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Evolution: The Modern Synthesis

Philosophy 19 (73):166-170 (1944)

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  1. The Victoria institute, biblical criticism, and the fundamentals.Stuart Mathieson - 2021 - Zygon 56 (1):254-274.
    The Victoria Institute was established in London in 1865. Although billed as an anti-evolutionary organization, and stridently anti-Darwinian in its rhetoric, it spent relatively little time debating the theory of natural selection. Instead, it served as a haven for a specific set of intellectual commitments. Most important among these was the Baconian scientific methodology, which prized empiricism and induction, and was suspicious of speculation. Darwin's use of hypotheses meant that the Victoria Institute members were unconvinced that his work was truly (...)
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  • The evolutionary role of affordances: ecological psychology, niche construction, and natural selection.Manuel Heras-Escribano - 2020 - Biology and Philosophy 35 (2):1-27.
    This paper aims to examine the evolutionary role of affordances, that is, the possibilities for action available in our environments. There are two allegedly competing views for explaining the evolutionary role of affordances: the first is based on natural selection; the second is based on niche construction. According to the first, affordances are resources that exert selection pressure. The second view claims that affordances are ecological inheritances in the organism’s niche that are the product of a previous alteration of the (...)
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  • Mayr and Tinbergen: disentangling and integrating.Brandon A. Conley - 2020 - Biology and Philosophy 35 (1):4.
    Research on animal behavior is typically organized according to a combination of two influential frameworks: Ernst Mayr’s distinction between proximate and ultimate causes, and Niko Tinbergen’s “four questions”. My aim is to debunk two common interpretive misconceptions about Mayr’s proximate–ultimate distinction and its relationship to Tinbergen’s four questions, and to offer a new interpretation that avoids both. The first misconception is that the proximate–ultimate distinction maps cleanly onto Tinbergen’s four questions, marking a boundary between Tinbergen’s evolutionary and survival value questions (...)
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  • Chance, Variation and Shared Ancestry: Population Genetics After the Synthesis.Michel Veuille - 2019 - Journal of the History of Biology 52 (4):537-567.
    Chance has been a focus of attention ever since the beginning of population genetics, but neutrality has not, as natural selection once appeared to be the only worthwhile issue. Neutral change became a major source of interest during the neutralist–selectionist debate, 1970–1980. It retained interest beyond this period for two reasons that contributed to its becoming foundational for evolutionary reasoning. On the one hand, neutral evolution was the first mathematical prediction to emerge from Mendelian inheritance: until then evolution by natural (...)
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  • What’s wrong with the modern evolutionary synthesis? A critical reply to Welch.Koen B. Tanghe, Alexis De Tiège, Lieven Pauwels, Stefaan Blancke & Johan Braeckman - 2018 - Biology and Philosophy 33 (3-4):23.
    Welch :263–279, 2017) has recently proposed two possible explanations for why the field of evolutionary biology is plagued by a steady stream of claims that it needs urgent reform. It is either seriously deficient and incapable of incorporating ideas that are new, relevant and plausible or it is not seriously deficient at all but is prone to attracting discontent and to the championing of ideas that are not very relevant, plausible and/or not really new. He argues for the second explanation. (...)
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  • The Semiosis of “Side Effects” in Genetic Interventions.Ramsey Affifi - 2016 - Biosemiotics 9 (3):345-364.
    Genetic interventions, which include transgenic engineering, gene editing, and other forms of genome modification aimed at altering the information “in” the genetic code, are rapidly increasing in power and scale. Biosemiotics offers unique tools for understanding the nature, risks, scope, and prospects of such technologies, though few in the community have turned their attention specifically in this direction. Bruni is an important exception. In this paper, I examine how we frame the concept of “side effects” that result from genetic interventions (...)
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  • Beyond Darwinism’s Eclipse: Functional Evolution, Biochemical Recapitulation and Spencerian Emergence in the 1920s and 1930s.Rony Armon - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):173-194.
    During the 1920s and 1930s, many biologists questioned the viability of Darwin’s theory as a mechanism of evolutionary change. In the early 1940s, and only after a number of alternatives were suggested, Darwinists succeeded to establish natural selection and gene mutation as the main evolutionary mechanisms. While that move, today known as the neo-Darwinian synthesis, is taken as signalling a triumph of evolutionary theory, certain critical problems in evolution—in particular the evolution of animal function—could not be addressed with this approach. (...)
