Results for 'Extended heredity'

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  1.  1
    Russell Bonduriansky and Troy Day. Extended Heredity: A New Understanding of Inheritance and Evolution.Douglas Futuyma - 2019 - Evolutionary Studies in Imaginative Culture 3 (1):115-118.
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  2.  12
    R ussell B onduriansky & T roy D ay, Extended heredity : a new understanding of inheritance and evolution, Princeton University Press, 2018, 288 pp, ISBN 9780691157672. [REVIEW]Gaëlle Pontarotti & Arantza Etxeberria - 2019 - History and Philosophy of the Life Sciences 41 (3):33.
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  3.  40
    Conserving Functions across Generations: Heredity in Light of Biological Organization.Matteo Mossio & Gaëlle Pontarotti - 2022 - British Journal for the Philosophy of Science 73 (1):249-278.
    We develop a conceptual framework that connects biological heredity and organization. We refer to heredity as the cross-generation conservation of functional elements, defined as constraints subject to organizational closure. While hereditary objects are functional constituents of biological systems, any other entity that is stable across generations—and possibly involved in the recurrence of phenotypes—belongs to their environment. The central outcome of the organizational perspective consists in extending the scope of heredity beyond the genetic domain without merging it with (...)
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  4. An Extended Synthesis for Evolutionary Biology.Massimo Pigliucci - 2009 - Annals of the New York Academy of Science 1168:218-228.
    Evolutionary theory is undergoing an intense period of discussion and reevaluation. This, contrary to the misleading claims of creationists and other pseudoscientists, is no harbinger of a crisis but rather the opposite: the field is expanding dramatically in terms of both empirical discoveries and new ideas. In this essay I briefly trace the conceptual history of evolutionary theory from Darwinism to neo-Darwinism, and from the Modern Synthesis to what I refer to as the Extended Synthesis, a more inclusive conceptual (...)
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  5.  7
    Presume It Not: True Causes in the Search for the Basis of Heredity.Raphael Scholl & Aaron Novick - 2020 - British Journal for the Philosophy of Science 71 (1):59-86.
    Kyle Stanford has recently given substance to the problem of unconceived alternatives, which challenges the reliability of inference to the best explanation (IBE) in remote domains of nature. Conjoined with the view that IBE is the central inferential tool at our disposal in investigating these domains, the problem of unconceived alternatives leads to scientific anti-realism. We argue that, at least within the biological community, scientists are now and have long been aware of the dangers of IBE. We re-analyse the nineteenth-century (...)
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  6. Organic Selection and Social Heredity: The Original Baldwin Effect Revisited.Nam Le - 2019 - Artificial Life Conference Proceedings 2019 (31):515-522.
    The so-called “Baldwin Effect” has been studied for years in the fields of Artificial Life, Cognitive Science, and Evolutionary Theory across disciplines. This idea is often conflated with genetic assimilation, and has raised controversy in trans-disciplinary scientific discourse due to the many interpretations it has. This paper revisits the “Baldwin Effect” in Baldwin’s original spirit from a joint historical, theoretical and experimental approach. Social Heredity – the inheritance of cultural knowledge via non-genetic means in Baldwin’s term – is also (...)
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  7.  16
    The ‘Domestication’ of Heredity: The Familial Organization of Geneticists at Cambridge University, 1895–1910.Marsha L. Richmond - 2006 - Journal of the History of Biology 39 (3):565-605.
    In the early years of Mendelism, 1900-1910, William Bateson established a productive research group consisting of women and men studying biology at Cambridge. The empirical evidence they provided through investigating the patterns of hereditary in many different species helped confirm the validity of the Mendelian laws of heredity. What has not previously been well recognized is that owing to the lack of sufficient institutional support, the group primarily relied on domestic resources to carry out their work. Members of the (...)
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  8.  36
    Extended Evolutionary Synthesis: Neither Synthesis Nor Extension.Claudio Ricardo Martins dos Reis & Leonardo Augusto Luvison Araújo - 2020 - Biological Theory 15 (2):57-60.
