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  1. The Structure of Explanations and Counter-Explanations of Homosexuality.Fabrizzio Mc Manus - 2012 - Open Journal of Philosophy 2 (4):235-243.
    The aim of this paper is to revisit an ongoing controversy within the so called “Science Wars”; more specifically, I will address a particular topic within the “human nature” debate: the ontological and epistemological status of homosexuality. I claim that, in this particular chapter of the “Science Wars”, we are continually left in an explanatory impasse even when more data are collected, more rigorous experimental techniques are developed, more subtle arguments are offered and more pluralistic narratives are told. My diagnosis (...)
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  • Genidentity and Biological Processes.Thomas Pradeu - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    A crucial question for a process view of life is how to identify a process and how to follow it through time. The genidentity view can contribute decisively to this project. It says that the identity through time of an entity X is given by a well-identified series of continuous states of affairs. Genidentity helps address the problem of diachronic identity in the living world. This chapter describes the centrality of the concept of genidentity for David Hull and proposes an (...)
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  • A Manifesto for a Processual Philosophy of Biology.John A. Dupre & Daniel J. Nicholson - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press.
    This chapter argues that scientific and philosophical progress in our understanding of the living world requires that we abandon a metaphysics of things in favour of one centred on processes. We identify three main empirical motivations for adopting a process ontology in biology: metabolic turnover, life cycles, and ecological interdependence. We show how taking a processual stance in the philosophy of biology enables us to ground existing critiques of essentialism, reductionism, and mechanicism, all of which have traditionally been associated with (...)
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  • Developmental Systems Theory as a Process Theory.Paul Edmund Griffiths & Karola Stotz - 2018 - In Daniel J. Nicholson & John Dupré (eds.), Everything Flows: Towards a Processual Philosophy of Biology. Oxford, United Kingdom: Oxford University Press. pp. 225-245.
    Griffiths and Russell D. Gray (1994, 1997, 2001) have argued that the fundamental unit of analysis in developmental systems theory should be a process – the life cycle – and not a set of developmental resources and interactions between those resources. The key concepts of developmental systems theory, epigenesis and developmental dynamics, both also suggest a process view of the units of development. This chapter explores in more depth the features of developmental systems theory that favour treating processes as fundamental (...)
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  • On Griffiths and Gray’s Concept of Expanded and Diffused Inheritance.Francesca Merlin - 2010 - Biological Theory 5 (3):206-215.
    Developmental System Theory is a theoretical reinterpretation of biological phenomena challenging the conventional gene-centered account of development and evolution. In this paper, I focus on Griffiths and Gray’s version of Developmental Systems Theory and I particularly analyze their reconceptualization of inheritance. First, I present their concept of expanded and diffused inheritance; then, I examine and criticize their refusal of the multiple inheritance system model; finally, I present and contrast Griffiths and Gray’s extension of what they call the “causal parity thesis” (...)
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  • The organism in developmental systems theory.Thomas Pradeu - 2010 - Biological Theory 5 (3):216-222.
    In this paper, I address the question of what the Developmental Systems Theory (DST) aims at explaining. I distinguish two lines of thought in DST, one which deals specifically with development, and tries to explain the development of the individual organism, and the other which presents itself as a reconceptualization of evolution, and tries to explain the evolution of populations of developmental systems (organism-environment units). I emphasize that, despite the claiming of the contrary by DST proponents, there are two very (...)
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  • The Organism in Developmental Systems Theory.Thomas Pradeu - 2009 - Biological Theory 5 (3):216-222.
    In this article, I address the question of what Developmental Systems Theory aims at explaining. I distinguish two lines of thought in DST, one that deals specifically with development and tries to explain the development of the individual organism, and the other that presents itself as a reconceptualization of evolution and tries to explain the evolution of populations of developmental systems. I emphasize that, despite the claim of the contrary by DST proponents, there are two very different definitions of the (...)
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  • Two Kinds of Causal Explanation.George Botterill - 2010 - Theoria 76 (4):287-313.
    To give a causal explanation is to give information about causal history. But a vast amount of causal history lies behind anything that happens, far too much to be included in any intelligible explanation. This is the Problem of Limitation for explanatory information. To cope with this problem, explanations must select for what is relevant to and adequate for answering particular inquiries. In the present paper this idea is used in order to distinguish two kinds of causal explanation, on the (...)
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  • Smart Environments.Shane Ryan, S. Orestis Palermos & Mirko Farina - forthcoming - Social Epistemology.
