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Natural selection and the emergence of mind

Dialectica 32 (3‐4):339-55 (1978)

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  1. La dimensión ética de la ciencia según Mariano Artigas.Rubén Herce - 2016 - Scientia et Fides 4 (2):137-154.
    The Ethical Dimension of Science According to Mariano Artigas: Many authors have written, from different approaches, about the relationships between ethics and science. In this work, we analyze how Mariano Artigas did it. He gives great importance to ethics, which he considers a philosophical presupposition of scientific activity. A detailed analysis of his work allows to understand to what extent ethics is important for science. Specifically, we consider the relationships of ethics with humans and with science; the interweaving and the (...)
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  • The emergence of value: human norms in a natural world.Lawrence Cahoone - 2023 - Albany: State University of New York Press.
    Argues that truth, moral right, political right, and aesthetic value may be understood as arising out of a naturalist account of humanity, if naturalism is rightly conceived.
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  • America's forgotten poet-philosopher: the thought of John Elof Boodin in his time and ours.Michael A. Flannery - 2023 - Albany: State University of New York Press.
    Illuminating study of the ideas and influences of a near-forgotten American philosopher.
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  • Resolving the evolutionary paradox of consciousness.Brendan P. Zietsch - forthcoming - Phenomenology and the Cognitive Sciences:1-19.
    Evolutionary fitness threats and rewards are associated with subjectively unpleasant and pleasant sensations, respectively. Initially, these correlations appear explainable via adaptation by natural selection. But here I analyse the major metaphysical perspectives on consciousness – physicalism, dualism, and panpsychism – and conclude that none help to understand the adaptive-seeming correlations via adaptation. I also argue that a recently proposed explanation, the phenomenal powers view, has major problems that mean it cannot explain the adaptive-seeming correlations via adaptation either. So the mystery (...)
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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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  • The philosophy of Donald T. Campbell: A short review and critical appraisal. [REVIEW]Franz M. Wuketits - 2001 - Biology and Philosophy 16 (2):171-188.
    Aside from his remarkable studies in psychology and the social sciences, Donald Thomas Campbell (1916–1996) made significant contributions to philosophy, particularly philosophy of science,epistemology, and ethics. His name and his work are inseparably linked with the evolutionary approach to explaining human knowledge (evolutionary epistemology). He was an indefatigable supporter of the naturalistic turn in philosophy and has strongly influenced the discussion of moral issues (evolutionary ethics). The aim of this paper is to briefly characterize Campbells work and to discuss its (...)
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  • The importance of prediction testing in evolutionary biology.MaryB Williams - 1982 - Erkenntnis 17 (3):291 - 306.
    It is clear from the above discussion that if I had wished to do so I could have truthfully presented every paper as either testing a prediction, presenting evidence needed in the test of a prediction, or presentin a D-N explanation. (I would not have been able to do this if I had not been sufficiently familiar with the evolutionary literature to recognize what hypotheses were at stake in several of the papers; even when the authors mention the hypotheses they (...)
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  • A soul of truth in things erroneous: Popper’s “amateurish” evolutionary philosophy in light of contemporary biology.Davide Vecchi & Lorenzo Baravalle - 2015 - History and Philosophy of the Life Sciences 36 (4):525-545.
    This paper will critically assess Popper’s evolutionary philosophy. There exists a rich literature on the topic with which we have many reservations. We believe that Popper’s evolutionary philosophy should be assessed in light of the intriguing theoretical insights offered, during the last 10 years or so, by the philosophy of biology, evolutionary biology and molecular biology. We will argue that, when analysed in this manner, Popper’s ideas concerning the nature of selection, Lamarckism and the theoretical limits of neo-Darwinism can be (...)
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  • Grounding the Selectionist Explanation for the Success of Science in the External Physical World.Ragnar van der Merwe - forthcoming - Foundations of Science: DOI: 10.1007/s10699-023-09907-y.