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  • Mendelian-Mutationism: The Forgotten Evolutionary Synthesis.Arlin Stoltzfus & Kele Cable - 2014 - Journal of the History of Biology 47 (4):501-546.
    According to a classical narrative, early geneticists, failing to see how Mendelism provides the missing pieces of Darwin’s theory, rejected gradual changes and advocated an implausible yet briefly popular view of evolution-by-mutation; after decades of delay (in which synthesis was prevented by personal conflicts, disciplinary rivalries, and anti-Darwinian animus), Darwinism emerged on a new Mendelian basis. Based on the works of four influential early geneticists – Bateson, de Vries, Morgan and Punnett –, and drawing on recent scholarship, we offer an (...)
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  • DNA Dispose, but Subjects Decide. Learning and the Extended Synthesis.Markus Lindholm - 2015 - Biosemiotics 8 (3):443-461.
    Adaptation by means of natural selection depends on the ability of populations to maintain variation in heritable traits. According to the Modern Synthesis this variation is sustained by mutations and genetic drift. Epigenetics, evodevo, niche construction and cultural factors have more recently been shown to contribute to heritable variation, however, leading an increasing number of biologists to call for an extended view of speciation and evolution. An additional common feature across the animal kingdom is learning, defined as the ability to (...)
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  • Formal Darwinism as a tool for understanding the status of organisms in evolutionary biology.P. Huneman - 2014 - Biology and Philosophy 29 (2):271-279.
    This paper uses the framework of Formal Darwinism (FD) to evaluate organism-centric critiques of the Modern Synthesis (MS). The first section argues that the FD project reconciles two kinds of selective explanations in biology. Thus it is not correct to say that the MS neglects organisms—instead, it explains organisms’ design, as argued in the second section. In the third section I employ a concept of the organism derived from Kant that has two aspects: the parts presupposing the whole, and the (...)
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  • Do gossip and lack of grooming make us human?Ilya I. Glezer & Warren G. Kinzey - 1993 - Behavioral and Brain Sciences 16 (4):704-705.
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  • Language and levels of selection.Lee Alan Dugatkin & David Sloan Wilson - 1993 - Behavioral and Brain Sciences 16 (4):701-701.
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  • Selectionism, mentalisms, and behaviorism.Jonathan Schull - 1984 - Behavioral and Brain Sciences 7 (4):497-498.
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  • On the status of causal modes.Robert C. Bolles - 1984 - Behavioral and Brain Sciences 7 (4):482-483.
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  • Cause and effect in evolution.Michael J. Katz - 1984 - Behavioral and Brain Sciences 7 (4):492-492.
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  • Fitness, reinforcement, underlying mechanisms.Alexander Rosenberg - 1984 - Behavioral and Brain Sciences 7 (4):495-496.
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  • Is Non-genetic Inheritance Just a Proximate Mechanism? A Corroboration of the Extended Evolutionary Synthesis.Alex Mesoudi, Simon Blanchet, Anne Charmantier, Étienne Danchin, Laurel Fogarty, Eva Jablonka, Kevin N. Laland, Thomas J. H. Morgan, Gerd B. Müller, F. John Odling-Smee & Benoît Pujol - 2013 - Biological Theory 7 (3):189-195.
    What role does non-genetic inheritance play in evolution? In recent work we have independently and collectively argued that the existence and scope of non-genetic inheritance systems, including epigenetic inheritance, niche construction/ecological inheritance, and cultural inheritance—alongside certain other theory revisions—necessitates an extension to the neo-Darwinian Modern Synthesis (MS) in the form of an Extended Evolutionary Synthesis (EES). However, this argument has been challenged on the grounds that non-genetic inheritance systems are exclusively proximate mechanisms that serve the ultimate function of calibrating organisms (...)
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  • Coevolution of neocortical size, group size and language in humans.R. I. M. Dunbar - 1993 - Behavioral and Brain Sciences 16 (4):681-694.
    Group size is a function of relative neocortical volume in nonhuman primates. Extrapolation from this regression equation yields a predicted group size for modern humans very similar to that of certain hunter-gatherer and traditional horticulturalist societies. Groups of similar size are also found in other large-scale forms of contemporary and historical society. Among primates, the cohesion of groups is maintained by social grooming; the time devoted to social grooming is linearly related to group size among the Old World monkeys and (...)
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  • J. B. S. Haldane, Ernst Mayr and the Beanbag Genetics Dispute.Veena Rao & Vidyanand Nanjundiah - 2011 - Journal of the History of Biology 44 (2):233 - 281.