    This paper proposes epistemic environmentalism as a novel framework for accounting for the contribution of the environment – broadly construed – to epistemic standings and which can be used to improve or protect epistemic environments. The contribution of the environment to epistemic standings is explained through recent developments in epistemology and cognitive science, including embodied cognition, embedded cognition, extended cognition and distributed cognition. The paper examines how these developments support epistemic environmentalism, as well as contributes theoretical resources to make epistemic (...)
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  • Morality, Modality, and Humans with Deep Cognitive Impairments.William Gildea - 2023 - Philosophical Quarterly 74 (2):546-568.
    Philosophers struggle to explain why human beings with deep cognitive impairments have a higher moral status than certain non-human animals. Modal personism promises to solve this problem. It claims that humans who lack the capacities of “personhood” and the potential to develop them nonetheless could have been persons. I argue that modal personism has poor prospects because it's hard to see how we could offer a plausible account of modal personhood. I search for an adequate understanding of modal personhood by (...)
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  • Causation and Causal Selection in the Biopsychosocial Model of Health and Disease.Hane Htut Maung - 2021 - European Journal of Analytic Philosophy 17 (2):5-27.
    In The Biopsychosocial Model of Health and Disease, Derek Bolton and Grant Gillett argue that a defensible updated version of the biopsychosocial model requires a metaphysically adequate account of disease causation that can accommodate biological, psychological, and social factors. This present paper offers a philosophical critique of their account of biopsychosocial causation. I argue that their account relies on claims about the normativity and the semantic content of biological information that are metaphysically contentious. Moreover, I suggest that these claims are (...)
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  • Object spaces: An organizing strategy for biological theorizing.Beckett Sterner - 2009 - Biological Theory 4 (3):280-286.
    A classic analytic approach to biological phenomena seeks to refine definitions until classes are sufficiently homogenous to support prediction and explanation, but this approach founders on cases where a single process produces objects with similar forms but heterogeneous behaviors. I introduce object spaces as a tool to tackle this challenging diversity of biological objects in terms of causal processes with well-defined formal properties. Object spaces have three primary components: (1) a combinatorial biological process such as protein synthesis that generates objects (...)
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  • “Kinds” of Emotion.Teresa Chandler - 2001 - Biology and Philosophy 16 (1):109-115.
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  • Darwin‘s Theory – The Semantic View. [REVIEW]Paul E. Griffiths - 1997 - Biology and Philosophy 12 (3):421-426.
  • Culture or Biology? If this sounds interesting, you might be confused.Sebastian Watzl - 2019 - In Jaan Valsinger (ed.), Social Philosophy of Science for the Social Sciences. Springer. pp. 45-71.
    Culture or Biology? The question can seem deep and important. Yet, I argue in this chapter, if you are enthralled by questions about our biological differences, then you are probably confused. My goal is to diagnose the confusion. In debates about the role of biology in the social world it is easy to ask the wrong questions, and it is easy to misinterpret the scientific research. We are intuitively attracted to what is called psychological essentialism, and therefore interpret what is (...)
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  • Individualism and evolutionary psychology (or: In defense of "narrow" functions).David J. Buller - 1997 - Philosophy of Science 64 (1):74-95.
    Millikan and Wilson argue, for different reasons, that the essential reference to the environment in adaptationist explanations of behavior makes (psychological) individualism inconsistent with evolutionary psychology. I show that their arguments are based on misinterpretations of the role of reference to the environment in such explanations. By exploring these misinterpretations, I develop an account of explanation in evolutionary psychology that is fully consistent with individualism. This does not, however, constitute a full-fledged defense of individualism, since evolutionary psychology is only one (...)
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  • Matters of demarcation: Philosophy, biology, and the evolving fraternity between disciplines.Andrew S. Yang - 2008 - International Studies in the Philosophy of Science 22 (2):211 – 225.
    The influence that philosophy of science has had on scientific practice is as controversial as it is undeniable, especially in the case of biology. The dynamic between philosophy and biology as disciplines has developed along two different lines that can be characterized as 'paternal', on the one hand, and more 'fraternal', on the other. The role Popperian principles of demarcation and falsifiability have played in both the systematics community as well as the ongoing evolution-creation debates illustrate these contrasting forms of (...)
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  • Explaining Human Diversity: the Need to Balance Fit and Complexity.Armin W. Schulz - 2021 - Review of Philosophy and Psychology 14 (2):1-19.
    While the existence of human cognitive and behavioral diversity is now widely recognized, it is not yet well established how to explain this diversity. In particular, it is still unclear how to determine whether any given instance of human cognitive and behavioral diversity is due to a common psychology that is merely “triggered” differently in different bio-cultural environments, or whether it is due to deeply and fundamentally different psychologies. This paper suggests that, to answer this question, we need to employ (...)