    I identify two versions of the scientific anti-realist’s selectionist explanation for the success of science: Bas van Fraassen’s original and K. Brad Wray’s newer interpretation. In Wray’s version, psycho-social factors internal to the scientific community – viz. scientists’ interests, goals, and preferences – explain the theory-selection practices that explain theory-success. I argue that, if Wray’s version were correct, then science should resemble art. In art, the artwork-selection practices that explain artwork-success appear faddish. They are prone to radical change over time. (...)
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  • The Claims of Generalized Darwinism.Rod Thomas - 2018 - Philosophy of Management 17 (2):149-167.
    Generalized Darwinism (GD) claims to be a conceptual and theoretical framework for researching evolutionary change processes in organizations. This paper examines the claims of GD. It finds that in contrast to Darwin’s theory of evolution by natural selection proper, the GD framework is not an explanatory deductive argument form. What it is that GD actually generalizes and intends to explain thereby becomes somewhat moot. It is proposed that the so-called ‘generalization’ that the GD framework supplies might be best understood schematically. (...)
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  • Getting to Darwin: Obstacles to Accepting Evolution by Natural Selection.Paul Thagard & Scott Findlay - 2010 - Science & Education 19 (6-8):625-636.
    Darwin’s theory of evolution by natural selection is central to modern biology, but is resisted by many people. This paper discusses the major psychological obstacles to accepting Darwin’s theory. Cognitive obstacles to adopting evolution by natural selection include conceptual difficulties, methodological issues, and coherence problems that derive from the intuitiveness of alternative theories. The main emotional obstacles to accepting evolution are its apparent conflict with valued beliefs about God, souls, and morality. We draw on the philosophy of science and on (...)
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  • Popper, laws, and the exclusion of biology from genuine science.David N. Stamos - 2007 - Acta Biotheoretica 55 (4):357-375.
    The primary purpose of this paper is to argue that biologists should stop citing Karl Popper on what a genuinely scientific theory is. Various ways in which biologists cite Popper on this matter are surveyed, including the use of Popper to settle debates on methodology in phylogenetic systematics. It is then argued that the received view on Popper—namely, that a genuinely scientific theory is an empirically falsifiable one—is seriously mistaken, that Popper’s real view was that genuinely scientific theories have the (...)
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  • Popper, falsifiability, and evolutionary biology.David N. Stamos - 1996 - Biology and Philosophy 11 (2):161-191.
    First, a brief history is provided of Popper's views on the status of evolutionary biology as a science. The views of some prominent biologists are then canvassed on the matter of falsifiability and its relation to evolutionary biology. Following that, I argue that Popper's programme of falsifiability does indeed exclude evolutionary biology from within the circumference of genuine science, that Popper's programme is fundamentally incoherent, and that the correction of this incoherence results in a greatly expanded and much more realistic (...)
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  • Popper’s Shifting Appraisal of Evolutionary Theory.Elliott Sober & Mehmet Elgin - 2017 - Hopos: The Journal of the International Society for the History of Philosophy of Science 7 (1):31-55.
    Karl Popper argued in 1974 that evolutionary theory contains no testable laws and is therefore a metaphysical research program. Four years later, he said that he had changed his mind. Here we seek to understand Popper’s initial position and his subsequent retraction. We argue, contrary to Popper’s own assessment, that he did not change his mind at all about the substance of his original claim. We also explore how Popper’s views have ramifications for contemporary discussion of the nature of laws (...)
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  • Foundational issues in evolution education.Mike U. Smith, Harvey Siegel & Joseph D. McInerney - 1995 - Science & Education 4 (1):23-46.
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  • Six things Popper would like biologists not to ignore: In memoriam, Karl Raimund Popper, 1902–1994.Tom Settle - 1996 - Biology and Philosophy 11 (2):141-159.
    To honour the memory of Sir Karl Popper, I put forward six elements of his philosophy which might be of particular interest to biologists and to philosophers of biology and which I think Popper would like them not to ignore, even if they disagree with him. They are: the primacy of problems; the criticizability of metaphysics (and thus the dubiousness of materialism); how downward causation might be real; how norms should matter to scientists; why dogmatism should be avoided; how genuine (...)