    The extended evolutionary synthesis intends to offer a new framework for understanding evolution based mainly on empirical and theoretical findings of current studies, including heredity and evolutionary developmental biology. In this essay, we present and develop the following objections about the terminology associated with the EES literature: despite using the term "extension," EES protagonists claim new evolutionary processes, reformulate conceptual networks, and modify central assumptions of the evolutionary synthesis. Therefore, the difference between ES and EES should not be (...)
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  9.  35
    The ‘Domestication’ of Heredity: The Familial Organization of Geneticists at Cambridge University, 1895–1910. [REVIEW]Marsha L. Richmond - 2006 - Journal of the History of Biology 39 (3):565 - 605.
    In the early years of Mendelism, 1900-1910, William Bateson established a productive research group consisting of women and men studying biology at Cambridge. The empirical evidence they provided through investigating the patterns of hereditary in many different species helped confirm the validity of the Mendelian laws of heredity. What has not previously been well recognized is that owing to the lack of sufficient institutional support, the group primarily relied on domestic resources to carry out their work. Members of the (...)
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  10. Presume It Not: True Causes in the Search for the Basis of Heredity.Aaron Novick & Raphael Scholl - 2017 - British Journal for the Philosophy of Science (1):axy001.
    Kyle Stanford has recently given substance to the problem of unconceived alternatives, which challenges the reliability of inference to the best explanation (IBE) in remote domains of nature. Conjoined with the view that IBE is the central inferential tool at our disposal in investigating these domains, the problem of unconceived alternatives leads to scientific anti-realism. We argue that, at least within the biological community, scientists are now and have long been aware of the dangers of IBE. We re-analyze the nineteenth-century (...)
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  11.  43
    Gassendi's atomist account of generation and heredity in plants and animals.Saul Fisher - 2003 - Perspectives on Science 11 (4):484-512.
    In his accounts of plant and animal generation Pierre Gassendi offers a mechanist story of how organisms create offspring to whom they pass on their traits. Development of the new organism is directed by a material “soul” or animula bearing ontogenetic information. Where reproduction is sexual, two sets of material semina and corresponding animulae meet and jointly determine the division, differentiation, and development of matter in the new organism. The determination of inherited traits requires a means of combining or choosing (...)
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  12. Inheritance Systems and the Extended Evolutionary Synthesis.Eva Jablonka & Marion J. Lamb - 2020 - Cambridge University Press.
    Current knowledge of the genetic, epigenetic, behavioural and symbolic systems of inheritance requires a revision and extension of the mid-twentieth-century, gene-based, 'Modern Synthesis' version of Darwinian evolutionary theory. We present the case for this by first outlining the history that led to the neo-Darwinian view of evolution. In the second section we describe and compare different types of inheritance, and in the third discuss the implications of a broad view of heredity for various aspects of evolutionary theory. We end (...)
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  13.  10
    Inheritance Systems and the Extended Synthesis.Eva Jablonka & Marion Lamb - 2020 - Cambridge University Press.
    Current knowledge of the genetic, epigenetic, behavioural and symbolic systems of inheritance requires a revision and extension of the mid-twentieth-century, gene-based, 'Modern Synthesis' version of Darwinian evolutionary theory. We present the case for this by first outlining the history that led to the neo-Darwinian view of evolution. In the second section we describe and compare different types of inheritance, and in the third discuss the implications of a broad view of heredity for various aspects of evolutionary theory. We end (...)
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  14. Critical notice: Cycles of contingency – developmental systems and evolution. [REVIEW]James Griesemer, Matthew H. Haber, Grant Yamashita & Lisa Gannett - 2005 - Biology and Philosophy 20 (2-3):517-544.