    Starting from the early decades of the twentieth century, evolutionary biology began to acquire mathematical overtones. This took place via the development of a set of models in which the Darwinian picture of evolution was shown to be consistent with the laws of heredity discovered by Mendel. The models, which came to be elaborated over the years, define a field of study known as population genetics. Population genetics is generally looked upon as an essential component of modern evolutionary theory. This (...)
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  • Reciprocal causation and the proximate–ultimate distinction.T. E. Dickins & R. A. Barton - 2013 - Biology and Philosophy 28 (5):747-756.
    Laland and colleagues have sought to challenge the proximate–ultimate distinction claiming that it imposes a unidirectional model of causation, is limited in its capacity to account for complex biological phenomena, and hinders progress in biology. In this article the core of their argument is critically analyzed. It is claimed that contrary to their claims Laland et al. rely upon the proximate–ultimate distinction to make their points and that their alternative conception of reciprocal causation refers to phenomena that were already accounted (...)
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  • Bionomics: Vernon Lyman Kellogg and the Defense of Darwinism. [REVIEW]Mark A. Largent - 1999 - Journal of the History of Biology 32 (3):465 - 488.
    Bionomics was a research approach invented by British biological scientists in the late nineteenth century and adopted by the American entomologist and evolutionist Vernon Lyman Kellogg in the early twentieth century. Kellogg hoped to use bionomics, which was the controlled observation and experimentation of organisms within settings that approximated their natural environments, to overcome the percieved weaknesses in the Darwinian natural selection theory. To this end, he established a bionomics laboratory at Stanford University, widely published results from his bionomic investigations, (...)
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  • A Particular Synthesis: Aleksandr Promptov and Speciation in Birds. [REVIEW]Nikolai Krementsov - 2007 - Journal of the History of Biology 40 (4):637 - 682.
    During the 1930s, Aleksandr Promptov—a student of the founder of Russian population genetics Sergei Chetverikov—developed an elaborate concept of speciation in birds. He conducted field investigations aimed at giving a naturalistic content to the theoretical formulations and laboratory models of evolutionary processes advanced within the framework of population genetics, placing particular emphasis on the evolutionary role of bird behavior. Yet, although highly synthetic in combining biogeographical, taxonomic, genetic, ecological, and behavioral studies, Promptov's speciation concept was ignored by the architects of (...)
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  • The costs of being a restless intellect: Julian Huxley's popular and scientific career in the 1920s.Steindór J. Erlingsson - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (2):101-108.
    Julian Huxley’s contribution to twentieth-century biology and science popularisation is well documented. What has not been appreciated so far is that despite Huxley’s eminence as a public scientific figure and the part that he played in the rise of experimental zoology in Britain in the 1920s, his own research was often heavily criticised in this period by his colleagues. This resulted in numerous difficulties in getting his scientific research published in the early 1920s. At this time, Huxley started his popular (...)
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  • What Makes Biology Unique? Ernst Mayr at 100.Francisco Ayala - 2004 - History and Philosophy of the Life Sciences 26 (2):243 - 256.
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  • Towards a unified science of cultural evolution.Alex Mesoudi, Andrew Whiten & Kevin N. Laland - 2006 - Behavioral and Brain Sciences 29 (4):329-347.
    We suggest that human culture exhibits key Darwinian evolutionary properties, and argue that the structure of a science of cultural evolution should share fundamental features with the structure of the science of biological evolution. This latter claim is tested by outlining the methods and approaches employed by the principal subdisciplines of evolutionary biology and assessing whether there is an existing or potential corresponding approach to the study of cultural evolution. Existing approaches within anthropology and archaeology demonstrate a good match with (...)
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  • Serious matters: On Woodger, positivism, and the evolutionarysynthesis.Vassiliki Betty Smocovitis - 2000 - Biology and Philosophy 15 (4):553-558.
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  • Darwinians at war Bateson's place in histories of Darwinism.Alfred Nordmann - 1992 - Synthese 91 (1-2):53 - 72.
    The controversy between Biometricians and Mendelians has been called an inexplicable embarrassment since it revolved around the mistaken identification of Mendelian genetics with non-Darwinian saltationism, a mistake traced back to the non-Darwinian William Bateson, who introduced Mendelian analysis to British science. The following paper beings to unravel this standard account of the controversy by raising a simple question: Given that Bateson embraced evolution by natural selection and that he studied the causes of variation within a broadly Darwinian framework of problems (...)