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  • The frontiers of empirical science: A Thomist-inspired critique of scientism.Callum Scott - 2016 - HTS Theological Studies 72 (3).
    Scientistic conceptualisations hold to the positivistic positions that science is limitless in its potential representations of material phenomena and that it is the only sure path to knowledge. In recent popular scientific literature, these presuppositions have been reaffirmed to the detriment of both philosophy and theology. This article argues for the contrary position by a meta-analysis of empirical science from a Thomist perspective. Identifying empirical science as limited in its method and bound to the material sphere of being alone, we (...)
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  • Book reviews : Is science sexist? And other problems in the biomedical sciences. By Michael Ruse. Dordrecht and boston: Reidel, 1981. Pp. XIX + 299. Hardback, U.s. $42; paperback, U.s. $14.95. [REVIEW]Richard Burian - 1985 - Philosophy of the Social Sciences 15 (1):111-114.
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  • Animal Mind as Approached by the Transpersonal: Notion of Collective Conscious Experience.Axel A. Randrup - 2004 - International Journal of Transpersonal Studies 23 (1):32-45.
    The discussion of animal mind in this paper is based on an idealist philosophy contending that only conscious experience is real, based on the transpersonal notion of collective conscious experience. The latter has earlier been explained by the author as experience referred to a group of humans as the subject, the We. Here it is contended that also a group of humans and animals can be seen as the subject of collective conscious experiences. The author argues that the notion of (...)
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  • The birth of modern science out of the 'european miracle'.Gerard Radnitzky - 1990 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 21 (2):275-292.
    Summary To understand the present situation we must know something about its history. The ‘Rise of the West’, which grew out of the ‘European Miracle’, is a special case of cultural evolution. The development of science is an important element in this process. Cultural evolution went hand in hand with biological evolution. Evolutionary epistemology illuminates the achievements and the evolution of cognitive sensory apparatus of various species. Man's cognitive sensory apparatus is adapted to the ‘mesocosmos’, the world of medium-sized dimensions. (...)
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  • The status of Popper's theory of scientific method.Robert Nola - 1987 - British Journal for the Philosophy of Science 38 (4):441-480.
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  • Feminist Philosophy of Science.Lynn Hankinson Nelson - 2002 - In Peter Machamer & Michael Silberstein (eds.), The Blackwell Guide to the Philosophy of Science. Oxford, UK: Blackwell. pp. 312–331.
    This chapter contains sections titled: Highlights of Past Literature Current Work Future Work.
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  • What did Popper learn from Lakatos?Bence Nanay - 2017 - British Journal for the History of Philosophy 25 (6):1202-1215.
    The canonical version of the history of twentieth century philosophy of science tells us that Lakatos was Popper’s disciple, but it is rarely mentioned that Popper would have learned anything from Lakatos. The aim of this paper is to examine Lakatos’ influence on Popper’s philosophical system and to argue that Lakatos did have an important, yet somewhat unexpected, impact on Popper’s thinking: he influenced Popper’s evolutionary model for ‘progress’ in science. And Lakatos’ influence sheds new light on why and how (...)
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  • Popper's Darwinian analogy.Bence Nanay - 2011 - Perspectives on Science 19 (3):337-354.
    One of the most deeply entrenched ideas in Popper's philosophy is the analogy between the growth of scientific knowledge and the Darwinian mechanism of natural selection. Popper gave his first exposition of these ideas very early on. In a letter to Donald Campbell, 1 Popper says that the idea goes back at least to the early thirties. 2 And he had a fairly detailed account of it in his "What is dialectic?", a talk given in 1937 and published in 1940: (...)
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  • Internal History versus External History.Bence Nanay - 2017 - Philosophy 92 (2):207-230.
    The aim of this paper is to generalize a pair of concepts that are widely used in the history of science, in art history and in historical linguistics – the concept of internal and external history – and to replace the often very vague talk of ‘historical narratives’ with this conceptual framework of internal versus external history. I argue that this way of framing the problem allows us to see the possible alternatives more clearly – as a limited number of (...)