    The themes, problems and challenges of developmental systems theory as described in Cycles of Contingency are discussed. We argue in favor of a robust approach to philosophical and scientific problems of extended heredity and the integration of behavior, development, inheritance, and evolution. Problems with Sterelny's proposal to evaluate inheritance systems using his `Hoyle criteria' are discussed and critically evaluated. Additional support for a developmental systems perspective is sought in evolutionary studies of performance and behavior modulation of fitness.
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  15.  18
    The genotype–phenotype distinction: from Mendelian genetics to 21st century biology.Gaëlle Pontarotti, Matteo Mossio & Arnaud Pocheville - unknown
    The Genotype-Phenotype (G-P) distinction was proposed in the context of Mendelian genetics, in the wake of late 19th century studies about heredity. In this paper, we provide a conceptual analysis that highlights that the G-P distinction was grounded on three pillars: observability, transmissibility, and causality. Originally, the genotype is the non-observable and transmissible cause of the phenotype, which is its observable and non-transmissible effect. We argue that the current developments of biology have called the validity of such pillars into (...)
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  16.  46
    Was Samuel Butler Mainly Right About Evolution?Murray Code - 2013 - Cosmos and History 9 (1):73-100.
    Samuel Butler, a contemporary critic of Charles Darwin, proffered an alternative, vitalistic account of evolution. At the same time, he put into question all modern naturalistic treatments of this fundamental idea which presuppose that evolution is mainly a scientific problem. On the contrary, Butler in effect insists, this extremely vague idea calls for not an `explanation' but rather a fairly comprehensive, plausible story that helps elucidate an inherently complex idea. Butler can thus be read as outlining an anthropomorphic metaphorics that (...)
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  17. Developmental Systems Theory.Paul Griffiths & Adam Hochman - 2015 - eLS:1-7.
    Developmental systems theory (DST) is a wholeheartedly epigenetic approach to development, inheritance and evolution. The developmental system of an organism is the entire matrix of resources that are needed to reproduce the life cycle. The range of developmental resources that are properly described as being inherited, and which are subject to natural selection, is far wider than has traditionally been allowed. Evolution acts on this extended set of developmental resources. From a developmental systems perspective, development does not proceed according (...)
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  18.  20
    Semiotics of a Superorganism.J. Scott Turner - 2016 - Biosemiotics 9 (1):85-102.
    Darwinian evolution, as it was first conceived, has two dimensions: adaptation, that is, selection based upon “apt function”, defined as the “good fit” between an organism’s metabolic and biological demands and the environment in which it is embedded; and heredity, the transmissible memory of past apt function. Modern Darwinism has come to focus almost exclusively on hereditary memory, eclipsing the—arguably still-problematic—phenomenon of adaptation. As a result, modern Darwinism retains, at its core, certain incoherencies that, as long as they remain (...)
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  19.  19
    The Missing Two-Thirds of Evolutionary Theory.Robert Brandon & Daniel W. McShea - 2020 - Cambridge University Press.
    In this Element, we extend our earlier treatment of biology's first law. The law says that in any evolutionary system in which there is variation and heredity, there is a tendency for diversity and complexity to increase. The law plays the same role in biology that Newton's first law plays in physics, explaining what biological systems are expected to do when no forces act, in other words, what happens when nothing happens. Here we offer a deeper explanation of certain (...)
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  20.  6
    Germs of death: the problem of Genesis in Jacques Derrida.Mauro Senatore - 2018 - [Albany, NY]: SUNY Press.
    An analysis of Derrida’s early work engaging Plato, Hegel, and the life sciences. Germs of Death explores the idea of genesis, or dissemination, in the early work of Jacques Derrida. Looking at Derrida’s published and unpublished work from “Force and Signification” in 1963 to Glas in 1974, Mauro Senatore traces the development of Derrida’s understanding of genesis both linguistically and biologically, and argues that this topic is an overlooked thread that draws together Derrida’s readings of Plato and Hegel. Demonstrating how (...)
