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Sex hormone influence on human infants sound characteristics: melody in spontaneous crying

机译:性激素对婴儿声音特征的影响:自发性哭泣中的旋律

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摘要

The specific impact of sex hormones on brain development and acoustic communication is known from animal models. Sex steroid hormones secreted during early development play an essential role in hemispheric organization and the functional lateralization of the brain, e.g. language. In animals, these hormones are well-known regulators of vocal motor behaviour. Here, the association between melody properties of infants' sounds and serum concentrations of sex steroids was investigated. Spontaneous crying was sampled in 18 healthy infants, averaging two samples taken at four and eight weeks, respectively. Blood samples were taken within a day of the crying samples. The fundamental frequency contour (melody) was analysed quantitatively and the infants' frequency modulation skills expressed by a melody complexity index (MCI). These skills provide prosodic primitives for later language. A hierarchical, multiple regression approach revealed a significant, robust relationship between the individual MCIs and the unbound, bioactive fraction of oestradiol at four weeks as well as with the four-to-eight-week difference in androstenedione. No robust relationship was found between the MCI and testosterone. Our findings suggest that oestradiol may have effects on the development and function of the auditory–vocal system in human infants that are as powerful as those in vocal-learning animals.
机译:从动物模型中可以了解性激素对大脑发育和声音交流的特定影响。在早期发育过程中分泌的性类固醇激素在半球组织和大脑的功能性侧化中起着至关重要的作用。语言。在动物中,这些激素是声带运动行为的众所周知的调节剂。在这里,研究了婴儿声音的旋律特性与性类固醇的血清浓度之间的关系。在18名健康婴儿中对自然发声进行了抽样,平均分别在4周和8周时抽取了两个样本。在哭泣样品的一天之内采集血液样品。定量分析了基本频率轮廓(旋律),并通过旋律复杂度指数(MCI)表示了婴儿的频率调制能力。这些技能为后来的语言提供了韵律原语。分层的多元回归方法显示,在四个星期以及雄烯二酮之间的四到八周差异中,各个MCI与雌二醇的未结合生物活性成分之间存在显着,牢固的关系。在MCI和睾丸激素之间未发现牢固的关系。我们的发现表明,雌二醇可能对人类婴儿的听觉-声音系统的发育和功能产生影响,其作用与在语音学习动物中一样强大。

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