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  • The evolutionary argument for phenomenal powers.Hedda Hassel Mørch - 2017 - Philosophical Perspectives 31 (1):293-316.
    Epiphenomenalism is the view that phenomenal properties – which characterize what it is like, or how it feels, for a subject to be in conscious states – have no physical effects. One of the earliest arguments against epiphenomenalism is the evolutionary argument (James 1890/1981; Eccles and Popper 1977; Popper 1978), which starts from the following problem: why is pain correlated with stimuli detrimental to survival and reproduction – such as suffocation, hunger and burning? And why is pleasure correlated with stimuli (...)
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  • On the Reflective Truth and Valuative Truth.K. K. Momdzhyan - 2019 - Russian Journal of Philosophical Sciences 62 (3):110-123.
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  • Booknotes.R. M. - 1990 - Biology and Philosophy 5 (3):373-378.
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  • Booknotes.R. M. - 1993 - Biology and Philosophy 8 (1):403-406.
    There is a rather striking video currently used in police training. A firearms officer is caught on video shooting an armed suspect. The officer then gives his account of what happened, and there is no suggestion that he is tying to fabricate evidence. He says that he shot the suspect once; his partner says that he fired two shots. On the video we see four shots being deliberately fired. Memory, it seems, is an unreliable witness in situations of stress.
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  • Why We Should Care About Universal Biology.Carlos Mariscal & Leonore Fleming - 2018 - Biological Theory 13 (2):121-130.
    Our understanding of the universe has grown rapidly in recent decades. We’ve discovered evidence of water in nearby planets, discovered planets outside our solar system, mapped the genomes of thousands of organisms, and probed the very origins and limits of life. The scientific perspective of life-as-it-could-be has expanded in part by research in astrobiology, synthetic biology, and artificial life. In the face of such scientific developments, we argue there is an ever-growing need for universal biology, life-as-it-must-be, the multidisciplinary study of (...)
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  • Natural Selection and Multi-Level Causation.Maximiliano Martínez & Andrés Moya - 2011 - Philosophy, Theory, and Practice in Biology 3 (20130604).
    In this paper, using a multilevel approach, we defend the positive role of natural selection in the generation of organismal form. Despite the currently widespread opinion that natural selection only plays a negative role in the evolution of form, we argue, in contrast, that the Darwinian factor is a crucial (but not exclusive) factor in morphological organization. Analyzing some classic arguments, we propose incorporating the notion of ‘downward causation’ into the concept of ‘natural selection.’ In our opinion, this kind of (...)
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  • Cognitive perspectives in economics.Ludovic Dibiaggio - 2005 - Mind and Society 4 (2):197-222.
    The integration of learning cognitive agents in the research agenda is an important step in the evolution of economics. However, relying on a retrospective analysis of the treatment of decision making in economics, this article argues that the cognitive programme aims to justify rational behaviour in an equilibrium framework rather than to integration an interpretative conception of agents' behaviour. As a consequence, the level of generality of analytical results remains limited and economists miss the opportunity to establish a discussion with (...)
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  • A Copernican Approach to Brain Advancement: The Paradigm of Allostatic Orchestration.Sung W. Lee - 2019 - Frontiers in Human Neuroscience 13:435757.
    There are two main paradigms for brain-related science, with different implications for brain-focused intervention or advancement. The paradigm of homeostasis (“stability through constancy,” Walter Cannon), originating from laboratory-based experimental physiology pioneered by Claude Bernard, shows that living systems tend to maintain system functionality in the direction of constancy (or similitude). The aim of physiology is elucidate the factors that maintain homeostasis, and therapeutics aim to correct abnormal factor functions. The homeostasis paradigm does not formally recognize influences outside its controlled experimental (...)
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  • Darwin’s empirical claim and the janiform character of fitness proxies.Ulrich Krohs - 2022 - Biology and Philosophy 37 (2):1-23.