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  • The architects of the evolutionary synthesis in national socialist germany: Science and politics. [REVIEW]Thomas Junker & Uwe Hoßfeld - 2002 - Biology and Philosophy 17 (2):223-249.
    The Synthetic Theory of Evolution (SyntheticDarwinism) was forged between 1925 and 1950.Several historians of science have pointed outthat this synthesis was a joint venture ofSoviet, German, American and Britishbiologists: A fascinating example of scientificcooperation, considering the fact that theevolutionary synthesis emerged during thedecades in which these countries were engagedin fierce political, military and ideologicalconflicts. The ideological background of itsAnglo-American representatives has beenanalyzed in the literature. We have examinedthe scientific work and ideological commitmentsof the German Darwinians during the ThirdReich. We based (...)
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  • Ernst Mayr, naturalist: His contributions to systematics and evolution. [REVIEW]Walter J. Bock - 1994 - Biology and Philosophy 9 (3):267-327.
    Ernst Mayr''s scientific career continues strongly 70 years after he published his first scientific paper in 1923. He is primarily a naturalist and ornithologist which has influenced his basic approach in science and later in philosophy and history of science. Mayr studied at the Natural History Museum in Berlin with Professor E. Stresemann, a leader in the most progressive school of avian systematics of the time. The contracts gained through Stresemann were central to Mayr''s participation in a three year expedition (...)
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  • Evolutionary theory in the 1920s: The nature of the “synthesis”.Sahotra Sarkar - 2004 - Philosophy of Science 71 (5):1215-1226.
    This paper analyzes the development of evolutionary theory in the period from 1918 to 1932. It argues that: (i) Fisher's work in 1918 constituted a not fully satisfactory reduction of biometry to Mendelism; (ii) there was a synthesis in the 1920s but that this synthesis was mainly one of classical genetics with population genetics, with Haldane's The Causes of Evolution being its founding document; (iii) the most important achievement of the models of theoretical population genetics was to show that natural (...)
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  • Functional explanation in biology.Hugh Lehman - 1965 - Philosophy of Science 32 (1):1-20.
    This paper is concerned with the problem of giving a correct analysis of function statements as they are used in biology. Examples of such statements are (1) The function of the myelin sheath is to insulate the nerve fiber and (2) The function of chlorophyll is to enable photosynthesis to take place. After criticizing analyses of such statements developed by Braithwaite, Nagel and Hempel an analysis is presented by the author. Finally the question of whether function statements are explanations is (...)
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  • Integrating the multiple biological causes of human behavior.Stephen M. Downes - 2005 - Biology and Philosophy 20 (1):177-190.
    I introduce a range of examples of different causal hypotheses about human mate selection. The hypotheses I focus on come from evolutionary psychology, fluctuating asymmetry research and chemical signaling research. I argue that a major obstacle facing an integrated biology of human behavior is the lack of a causal framework that shows how multiple proximate causal mechanisms can act together to produce components of our behavior.
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  • Structuring unleashed expression: Developmental foundations of human communication.Wiktor Rorot, Katarzyna Skowrońska, Ewa Nagórska, Konrad Zieliński, Julian Zubek & Joanna Rączaszek-Leonardi - 2023 - Behavioral and Brain Sciences 46:e13.
    The target article highlights the sources of open-endedness of human communication. However, the authors' perspective does not account for the structure of particular communication systems. To this end, we extend the authors' perspective, in the spirit of evolutionary extended synthesis, with a detailed account of the sources of constraints imposed upon expression in the course of child development.
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  • The Modern Synthesis: Theoretical or Institutional Event?Jean Gayon & Philippe Huneman - 2019 - Journal of the History of Biology 52 (4):519-535.
    This paper surveys questions about the nature of the Modern Synthesis as a historical event : was it rather theoretical than institutional? When and where did it actually happen? Who was involved? It argues that all answers to these questions are interrelated, and that systematic sets of answers define specific perspectives on the Modern Synthesis that are all complementary.
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  • Postcolonial Ecologies of Parasite and Host: Making Parasitism Cosmopolitan.Warwick Anderson - 2016 - Journal of the History of Biology 49 (2):241-259.
    The interest of F. Macfarlane Burnet in host–parasite interactions grew through the 1920s and 1930s, culminating in his book, Biological Aspects of Infectious Disease, often regarded as the founding text of disease ecology. Our knowledge of the influences on Burnet’s ecological thinking is still incomplete. Burnet later attributed much of his conceptual development to his reading of British theoretical biology, especially the work of Julian Huxley and Charles Elton, and regretted he did not study Theobald Smith’s Parasitism and Disease until (...)