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  • Explaining Human Diversity: the Need to Balance Fit and Complexity.Armin W. Schulz - 2021 - Review of Philosophy and Psychology 14 (2):457-475.
    While the existence of human cognitive and behavioral diversity is now widely recognized, it is not yet well established how to explain this diversity. In particular, it is still unclear how to determine whether any given instance of human cognitive and behavioral diversity is due to a common psychology that is merely “triggered” differently in different bio-cultural environments, or whether it is due to deeply and fundamentally different psychologies. This paper suggests that, to answer this question, we need to employ (...)
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  • Causation in biology: Stability, specificity, and the choice of levels of explanation.James Woodward - 2010 - Biology and Philosophy 25 (3):287-318.
    This paper attempts to elucidate three characteristics of causal relationships that are important in biological contexts. Stability has to do with whether a causal relationship continues to hold under changes in background conditions. Proportionality has to do with whether changes in the state of the cause “line up” in the right way with changes in the state of the effect and with whether the cause and effect are characterized in a way that contains irrelevant detail. Specificity is connected both to (...)
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  • The maintenance of behavioral diversity in human societies.Christopher Wills - 1994 - Behavioral and Brain Sciences 17 (4):638-639.
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  • Reintroducing group selection to the human behavioral sciences.David Sloan Wilson & Elliott Sober - 1994 - Behavioral and Brain Sciences 17 (4):585-608.
    In both biology and the human sciences, social groups are sometimes treated as adaptive units whose organization cannot be reduced to individual interactions. This group-level view is opposed by a more individualistic one that treats social organization as a byproduct of self-interest. According to biologists, group-level adaptations can evolve only by a process of natural selection at the group level. Most biologists rejected group selection as an important evolutionary force during the 1960s and 1970s but a positive literature began to (...)
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  • Is “meme” a new “idea”? Reflections on Aunger. [REVIEW]John S. Wilkins - 2005 - Biology and Philosophy 20 (2-3):585-598.
    Memes are an idea whose time has come, again, and again, and again, but which has never really made it beyond metaphor. Anthropologist Robert Aunger’s book 'The Electric Meme' is a new attempt to take it to the next stage, setting up a research program with proper models and theoretical entities. He succeeds partially, with some contributions to the logic of replication, but in the end, his proposal for the substrate of memes is a non-solution to a central problem of (...)
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  • Incest, Incest Avoidance, and Attachment: Revisiting the Westermarck Effect.Robert A. Wilson - 2019 - Philosophy of Science 86 (3):391-411.
    This article defends a version of the Westermarck Effect, integrating existing clinical, biological, and philosophical dimensions to incest avoidance. By focusing on care-based attachment in primates, my formulation of the effect suggests the power of a phylogenetic argument widely accepted by primatologists but not by cultural anthropologists. Identifying postadoption incest as a phenomenon with underexplored evidential value, the article sketches an explanatory strategy for reconciling the effect with the clinical reality of incest, concluding with an explicit argument against culture-first or (...)
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  • Group selection: The theory replaces the bogey man.David Sloan Wilson & Elliott Sober - 1994 - Behavioral and Brain Sciences 17 (4):639-654.
    In both biology and the human sciences, social groups are sometimes treated as adaptive units whose organization cannot be reduced to individual interactions. This group-level view is opposed by a more individualistic one that treats social organization as a byproduct of self-interest. According to biologists, group-level adaptations can evolve only by a process of natural selection at the group level. Most biologists rejected group selection as an important evolutionary force during the 1960s and 1970s but a positive literature began to (...)
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  • Bioknowledge with Burian. [REVIEW]Robert A. Wilson - 2007 - Biology and Philosophy 22 (1):131-139.
  • Evolution, Development, and Human Social Cognition.Tyler J. Wereha & Timothy P. Racine - 2012 - Review of Philosophy and Psychology 3 (4):559-579.
    Explaining the causal origins of what are taken to be uniquely human capacities for understanding the mind in the first years of life is a primary goal of social cognitive development research, which concerns so called “theory of mind” or “mindreading” skills. We review and discuss particular examples of this research in the context of its underlying evolutionary conceptual framework known as the neo-Darwinian modern synthesis. It is increasingly recognized that the modern synthesis is limited in its neglect of developmental (...)
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  • Irreducible complexity and the problem of biochemical emergence.Bruce H. Weber - 1999 - Biology and Philosophy 14 (4):593-605.
