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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >What is the natural measurement unit of temperament: single traits or profiles?
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What is the natural measurement unit of temperament: single traits or profiles?

机译:什么是气质的自然测量单位:单一特征或型材?

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There is fundamental doubt about whether the natural unit of measurement for temperament and personality corresponds to single traits or to multitrait profiles that describe the functioning of a whole person. Biogenetic researchers of temperament usually assume they need to focus on individual traits that differ between individuals. Recent research indicates that a shift of emphasis to understand processes within the individual is crucial for identifying the natural building blocks of temperament. Evolution and development operate on adaptation of whole organisms or persons, not on individual traits or categories. Adaptive functioning generally depends on feedback among many variable processes in ways that are characteristic of complex adaptive systems, not machines with separate parts. Advanced methods of unsupervised machine learning can now be applied to genome-wide association studies and brain imaging in order to uncover the genotypic-phenotypic architecture of traits like temperament, which are strongly influenced by complex interactions, such as genetic epistasis, pleiotropy and gene-environment interactions. We have found that the heritability of temperament can be nearly fully explained by a large number of genetic variants that are unique for multi-trait profiles, not single traits. The implications of this finding for research design and precision medicine are discussed.
机译:关于气质和人格的自然单位对应于单一特征或描述整个人的运作的多元特征,有根本怀疑。气质的生物发生研究人员通常认为他们需要专注于个体之间不同的个体特征。最近的研究表明,重点的转变,了解个人内的进程对于识别气质的自然建筑块至关重要。进化和发展在整个生物体或人的适应方面运作,而不是单独的特征或类别。自适应功能通常取决于许多可变过程之间的反馈,其方式是复杂自适应系统的特征,而不是具有单独部件的机器。现在可以应用无监督机器学习的先进方法,以便揭示基因型 - 型协会研究和脑成像,以揭示像气质等特征的基因型 - 表型结构,这受到复杂相互作用的强烈影响,例如遗传超越,脂肪和基因 - 环境互动。我们发现气质的可遗传性可以通过大量的遗传变体来充分解释,这些变体对于多特征型材是独特的,而不是单一的性状。讨论了这一发现对研究设计和精密药物的影响。

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