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  • The Unfinished Synthesis?: Paleontology and Evolutionary Biology in the 20th Century.David Sepkoski - 2019 - Journal of the History of Biology 52 (4):687-703.
    In the received view of the history of the Modern Evolutionary Synthesis, paleontology was given a prominent role in evolutionary biology thanks to the significant influence of paleontologist George Gaylord Simpson on both the institutional and conceptual development of the Synthesis. Simpson's 1944 Tempo and Mode in Evolution is considered a classic of Synthesis-era biology, and Simpson often remarked on the influence of other major Synthesis figures – such as Ernst Mayr and Theodosius Dobzhansky – on his developing thought. Why, (...)
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  • Darwinism Then and Now: The Divide Over Form and Function.Michael Ruse - 2010 - Science & Education 19 (4-5):367-389.
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  • The Experimental Study of Bacterial Evolution and Its Implications for the Modern Synthesis of Evolutionary Biology.Maureen A. O’Malley - 2018 - Journal of the History of Biology 51 (2):319-354.
    Since the 1940s, microbiologists, biochemists and population geneticists have experimented with the genetic mechanisms of microorganisms in order to investigate evolutionary processes. These evolutionary studies of bacteria and other microorganisms gained some recognition from the standard-bearers of the modern synthesis of evolutionary biology, especially Theodosius Dobzhansky and Ledyard Stebbins. A further period of post-synthesis bacterial evolutionary research occurred between the 1950s and 1980s. These experimental analyses focused on the evolution of population and genetic structure, the adaptive gain of new functions, (...)
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  • Wallace’s and Darwin’s natural selection theories.Santiago Ginnobili & Daniel Blanco - 2019 - Synthese 196 (3):991-1017.
    This work takes a stand on whether Wallace should be regarded as co-author of the theory of natural selection alongside Darwin as he is usually considered on behalf of his alleged essential contribution to the conception of the theory. It does so from a perspective unexplored thus far: we will argue for Darwin’s priority based on a rational reconstruction of the theory of natural selection as it appears in the writings of both authors. We show that the theory does not (...)
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  • Adaptation as process: the future of Darwinism and the legacy of Theodosius Dobzhansky.David J. Depew - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (1):89-98.
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  • What Is Race? UNESCO, mass communication and human genetics in the early 1950s.Jenny Bangham - 2015 - History of the Human Sciences 28 (5):80-107.
    What Is Race? Evidence from Scientists is a picture book for schoolchildren published by UNESCO as part of its high-profile campaign on race. The 87-page, oblong, soft-cover booklet contains bold, semi-abstract, pared-down images accompanied by text, devised to make scientific concepts ‘more easily intelligible to the layman’. Produced by UNESCO’s Department of Mass Communication, the picture book represents the organization’s early-postwar confidence in the power of scientific knowledge as a social remedy and diplomatic tool. In keeping with a significant component (...)
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  • Social complexity: The roles of primates' grooming and people's talking.Andrew Whiten - 1993 - Behavioral and Brain Sciences 16 (4):719-719.
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  • Did primates need more than social grooming and increased group size for acquiring language?Jan Wind - 1993 - Behavioral and Brain Sciences 16 (4):720-720.
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  • The rest of the story: Grooming, group size and vocal exchanges in neotropical primates.Charles T. Snowdon - 1993 - Behavioral and Brain Sciences 16 (4):718-718.
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  • Another primate brain fiction: Brain (cortex) weight and homogeneity.Ralph L. Holloway - 1993 - Behavioral and Brain Sciences 16 (4):707-708.
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  • Vocal grooming: Man the schmoozer.David Dean - 1993 - Behavioral and Brain Sciences 16 (4):699-700.
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  • The role of convention in the communication of private events.Chris Moore - 1993 - Behavioral and Brain Sciences 16 (4):656-657.
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  • Private states and animal communication.Chris Mortensen - 1993 - Behavioral and Brain Sciences 16 (4):658-659.
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  • The status of private events in behavior analysis.William M. Baum - 1993 - Behavioral and Brain Sciences 16 (4):644-644.
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  • Animal communication of private states does not illuminate the human case.Selmer Bringsjord & Elizabeth Bringsjord - 1993 - Behavioral and Brain Sciences 16 (4):645-646.
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