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Brains versus brawn: An empirical test of Barker's brain sparing model

机译:脑力与肌力:对巴克脑力节约模型的实证检验

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The Barker model of the in utero origins of diminished muscle mass in those born small invokes the adaptive “sparing” of brain tissue development at the expense of muscle. Though compelling, to date this model has not been directly tested. This article develops an allometric framework for testing the principal prediction of the Barker model—that among those born small muscle mass is sacrificed to spare brain growth—then evaluates this hypothesis using data from the third National Health and Nutrition Examination Survey (NHANES III). The results indicate clear support for a negative relationship between the allometric development of the two tissues; however, a further consideration of conserved mammalian fetal circulatory patterns suggests the possibility that system-constrained patterns of developmental damage and “bet-hedging” responses in affected tissues may provide a more adequate explanation of the results. Far from signaling the end of studies of adaptive developmental programming, this perspective may open a promising new avenue of inquiry within the fields of human biology and the developmental origins of health and disease. Am. J. Hum. Biol., 2010. © 2009 Wiley-Liss, Inc.
机译:出生时体重较小的子宫内子宫起源的Barker模型以牺牲肌肉为代价,调动了大脑组织发育的适应性“稀疏”。尽管令人信服,但迄今为止,该模型尚未经过直接测试。本文开发了一个用于测试Barker模型的主要预测的异速测量框架-牺牲了那些天生的小肌肉以节省大脑的成长-然后使用来自第三次全国健康和营养检查调查(NHANES III)的数据评估了这一假设。结果表明,两种组织异速发展之间的负相关关系得到了明确的支持。但是,对保守的哺乳动物胎儿循环模式的进一步考虑表明,受系统影响的组织损伤和“对冲”反应的系统限制模式可能提供对结果的更充分解释。这种观点远未预示着适应性发展计划研究的结束,它可能会在人类生物学以及健康与疾病的发展起源领域开辟一个有希望的新研究途径。上午。 J.哼,2010年。©2009 Wiley-Liss,Inc.。

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