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  21. The nurture of nature: Hereditary plasticity in evolution.Ehud Lamm & Eva Jablonka - 2008 - Philosophical Psychology 21 (3):305 – 319.
    The dichotomy between Nature and Nurture, which has been dismantled within the framework of development, remains embodied in the notions of plasticity and evolvability. We argue that plasticity and evolvability, like development and heredity, are neither dichotomous nor distinct: the very same mechanisms may be involved in both, and the research perspective chosen depends to a large extent on the type of problem being explored and the kinds of questions being asked. Epigenetic inheritance leads to transgenerationally extended plasticity, (...)
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  22.  26
    Towards a Biosemiotic Theory of Evolution.Alexei A. Sharov - 2021 - Biosemiotics 14 (1):101-105.
    The target article by Denis Noble is an excellent overview of the illusions of the Modern Synthesis that still remains in textbooks despite of the recent criticism. Overcoming these illusions shows the active role of organisms in the evolutionary process and accounts for additional mechanisms such as plasticity of embryo development, epigenetic heredity, multilevel selection, Baldwin effect, and niche construction, which are components of the Extended Evolutionary Synthesis. Adding these mechanisms is certainly an important step forward, but I (...)
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  23.  5
    The Fourth Perspective: Evolution and Organismal Agency.Johannes Jaeger - 2023 - In Matteo Mossio (ed.), Organization in Biology. Springer. pp. 159-186.
    This chapter examines the deep connections between biological organization, agency, and evolution by natural selection. Using Griesemer’s account of the reproducer, I argue that the basic unit of evolution is not a genetic replicator, but a complex hierarchical life cycle. Understanding the self-maintaining and self-proliferating properties of evolvable reproducers requires an organizational account of ontogenesis and reproduction. This leads us to an extended and disambiguated set of minimal conditions for evolution by natural selection—including revised or new principles of (...), variation, and ontogenesis. More importantly, the continuous maintenance of biological organization within and across generations implies that all evolvable systems are agents or contain agents among their parts. This means that we ought to take agency seriously—to better understand the concept and its role in explaining biological phenomena—if we aim to obtain an organismic theory of evolution in the original spirit of Darwin’s struggle for existence. This kind of understanding must rely on an agential perspective on evolution, complementing and succeeding existing structural, functional, and processual approaches. I sketch a tentative outline of such an agential perspective and present a survey of methodological and conceptual challenges that will have to be overcome if we are to properly implement it. (shrink)
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  24. The ingredients for a postgenomic synthesis of nature and nurture.Karola Stotz - 2008 - Philosophical Psychology 21 (3):359 – 381.
    This paper serves as an introduction to the special issue on “Reconciling Nature and Nurture in Behavior and Cognition Research” and sets its agenda to resolve the 'interactionist' dichotomy of nature as the genetic, and stable, factors of development, and nurture as the environmental, and plastic influences. In contrast to this received view it promotes the idea that all traits, no matter how developmentally fixed or universal they seem, contingently develop out of a single-cell state through the interaction of a (...)
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  25.  10
    William Keith Brooks and the naturalist’s defense of Darwinism in the late-nineteenth century.Richard Nash - 2015 - History and Philosophy of the Life Sciences 37 (2):158-179.
    William Keith Brooks was an American zoologist at Johns Hopkins University from 1876 until his death in 1908. Over the course of his career, Brooks staunchly defended Darwinism, arguing for the centrality of natural selection in evolutionary theory at a time when alternative theories, such as neo-Lamarckism, grew prominent in American biology. In his book The Law of Heredity, Brooks addressed problems raised by Darwin’s theory of pangenesis. In modifying and developing Darwin’s pangenesis, Brooks proposed a new theory of (...)
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  26.  8
    Was Samuel Butler Mainly Right About Evolution? Part I.Murray Code - 2013 - Cosmos and History : The Journal of Natural and Social Philosophy 9 (1):73-100.