    Darwin’s claim about natural selection is reconstructed as an empirical claim about a causal connection leading from the match of the physiology of an individual and its environment to leaving surviving progeny. Variations in this match, Darwin claims, cause differences in the survival of the progeny. Modern concepts of fitness focus the survival side of this chain. Therefore, the assumption that evolutionary theory wants to explain reproductive success in terms of a modern concept of fitness has given rise to the (...)
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  • On the Universal Mechanism Underlying Conscious Systems and the Foundations for a Theory of Consciousness.Joachim Keppler - 2016 - Open Journal of Philosophy 6 (4):346-367.
    In this article, I present a novel approach to the scientific understanding of consciousness. It is based on the hypothesis that the full range of phenomenal qualities is built into the frequency spectrum of a ubiquitous background field and proceeds on the assumption that conscious systems employ a universal mechanism by means of which they are able to extract phenomenal nuances selectively from this field. I set forth that in the form of the zero-point field (ZPF) physics can offer a (...)
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  • 知識の成長について.Kento Ikeda - 2022 - Journal of the Japan Association for Philosophy of Science 50 (1):1-15.
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  • The use and abuse of sir Karl Popper.David L. Hull - 1999 - Biology and Philosophy 14 (4):481-504.
    Karl Popper has been one of the few philosophers of sciences who has influenced scientists. I evaluate Popper's influence on our understanding of evolutionary theory from his earliest publications to the present. Popper concluded that three sorts of statements in evolutionary biology are not genuine laws of nature. I take him to be right on this score. Popper's later distinction between evolutionary theory as a metaphysical research program and as a scientific theory led more than one scientist to misunderstand his (...)
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  • Scientistic Philosophy, No; Scientific Philosophy, Yes.Susan Haack - 2021 - Journal of Philosophical Investigations 15 (36):4-35.
    If successful scientific inquiry is to be possible, there must be a world that is independent of how we believe it to be, and in which there are kinds and laws; and we must have the sensory apparatus to perceive particular things and events, and the capacity to represent them, to form generalized explanatory conjectures, and check how these conjectures stand up to further experience. Whether these preconditions are met is not a question the sciences can answer; it is specifically (...)
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  • An agent-based conception of models and scientific representation.Ronald N. Giere - 2010 - Synthese 172 (2):269–281.
    I argue for an intentional conception of representation in science that requires bringing scientific agents and their intentions into the picture. So the formula is: Agents (1) intend; (2) to use model, M; (3) to represent a part of the world, W; (4) for some purpose, P. This conception legitimates using similarity as the basic relationship between models and the world. Moreover, since just about anything can be used to represent anything else, there can be no unified ontology of models. (...)
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  • Evolution in Court. A Federal Judge Defines Science.Marie George - 2016 - Scientia et Fides 4 (2):397-415.
    This article highlights certain recurring themes in Mariano Artigas’s works by examining a judicial decision made in the United States in 1982 concerning the teaching of “creation-science” alongside “evolution-science” in public schools. These themes include: the proper delimitation of the boundaries of science, the importance of philosophy as a bridge between science and religion, and the misunderstandings concerning the limits of science inherent in scientism.
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  • Metacognitive Control of Categorial Neurobehavioral Decision Systems.Gordon R. Foxall - 2016 - Frontiers in Psychology 7.
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  • Aspects of Complexity in Life and Science.Claus Emmeche - 1997 - Philosophica 59 (1).
    A short review of complexity research from the perspective of history and philosophy of biology is presented. Complexity and its emergence has scientific and metaphysical meanings. From its beginning, biology was a science of complex systems, but with the advent of electronic computing and the possibility of simulating mathematical models of complicated systems, new intuitions of complexity emerged, together with attempts to devise quantitative measures of complexity. But can we quantify the complex?
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  • Science and Religion in Conflict, Part 1: Preliminaries.R. I. Damper - forthcoming - Foundations of Science:1-38.
