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Differential Signatures of Second Language Syntactic Performance and Age on the Structural Properties of the Left Dorsal Pathway

机译:第二语言句法表现和年龄对左背侧通道结构特性的差异性

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In adult second language (L2) acquisition, individual differences are considerably large even among people with similar experiences. The neural mechanisms underlying this variability would include structural plasticity of language-related pathways. To elucidate such neuroplasticity, we focused on the transitional period of adolescence, which is associated with certain plasticity toward maturation following the sensitive period of language acquisition (≤12 years old). The adolescent brain would thus be influenced by age-dependent factors, as well as performances in L2. Here, we examined individual differences in L2 performances controlling the duration of experience to reveal the differential signatures of performances and age on the plasticity of structural properties in major language-related pathways. We recruited Japanese students at two ages, i.e., junior (age: 13–14) and senior (age: 16–17) high-school students, all of whom started to expose to English at age 12 or 13. We divided them into subgroups, so that either L2 performance [Junior (High)/Senior (Low)] or age [Senior (Low)/Senior (High)] was matched in group comparisons; the duration of L2 experience was also controlled between the Senior (Low) and Senior (High) groups. We then examined the thickness and fractional anisotropy (FA) of the dorsal and ventral pathways, i.e., the arcuate fasciculus (Arcuate) and inferior fronto-occipital fasciculus (IFOF), respectively, using semi-automatic methods for selecting regions without branches. Regarding FA in the left Arcuate, the Senior (High) group showed significantly higher FA than the other two groups, indicating performance-related group differences. Further, FA in the left Arcuate was selectively correlated with the accuracy of a syntactic task. Regarding the thickness of the left Arcuate, the Senior (High) and Senior (Low) groups showed significantly larger thickness than the Junior (High) group, indicating age-related group differences. These differential performance-related and age-related signatures were evident on the left Arcuate alone, in contrast to the right Arcuate that showed only mild differences in thickness, and to the bilateral IFOF that lacked either signature. Our results suggest that the left dorsal pathway continued to develop to adolescence, and that performance differences in a syntactic task can be predicted by its FA, independent of age and the duration of experience.
机译:在成人第二语言(L2)习得中,即使具有相似经验的人之间的个体差异也很大。这种变异性的神经机制将包括语言相关通路的结构可塑性。为了阐明这种神经可塑性,我们集中在青春期的过渡期,这与在语言习得的敏感期(≤12岁)之后对成熟具有一定的可塑性有关。因此,青春期大脑将受到年龄相关因素以及L2表现的影响。在这里,我们检查了L2表演的个体差异,这些差异控制了体验的持续时间,从而揭示了表演和年龄对主要语言相关途径中结构特性可塑性的差异性。我们招募了两个年龄的日本学生,即初中(13-14岁)和高中(16-17岁)高中生,他们都在12岁或13岁开始接触英语。亚组,以便在组比较中匹配L2表现[初级(高)/高级(低)]或年龄[高级(低)/高级(高)]; L2经验的持续时间也受高级(低级)和高级(高级)组的控制。然后,我们使用半自动方法选择了无分支区域的背侧和腹侧通路的厚度和分数各向异性(FA),分别是弓形束(Arcuate)和额额枕下束(IFOF)。关于左弓形的FA,Senior(High)组的FA明显高于其他两组,表明与表现相关的组存在差异。此外,左弓形中的FA与句法任务的准确性有选择地相关。关于左弓形的厚度,高级(高)和高级(低)组的厚度明显大于初级(高)组,表明年龄相关的组差异。这些差异的表现相关和年龄相关的特征仅在左侧的弓形上很明显,而右侧的弓形仅显示出轻微的厚度差异,而两侧的IFOF则没有这两个特征。我们的结果表明,左背侧通路持续发展到青春期,并且句法任务的性能差异可以通过其FA来预测,而与年龄和经历时间无关。

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