    Samuel Butler, a contemporary critic of Charles Darwin, proffered an alternative, vitalistic account of evolution. At the same time, he put into question all modern naturalistic treatments of this fundamental idea which presuppose that evolution is mainly a scientific problem. On the contrary, Butler in effect insists, this extremely vague idea calls for not an `explanation' but rather a fairly comprehensive, plausible story that helps elucidate an inherently complex idea. Butler can thus be read as outlining an anthropomorphic metaphorics that (...)
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  27.  15
    The Darwin Is in the Details.Michael Gurvitch - 2021 - Techné: Research in Philosophy and Technology 25 (1):26-71.
    Electronics can be defined as electromagnetic technology dealing with information, and meta-electronics as a field encompassing all the synergistic technologies in which electronics plays a dominant role. Examining the broad field corresponding to this definition we realize that its history starts some seventy years earlier than the customarily accepted birth of electronics, and, what is more significant, that electronics undergoes a true evolution. This new evolution creates rich, diverse structures similar to those created by the biological evolution. Like biology, electronics (...)
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  28.  30
    The Evolution of Ecosystem Phenotypes.Sébastien Ibanez - 2020 - Biological Theory 15 (2):91-106.
    Evolution by natural selection has been extended to several supraorganismic levels, but whether it can apply to ecosystems remains controversial on two main counts. First, local ecosystems are loosely individuated, so that it is unclear how they manifest heredity and fitness. Second, even if they did, the meta-ecosystem formed by this population of local ecosystems will also suffer from a very low degree of cohesion, which will jeopardize any ENS. We suggest a way to overcome both issues, focusing (...)
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  29.  18
    Selezione organica ed eredità sociale. Sguardo sul pensiero evoluzionistico di James Mark Baldwin.Chiara Pertile - 2018 - Nóema 9.
    In the current evolutionary debate, the «Baldwin Effect» is increasingly mentioned. The aim of this article is to teoretically analyze the original form of this concept, initially called “organic selection”, through the thought of one of its main advocates: James Mark Baldwin. His evolutionary observations, almost forgotten in Modern Synthesis’s refolmulations of «Baldwin Effect», appear widely original in view of contemporary attempt to «extend» the darwinian paradigm.
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  30.  9
    Heredity and Heritability.Richard C. Lewontin - 2008 - In Sahorta Sarkar & Anya Plutynski (eds.), Companion to the Philosophy of Biology. Blackwell. pp. 40–57.
    This chapter contains section titled: The Relation of Genotype to Phenotype Statistical Approaches to the Study of Quantitative Characters Problems Raised by Statistical Methodologies Making Quantitative Trait Genes Real Bibliography.
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  31.  1
    Heredity, correlation and sex differences in school abilities: studies from the Department of Educational Psychology at Teachers College, Columbia University.Edward L. Thorndike - 1903 - Berlin: Mayer & Müller.
    Excerpt from Heredity, Correlation and Sex Differences in School Abilities: Studies From the Department of Educational Psychology at Teachers College, Columbia University The Relationships between the Different Abilities Involved in the Study of Arithmetic. By W. A. Fox and E. L. Thorndike. About the Publisher Forgotten Books publishes hundreds of thousands of rare and classic books. Find more at www.forgottenbooks.com This book is a reproduction of an important historical work. Forgotten Books uses state-of-the-art technology to digitally reconstruct the work, (...)
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  32.  96
    Extended music cognition.Luke Kersten - 2017 - Philosophical Psychology 30 (8):1078-1103.
    Discussions of extended cognition have increasingly engaged with the empirical and methodological practices of cognitive science and psychology. One topic that has received increased attention from those interested in the extended mind is music cognition. A number of authors have argued that music not only shapes emotional and cognitive processes, but also that it extends those processes beyond the bodily envelope. The aim of this paper is to evaluate the case for extended music cognition. Two accounts are (...)
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  33.  35
    Heredity, environment, and the question "how?".Anne Anastasi - 1958 - Psychological Review 65 (4):197-208.