    Science and religion have been described as the “two dominant forces in our culture”. As such, the relation between them has been a matter of intense debate, having profound implications for deeper understanding of our place in the universe. One position naturally associated with scientists of a materialistic outlook is that science and religion are contradictory, incompatible worldviews; however, a great deal of recent literature criticises this “conflict thesis” as simple-minded, essentially ignorant of the nature of religion and its philosophical (...)
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  • The Evolutionary Meaning of World 3.Hubert Cambier - 2016 - Philosophy of the Social Sciences 46 (3):242-264.
    The World 3 theory outlined by Popper in the 1960s has been diversely received, raising enthusiasms as well as severe criticisms. In this paper, I resituate the theory in the development of Popper’s philosophy. I not only present the three “sources” of W3, but I also show that the first one dominates the two others. Comparing it with a few other evolutionary philosophies, I propose to understand Popper’s metaphysics as part of an evolutionary and spiritualist philosophy, which was, however, always (...)
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  • Evolution of the Neural Basis of Consciousness: A Bird-Mammal Comparison.Ann B. Butler, Paul R. Manger, B. I. B. Lindahl & Peter Århem - 2005 - Bioessays 27 (9):923-936.
    The main objective of this essay is to validate some of the principal, currently competing, mammalian consciousness-brain theories by comparing these theories with data on both cognitive abilities and brain organization in birds. Our argument is that, given that multiple complex cognitive functions are correlated with presumed consciousness in mammals, this correlation holds for birds as well. Thus, the neuroanatomical features of the forebrain common to both birds and mammals may be those that are crucial to the generation of both (...)
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  • Prediction and Theory Evaluation: Cosmic Microwaves and the Revival of the Big Bang.Stephen G. Brush - 1993 - Perspectives on Science 1 (4):565-602.
    Are theories judged on the basis of empirical tests of their predictions, as proposed by Karl Popper and others, or are new theories adopted by younger scientists while old theories fade away when their advocates die, as Max Planck suggested? A famous historical episode, the rejection of steady state cosmology and the revival of the big bang cosmology following the 1965 discovery of the cosmic microwave background radiation, is examined to determine whether the scientific community followed Popper’s or Planck’s principle. (...)
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  • How Theories Became Knowledge: Morgan's Chromosome Theory of Heredity in America and Britain. [REVIEW]Stephen G. Brush - 2002 - Journal of the History of Biology 35 (3):471-535.
    T. H. Morgan, A. H. Sturtevant, H. J. Muller and C. B. Bridges published their comprehensive treatise "The Mechanism of Mendelian Heredity" in 1915. By 1920 Morgan 's "Chromosome Theory of Heredity" was generally accepted by geneticists in the United States, and by British geneticists by 1925. By 1930 it had been incorporated into most general biology, botany, and zoology textbooks as established knowledge. In this paper, I examine the reasons why it was accepted as part of a series of (...)
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  • Taking Popper seriously.Michael Bradie - 1996 - Biology and Philosophy 11 (2):259-270.
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  • The Evolution of Scientific Lineages.Michael Bradie - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (2):245-254.
    The fundamental dialectic of Science as a Process is the interaction between two narrative levels. At one level, the book is a historical narrative of one aspect of one ongoing problem in systematics - the dispute between cladists and more traditional evolutionary taxonomists and amongst the cladists themselves on the correct method of classifying species. This narrative is replete with details of the process whereby scientists promote and publish their ideas. It is an informative and somewhat ‘racy’ account of the (...)
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  • Assessing evolutionary epistemology.Michael Bradie - 1986 - Biology and Philosophy 1 (4):401-459.
    There are two interrelated but distinct programs which go by the name evolutionary epistemology. One attempts to account for the characteristics of cognitive mechanisms in animals and humans by a straightforward extension of the biological theory of evolution to those aspects or traits of animals which are the biological substrates of cognitive activity, e.g., their brains, sensory systems, motor systems, etc. (EEM program). The other program attempts to account for the evaluation of ideas, scientific theories and culture in general by (...)
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