and connectivity involving the left STG, which plays a key role in listening comprehension.
机译:时间压缩语音是快速呈现的语音的一种人工形式。使用第二语言的时间压缩语音(TCSSL)进行训练会导致适应TCSSL。在这里,我们新近研究了使用自发性低频波动(fALFF),静止状态功能连接性(RSFC)和左侧颞上回(RSFC)的幅度幅度,用TCSSL训练4周对各种认知功能和神经系统的影响( STG),分数各向异性(FA)和年轻人的磁共振成像显示区域灰质体积(rGMV)。与活动对照组相比,TCSSL训练后认知功能或第二语言技能的测量指标的变化没有显着差异。但是,与活动对照组相比,TCSSL训练与增加的fALFF,RSFC和FA以及涉及左STG区域的rGMV降低有关。这些结果缺乏证据表明时间压缩语音训练对年轻人的广泛认知功能和第二语言技能具有远大的转移作用。但是,这些结果证明了时间压缩语音训练对灰色和白色物质结构以及静止状态内在活动和涉及左STG的连接性的影响,这在听力理解中起关键作用。

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