  • Critical Notice: D arwinian Reductionism.Marcel Weber - 2008 - Biology and Philosophy 23 (1):143-152.
    This notice provides a critical discussion of some of the issues from Alex Rosenberg’s Darwinian Reductionism, in particular proper functions and the relationship of proximate and ultimate biology, developmental programs and genocentrism, biological laws, the principle of natural selection as a fundamental law, genetic determinism, and the definition of “reductionism.”.
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  • Development and microbiology.Aja Watkins - 2021 - Biology and Philosophy 36 (4):1-30.
    On the basis of findings from developmental biology, some researchers have argued that evolutionary theory needs to be significantly updated. Advocates of such a “developmental update” have, among other things, suggested that we need to re-conceptualize units of selection, that we should expand our view of inheritance to include environmental as well as genetic and epigenetic factors, that we should think of organisms and their environment as involved in reciprocal causation, and that we should reevaluate the rates of evolutionary change. (...)
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  • Rethinking hereditary relations: the reconstitutor as the evolutionary unit of heredity.Sophie J. Veigl, Javier Suárez & Adrian Stencel - 2022 - Synthese 200 (5):1-42.
    This paper introduces the reconstitutor as a comprehensive unit of heredity within the context of evolutionary research. A reconstitutor is the structure resulting from a set of relationships between different elements or processes that are actively involved in the recreation of a specific phenotypic variant in each generation regardless of the biomolecular basis of the elements or whether they stand in a continuous line of ancestry. Firstly, we justify the necessity of introducing the reconstitutor by showing the limitations of other (...)
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  • Reflecting on complexity of biological systems: Kant and beyond?Gertrudis Van de Vijver, Linda Van Speybroeck & Windy Vandevyvere - 2003 - Acta Biotheoretica 51 (2):101-140.
    Living organisms are currently most often seen as complex dynamical systems that develop and evolve in relation to complex environments. Reflections on the meaning of the complex dynamical nature of living systems show an overwhelming multiplicity in approaches, descriptions, definitions and methodologies. Instead of sustaining an epistemic pluralism, which often functions as a philosophical armistice in which tolerance and so-called neutrality discharge proponents of the burden to clarify the sources and conditions of agreement and disagreement, this paper aims at analysing: (...)
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  • Discussion: Screening-off and natural selection.Wim J. van der Steen - 1996 - Philosophy of Science 63 (1):115-121.
    Sober and Brandon et al. disagree about the role of screening-off in the appraisal of theories of natural selection. Some problems disregarded by them are unearthed in this discussion note.
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  • A Plea for Wild Philosophy.Menno van Calcar - 2023 - Teaching Philosophy 46 (3):341-366.
    Teaching philosophy online in secondary schools differs from offline teaching. The explanations usually offered for this difference show the cognitivist assumptions of mainstream pre-university philosophy education, meaning that philosophy education assumes that the aim of its practice is the enhancement of internal mental abilities. This paper argues that this view of the goal of education is unwarranted and unnecessarily restrictive, and that it implies an undesirable dichotomy between learning to be competent and being competent. An alternative, based on ecological and (...)
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  • Niche Construction and Conceptual Change in Evolutionary Biology.Tobias Uller & Heikki Helanterä - 2019 - British Journal for the Philosophy of Science 70 (2):351-375.
    The theoretical status of ‘niche construction’ in evolution is intensely debated. Here we substantiate the reasons for different interpretations. We consider two concepts of niche construction brought to bear on evolutionary theory; one that emphasizes how niche construction contributes to selection and another that emphasizes how it contributes to development and inheritance. We explain the rationale for claims that selective and developmental niche construction motivate conceptual change in evolutionary biology and the logic of those who reject these claims. Our analysis (...)
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  • What is genethics?T. Lewens - 2004 - Journal of Medical Ethics 30 (3):326-328.
    “Genethics” is a neologism probably best kept within scare quotes. Yet now that genethics has a Companion—Companion to Genethics, edited by Justine Burley and John Harris, Oxford, Blackwell, 2002, 489 pages, £65—it would appear that we can no longer keep our gloves on when handling the term. Burley and Harris’s enormous collection contains 34 articles, an introduction and an afterword.*Most of the contributions are short , many are new, a few are lifted from earlier work and some are lightly revised (...)
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  • Vehicles all the way down?Nicholas S. Thompson - 1994 - Behavioral and Brain Sciences 17 (4):638-638.
  • The Current Status of the Philosophy of Biology.Peter Takacs & Michael Ruse - 2013 - Science & Education 22 (1):5-48.
