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Fetal Functional Brain Age Assessed from Universal Developmental Indices Obtained from Neuro-Vegetative Activity Patterns

机译:从神经营养活动模式获得的通用发育指标评估胎儿的功能性大脑年龄。

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摘要

Fetal brain development involves the development of the neuro-vegetative (autonomic) control that is mediated by the autonomic nervous system (ANS). Disturbances of the fetal brain development have implications for diseases in later postnatal life. In that context, the fetal functional brain age can be altered. Universal principles of developmental biology applied to patterns of autonomic control may allow a functional age assessment. The work aims at the development of a fetal autonomic brain age score (fABAS) based on heart rate patterns. We analysed n = 113 recordings in quiet sleep, n = 286 in active sleep, and n = 29 in active awakeness from normals. We estimated fABAS from magnetocardiographic recordings (21.4–40.3 weeks of gestation) preclassified in quiet sleep (n = 113, 63 females) and active sleep (n = 286, 145 females) state by cross-validated multivariate linear regression models in a cross-sectional study. According to universal system developmental principles, we included indices that address increasing fluctuation range, increasing complexity, and pattern formation (skewness, power spectral ratio VLF/LF, pNN5). The resulting models constituted fABAS. fABAS explained 66/63% (coefficient of determination R2 of training and validation set) of the variance by age in quiet, while 51/50% in active sleep. By means of a logistic regression model using fluctuation range and fetal age, quiet and active sleep were automatically reclassified (94.3/93.1% correct classifications). We did not find relevant gender differences. We conclude that functional brain age can be assessed based on universal developmental indices obtained from autonomic control patterns. fABAS reflect normal complex functional brain maturation. The presented normative data are supplemented by an explorative study of 19 fetuses compromised by intrauterine growth restriction. We observed a shift in the state distribution towards active awakeness. The lower WGA dependent fABAS values found in active sleep may reflect alterations in the universal developmental indices, namely fluctuation amplitude, complexity, and pattern formation that constitute fABAS.
机译:胎儿大脑发育涉及由自主神经系统(ANS)介导的神经营养(自主)控制的发展。胎儿大脑发育的紊乱对后期出生后的疾病有影响。在这种情况下,胎儿的功能性大脑年龄可以改变。应用于自主控制模式的发育生物学通用原理可能允许进行功能年龄评估。这项工作旨在根据心率模式发展胎儿自主神经年龄评分(fABAS)。与正常人相比,我们分析了安静睡眠中的n = 113记录,活动睡眠中的n = 286和活动觉醒的n = 29。我们通过交叉验证的多元线性回归模型,通过心电图记录(妊娠21.4–40.3周)对fABAS进行了预分类,这些记录在安静睡眠(n = 113,63位女性)和活动睡眠(n = 286,145位女性)状态下进行了预先分类。截面研究。根据通用系统开发原则,我们包含了解决不断增加的波动范围,增加复杂性和模式形成(偏度,功率谱比VLF / LF,pNN5)的指标。所得模型构成fABAS。在安静时,fABAS解释了年龄差异的66/63%(训练和验证集的确定系数R 2 ),而在活动睡眠中,fABAS解释了51/50%。通过使用波动范围和胎儿年龄的逻辑回归模型,安静和活跃的睡眠被自动重新分类(正确分类的正确率是94.3 / 93.1%)。我们没有发现相关的性别差异。我们得出结论,可以根据从自主控制模式获得的普遍发展指数来评估功能性大脑年龄。 fABAS反映正常的复杂功能性大脑成熟。所提供的规范性数据是对19名胎儿受到宫内生长受限损害的探索性研究的补充。我们观察到状态分布向主动清醒的转变。在主动睡眠中发现的较低的WGA依赖性fABAS值可能反映了构成fABAS的通用发育指数的变化,即波动幅度,复杂性和模式形成。

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