  34. Heredity" and "The Evolution of Ethics".Edward O. Wilson & Michael Ruse - 2013 - In Jeffrey E. Foss (ed.), Science and the World: Philosophical Approaches. Peterborough, CA: Broadview Press.
     
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  35. Heredity" and "The Evolution of Ethics".Edward O. Wilson & Michael Ruse - 2013 - In Jeffrey E. Foss (ed.), Science and the World: Philosophical Approaches. Peterborough, CA: Broadview Press.
     
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  36. Extended knowledge, the recognition heuristic, and epistemic injustice.Mark Alfano & Joshua August Skorburg - 2018 - In Duncan Pritchard, Jesper Kallestrup, Orestis Palermos & Adam Carter (eds.), Extended Knowledge. Oxford University Press. pp. 239-256.
    We argue that the interaction of biased media coverage and widespread employment of the recognition heuristic can produce epistemic injustices. First, we explain the recognition heuristic as studied by Gerd Gigerenzer and colleagues, highlighting how some of its components are largely external to, and outside the control of, the cognitive agent. We then connect the recognition heuristic with recent work on the hypotheses of embedded, extended, and scaffolded cognition, arguing that the recognition heuristic is best understood as an instance (...)
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  37.  7
    Heredity as a problem. On Claude Bernard’s failed attempts at resolution.Laurent Loison - 2023 - History and Philosophy of the Life Sciences 45 (1):1-21.
    Heredity has been dismissed as an insignificant object in Claude Bernard’s physiology, and the topic is usually ignored by historians. Yet, thirty years ago, Jean Gayon demonstrated that Bernard did elaborate on the subject. The present paper aims at reassessing the issue of heredity in Claude Bernard’s project of a “general physiology”. My first claim is that Bernard’s interest in heredity was linked to his ambitious goal of redefining general physiology in relation to morphology. In 1867, not (...)
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  38.  81
    The Extended Mind.Georg Theiner - 2017 - In Bryan S. Turner (ed.), The Wiley-Blackwell Encyclopedia of Social Theory. Hoboken: Wiley-Blackwell.
    The ‘extended mind’ thesis asserts that cognitive processes are not bound by the skull or even skin of biological individuals, but actively incorporate environmental structures such as symbols, tools, artifacts, media, cultural practices, norms, groups, or institutions. By distributing cognition across space, time, and people in canny ways, we circumvent or overcome the biological limitations of our brains. Human beings are creative, albeit opportunistic experts in cognitive ‘self-transcendence.’ This entry surveys discussions of EM in philosophy of mind and cognitive (...)
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  39.  35
    Should “Heredity” and “Inheritance” Be Biological Terms? William Bateson’s Change of Mind as a Historical and Philosophical Problem.Gregory Radick - 2012 - Philosophy of Science 79 (5):714-724.
    In 1894, William Bateson objected to the terms “heredity” and “inheritance” in biology, on grounds of contamination with misleading notions from the everyday world. Yet after the rediscovery of Mendel's work in the spring of 1900, Bateson promoted that work as disclosing the “principles of heredity.” For historians of science, Bateson's change of mind provides a new angle on these terms at a crucial moment in their history. For philosophers of science, the case can serve as a reminder (...)
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  40.  22
    Extended cognition and fixed properties: steps to a third-wave version of extended cognition.Michael David Kirchhoff - 2012 - Phenomenology and the Cognitive Sciences 11 (2):287–308.
    This paper explores several paths a distinctive third wave of extended cognition might take. In so doing, I address a couple of shortcomings of first- and second-wave extended cognition associated with a tendency to conceive of the properties of internal and external processes as fixed and non-interchangeable. First, in the domain of cognitive transformation, I argue that a problematic tendency of the complementarity model is that it presupposes that socio-cultural resources augment but do not significantly transform the brain’s (...)
