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Lifelines: biology beyond determinism

New York: Oxford University Press (1998)

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  1. Intelligent‐Design Theory: An Argument for Biotic Laws.Uko Zylstra - 2004 - Zygon 39 (1):175-191.
    A central thesis of intelligent‐design theorists is that physical and chemical laws and chance are insufficient to account for irreducibly complex biological structures and that intelligent design is necessary to account for such phenomena. This assertion, however, still implies a reductionist ontology. We need to recognize that reality displays multiple modes of being beyond simply chemical and physical modes of being, each of which is governed by laws for that mode of being. This essay argues for an alternate framework for (...)
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  • Life after Kant: Natural purposes and the autopoietic foundations of biological individuality. [REVIEW]Andreas Weber & Francisco J. Varela - 2002 - Phenomenology and the Cognitive Sciences 1 (2):97-125.
    This paper proposes a basic revision of the understanding of teleology in biological sciences. Since Kant, it has become customary to view purposiveness in organisms as a bias added by the observer; the recent notion of teleonomy expresses well this as-if character of natural purposes. In recent developments in science, however, notions such as self-organization (or complex systems) and the autopoiesis viewpoint, have displaced emergence and circular self-production as central features of life. Contrary to an often superficial reading, Kant gives (...)
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  • Advancing the rationality debate.Keith E. Stanovich & Richard F. West - 2000 - Behavioral and Brain Sciences 23 (5):701-717.
    In this response, we clarify several misunderstandings of the understanding/acceptance principle and defend our specific operationalization of that principle. We reiterate the importance of addressing the problem of rational task construal and we elaborate the notion of computational limitations contained in our target article. Our concept of thinking dispositions as variable intentional-level styles of epistemic and behavioral regulation is explained, as is its relation to the rationality debate. Many of the suggestions of the commentators for elaborating two-process models are easily (...)
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  • Blessed, precious mistakes: deconstruction, evolution, and New Atheism in America.Donovan O. Schaefer - 2014 - International Journal for Philosophy of Religion 76 (1):75-94.
    This paper explores the ways that Daniel C. Dennett’s bestselling 2006 book Breaking the Spell traffics in a set of distinctly American presumptions about the relationship between religion and science. In this Americanized atheism, religion is presumed to be a set of logically organized propositional beliefs–a misbegotten science in need of correction or elimination. I show that a convergent critique, drawing on both evolutionary theory and deconstruction, highlights the limitations of this approach. This convergence highlights the theme of accident in (...)
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  • Time Arrows and Determinism in Biology.Bartolomé Sabater - 2009 - Biological Theory 4 (2):174-182.
    I propose that, in addition to the commonly recognized increase of entropy, two more time arrows influence living beings. The increase of damage reactions, which produce aging and genetic variation, and the decrease of the rate of entropy production involved in natural selection are neglected arrows of time. Although based on the statistical theory of the arrow of time, they are distinguishable from the general arrow of the increase of entropy. Physiology under healthy conditions only obeys the increase of entropy (...)
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  • Schizophrenia epigenesis?Jason Scott Robert - 2000 - Theoretical Medicine and Bioethics 21 (2):191-215.
    I begin by examining how genetics drivesschizophrenia research, and raise both familiar andrelatively novel criticisms of the evidence putativelysupporting the genetic basis of schizophrenia. Inparticular, I call attention to a set of concernsabout the effects of placentation on concordance ratesof schizophrenia in monozygotic twins, which furtherweakens the case for schizophrenia''s so-called stronggenetic component. I then underscore two criticalpoints. First, I emphasize the importance of takingseriously considerations about the complexity of bothontogenesis and the development of hereditarydiseases. The recognition of developmentalconstraints and (...)
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  • Fastidious, foundational heresies.Jason Scott Robert - 2000 - Biology and Philosophy 15 (1):133-145.
  • The Return of the Organism as a Fundamental Explanatory Concept in Biology.Daniel J. Nicholson - 2014 - Philosophy Compass 9 (5):347-359.
    Although it may seem like a truism to assert that biology is the science that studies organisms, during the second half of the twentieth century the organism category disappeared from biological theory. Over the past decade, however, biology has begun to witness the return of the organism as a fundamental explanatory concept. There are three major causes: (a) the realization that the Modern Synthesis does not provide a fully satisfactory understanding of evolution; (b) the growing awareness of the limits of (...)
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  • The problem of content in embodied memory.Martin Kurthen, Thomas Grunwald, Christoph Helmstaedter & Christian E. Elger - 2003 - Behavioral and Brain Sciences 26 (5):641-642.
    An action-oriented theory of embodied memory is favorable for many reasons, but it will not provide a quick yet clean solution to the grounding problem in the way Glenberg (1997t) envisages. Although structural mapping via analogical representations may be an adequate mechanism of cognitive representation, it will not suffice to explain representation as such.
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  • Book review: Gould, S.j. (2002). The structure of evolutionary theory. [REVIEW]Rob Hengeveld - 2003 - Acta Biotheoretica 51 (1):67-72.
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  • Teaching Philosophy of Science to Science Students: An Alternative Approach.Ragnar Fjelland - 2021 - Studies in Philosophy and Education 41 (2):243-258.
  • The Impact of Neuroscience and Genetics on the Law: A Recent Italian Case.M. Farisco & C. Petrini - 2012 - Neuroethics 5 (3):317-319.
    The use of genetic testing and neuroscientific evidence in legal trials raises several issues. Often their interpretation is controversial: the same evidence can be used to sustain both the prosecution’s and defense’s argument. A recent Italian case confirms such concerns and stresses other relevant related questions.
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  • Some remarks on the foundations of quantum theory.E. B. Davies - 2005 - British Journal for the Philosophy of Science 56 (3):521-539.
    Although many physicists have little interest in philosophical arguments about their subject, an analysis of debates about the paradoxes of quantum mechanics shows that their disagreements often depend upon assumptions about the relationship between theories and the real world. Some consider that physics is about building mathematical models which necessarily have limited domains of applicability, while others are searching for a final theory of everything, to which their favourite theory is supposed to be an approximation. We discuss some particular recent (...)
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  • Basing Science Ethics on Respect for Human Dignity.Mehmet Aközer & Emel Aközer - 2016 - Science and Engineering Ethics 22 (6):1627-1647.
    A “no ethics” principle has long been prevalent in science and has demotivated deliberation on scientific ethics. This paper argues the following: An understanding of a scientific “ethos” based on actual “value preferences” and “value repugnances” prevalent in the scientific community permits and demands critical accounts of the “no ethics” principle in science. The roots of this principle may be traced to a repugnance of human dignity, which was instilled at a historical breaking point in the interrelation between science and (...)
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