  • Memory, Sign Systems, and Self-Reproductive Processes.Anton Sukhoverkhov - 2010 - Biological Theory 5 (2):161-166.
    This article presents a project of general theory of memory that embraces different types of memory: physical, biological, and social. The theory of memory presented here revises and unifies the general theory of sign systems and the theory of information, because memory processes in biological and social systems are informational processes that continuously (re)construct and are constructed by sign systems. This article shows that memory cannot be reduced only to inherited information and material structures that “keep,” “represent,” or “carry” that (...)
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  • Memory, Sign Systems, and Self-Reproductive Processes.Anton Sukhoverkhov - 2010 - Biological Theory 5 (2):161-166.
    This article presents a project of general theory of memory that embraces different types of memory: physical, biological, and social. The theory of memory presented here revises and unifies the general theory of sign systems and the theory of information, because memory processes in biological and social systems are informational processes that continuously construct and are constructed by sign systems. This article shows that memory cannot be reduced only to inherited information and material structures that “keep,” “represent,” or “carry” that (...)
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  • Human nature and cognitive–developmental niche construction.Karola Stotz - 2010 - Phenomenology and the Cognitive Sciences 9 (4):483-501.
    Recent theories in cognitive science have begun to focus on the active role of organisms in shaping their own environment, and the role of these environmental resources for cognition. Approaches such as situated, embedded, ecological, distributed and particularly extended cognition look beyond ‘what is inside your head’ to the old Gibsonian question of ‘what your head is inside of’ and with which it forms a wider whole—its internal and external cognitive niche. Since these views have been treated as a radical (...)
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  • Extended evolutionary psychology: the importance of transgenerational developmental plasticity.Karola Stotz - 2014 - Frontiers in Psychology 5.
    What kind mechanisms one deems central for the evolutionary process deeply influences one's understanding of the nature of organisms, including cognition. Reversely, adopting a certain approach to the nature of life and cognition and the relationship between them or between the organism and its environment should affect one's view of evolutionary theory. This paper explores this reciprocal relationship in more detail. In particular it argues that the view of living and cognitive systems, especially humans, as deeply integrated beings embedded in (...)
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  • Varieties of parity.Ulrich E. Stegmann - 2012 - Biology and Philosophy 27 (6):903-918.
    A central idea of developmental systems theory is ‘parity’ or ‘symmetry’ between genes and non-genetic factors of development. The precise content of this idea remains controversial, with different authors stressing different aspects and little explicit comparisons among the various interpretations. Here I characterise and assess several influential versions of parity.
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  • Understanding life: Recent work in philosophy of biology.Kim Sterelny - 1995 - British Journal for the Philosophy of Science 46 (2):155-183.
    This paper surveys recent philosophy of biology. It aims to introduce outsiders to the field to the recent literature (which is reviewed in the footnotes) and the main recent debates. I concentrate on three of these: recent critiques of the replicator/vehicle distinction and its application to the idea of the gene as the unit of section; the recent defences of group selection and the idea that standard alternatives to group selection are in fact no more than a disguised form of (...)
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  • Universal biology. [REVIEW]Kim Sterelny - 1997 - British Journal for the Philosophy of Science 48 (4):587 - 601.
  • The "genetic program" program: A commentary on Maynard Smith on information in biology.Kim Sterelny - 2000 - Philosophy of Science 67 (2):195-201.
    In many texts on evolution the reader will find a characteristic depiction of inheritance and evolution, one showing the generations of an evolving population linked only by a causal flow from genotype to genotype. On this view, the genotype of each organism in this population plays a dual role as both the motor of individual development and as the sole causal channel across the generations. This picture is known to be literally false. In many species, parents exert direct causal influence (...)
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  • The extended replicator.Kim Sterelny, Kelly C. Smith & Michael Dickison - 1996 - Biology and Philosophy 11 (3):377-403.
    This paper evaluates and criticises the developmental systems conception of evolution and develops instead an extension of the gene's eye conception of evolution. We argue (i) Dawkin's attempt to segregate developmental and evolutionary issues about genes is unsatisfactory. On plausible views of development it is arbitrary to single out genes as the units of selection. (ii) The genotype does not carry information about the phenotype in any way that distinguishes the role of the genes in development from that other factors. (...)
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  • Review: Universal Biology. [REVIEW]Kim Sterelny - 1997 - British Journal for the Philosophy of Science 48 (4):587 - 601.
  • Rethinking Inheritance.Kim Sterelny - 2007 - Biological Theory 2 (3):215-217.
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  • Review article. Universal biology.Kim Sterelny - 1997 - British Journal for the Philosophy of Science 48 (4):587-601.