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  41.  27
    Heredity and its entities around 1900.Hans-Jörg Rheinberger - 2008 - Studies in History and Philosophy of Science Part A 39 (3):370-374.
    This paper aims to give an impression of how biologists, at the turn of the twentieth century, came to conceptualize and define the hidden entities presumed to govern the process of hereditary transmission. With that, the stage was set for the emergence of genetics as a biological discipline that came to dominate the life sciences of the twentieth century. The annus mirabilis of 1900, with its triple re-appreciation of Gregor Mendel’s work by the botanists Hugo de Vries, Carl Correns, and (...)
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  42.  47
    Extending the predictive mind.Andy Clark - unknown
    How do intelligent agents spawn and exploit integrated processing regimes spanning brain, body, and world? The answer may lie in the ability of the biological brain to select actions and policies in the light of counterfactual predictions – predictions about what kinds of futures will result if such-and-such actions are launched. Appeals to the minimization of ‘counterfactual prediction errors’ (the ones that would result under various scenarios) already play a leading role in attempts to apply the basic toolkit of the (...)
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  43.  20
    Making Heredity Matter: Samuel Butler’s Idea of Unconscious Memory.Cristiano Turbil - 2018 - Journal of the History of Biology 51 (1):7-29.
    Butler’s idea of evolution was developed over the publication of four books, several articles and essays between 1863 and 1890. These publications, although never achieving the success expected by Butler, proposed a psychological elaboration of evolution, called ‘unconscious memory’. This was strongly in contrast with the materialistic approach suggested by Darwin’s natural selection. Starting with a historical introduction, this paper aspires to ascertain the logic, meaning and significance of Butler’s idea of ‘unconscious memory’ in the post-Darwinian physiological and psychological Pan-European (...)
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  44.  22
    Heredity/Development in the United States, circa 1900.Jane Maienschein - 1987 - History and Philosophy of the Life Sciences 9 (1):79 - 93.
    Historians have emphasized the appearance of a productive research program in genetics after 1910, and philosophers and biologists have considered endorsement of genetics as a progressive move, indeed as a starting point for modern experimental biology. These efforts focus on what biology had changed to. This paper examines the condition from which biology moved, stressing the way in which Americans held heredity and development as a natural, intimately intertwined couple. Heredity accounts for likenesses, development for variation, and the (...)
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  45.  20
    Phrenology, heredity and progress in George Combe's Constitution of Man.Bill Jenkins - 2015 - British Journal for the History of Science 48 (3):455-473.
    TheConstitution of Manby George Combe (1828) was probably the most influential phrenological work of the nineteenth century. It not only offered an exposition of the phrenological theory of the mind, but also presented Combe's vision of universal human progress through the inheritance of acquired mental attributes. In the decades before the publication of Darwin'sOrigin of Species, theConstitutionwas probably the single most important vehicle for the dissemination of naturalistic progressivism in the English-speaking world. Although there is a significant literature on the (...)
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  46.  28
    Human heredity after 1945: Moving populations centre stage.Jenny Bangham & Soraya de Chadarevian - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 47:45-49.
  47. Extending the Dynamics of Reason.Michael Friedman - 2011 - Erkenntnis 75 (3):431-444.
    What I call the dynamics of reason is a post-Kuhnian approach to the history and philosophy of science articulating a relativized and historicized version of the Kantian conception of the rationality and objectivity of the modern physical sciences. I here discuss two extensions of this approach. I argue that, although the relativized standards of rationality in question change over time, the particular way in which they do this still preserves the trans-historical rationality of the entire process. I also make a (...)
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  48.  14
    From Heredity Theory to Vererbung: The Transmission Problem, 1850-1915.Frederick B. Churchill - 1987 - Isis 78 (3):337-364.
  49.  41
    The heredity of abilities.Charles Spearman - 1914 - The Eugenics Review 6 (3):219.
  50.  52
    Heredity and heritability.Stephen M. Downes - 2008 - Stanford Encyclopedia of Philosophy.
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