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Historical and Philosophical Perspectives on Behavioral Genetics and Developmental Science

In Kathryn Hood, Halpern E., Greenberg Carolyn Tucker, Lerner Gary & M. Richard (eds.), Handbook of Developmental Science, Behavior, and Genetics. Wiley-Blackwell. pp. 41--60 (2010)

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  1. Le basi dell’intelligenza. Due modi di ragionare su geni e ambiente.Davide Serpico - 2016 - PNEI News 5 (10):13-16.
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  • La differenza tra ereditarietà ed ereditabilità nello studio dei tratti psicologici.Davide Serpico - 2020 - Medicalive Magazine 6 (1):7-21.
    ITA: In questo articolo analizzerò la differenza tra il concetto di ereditarietà e quello di ereditabilità. In primo luogo, evidenzierò come i due concetti derivino storicamente da differenti tradizioni nello studio della variabilità fenotipica e del rapporto genotipo-fenotipo. Secondariamente, illustrerò gli aspetti teorici e metodologici alla base dei due concetti, che sono peraltro collegati a differenti aree delle scienze biologiche. Infine, spiegherò brevemente come si sia recentemente tentato, con molte difficoltà, di connettere lo studio dei meccanismi dell’ereditarietà allo studio dell’ereditabilità. (...)
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  • What kind of kind is intelligence?Serpico Davide - 2017 - Philosophical Psychology 31 (2):232-252.
    The model of human intelligence that is most widely adopted derives from psychometrics and behavioral genetics. This standard approach conceives intelligence as a general cognitive ability that is genetically highly heritable and describable using quantitative traits analysis. The paper analyzes intelligence within the debate on natural kinds and contends that the general intelligence conceptualization does not carve psychological nature at its joints. Moreover, I argue that this model assumes an essentialist perspective. As an alternative, I consider an HPC theory of (...)
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  • Behavior genetics and postgenomics.Evan Charney - 2012 - Behavioral and Brain Sciences 35 (5):331-358.
    The science of genetics is undergoing a paradigm shift. Recent discoveries, including the activity of retrotransposons, the extent of copy number variations, somatic and chromosomal mosaicism, and the nature of the epigenome as a regulator of DNA expressivity, are challenging a series of dogmas concerning the nature of the genome and the relationship between genotype and phenotype. According to three widely held dogmas, DNA is the unchanging template of heredity, is identical in all the cells and tissues of the body, (...)
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  • Interactive predispositions.James Tabery - 2009 - Philosophy of Science 76 (5):876-888.
    Many cases of gene‐environment interaction, or , are misconstrued as evincing a genetic predisposition. I diagnose this misconstrual and then introduce a new concept— interactive predisposition —to correct for the mistake. I conclude by examining how recent debates over screening for individual predispositions are related to older debates about group differences between populations , drawing on the lessons of the latter to inform the former. †To contact the author, please write to: Department of Philosophy, University of Utah, Salt Lake City, (...)
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