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  1. Gavagai!: Or, the Future History of the Animal Language Controversy.David Premack - 1986 - MIT Press.
    In this witty and fascinating book, Premack examines arguments over whether humans are unique because we can talk.
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  • Accepting the Povinelli-Henley challenge.Nancy Salay - 2022 - Animal Behavior and Cognition 9 (2):239-256.
    In the recent twenty-year retrospective issue of Animal Behavior and Cognition, Povinelli and Henley (2020) argue that a host of comparative studies into “complex cognition” suffer, fatally, from a theoretical confusion. To rectify the problem, they issue the following challenge: alongside specifications of the higher-order capacity to be tested, provide hypotheses of the mechanism(s) necessary to implement it. They spearhead this effort with a discussion of how the Relational Reinterpretation Hypothesis (RRH) provides just such an account. In the first part (...)
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  • Why some Apes became Humans, Competition, consciousness, and culture.Pouwel Slurink - 2002 - Dissertation, Radboud University
    Chapter 1 (To know in order to survive) & Chapter 2 (A critique of evolved reason) explain human knowledge and its limits from an evolutionary point of view. Chapter 3 (Captured in our Cockpits) explains the evolution of consciousness, using value driven decision theory. Chapter 4-6 (Chapter 4 Sociobiology, Chapter 5 Culture: the Human Arena), Chapter 6, Genes, Memes, and the Environment) show that to understand culture you have at least to deal with 4 levels: genes, brains, the environment, culture. (...)
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  • Planning and the brain.Jordan Grafman & James Hendler - 1991 - Behavioral and Brain Sciences 14 (4):563-564.
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  • From null hypothesis to null dogma.N. J. Mackintosh - 1987 - Behavioral and Brain Sciences 10 (4):689.
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  • Species differences in intelligence: Which null hypothesis?James W. Kalat - 1987 - Behavioral and Brain Sciences 10 (4):671.
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  • Climbing the evolutionary ladder of success: The scala naturae in models of brain evolution.Horst D. Steklis - 1988 - Behavioral and Brain Sciences 11 (1):101-102.
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  • Elegant hypotheses are intellectually rewarding; even more so if more hard data were available.János Szentágothai - 1988 - Behavioral and Brain Sciences 11 (1):102-102.
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  • Developmental axes and evolutionary trees.G. M. Innocenti - 1988 - Behavioral and Brain Sciences 11 (1):94-95.
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  • The comparative psychology of intelligence.Euan M. Macphail - 1987 - Behavioral and Brain Sciences 10 (4):645.
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  • Implications of the “initial brain” concept for brain evolution in Cetacea.Ilya I. Glezer, Myron S. Jacobs & Peter J. Morgane - 1988 - Behavioral and Brain Sciences 11 (1):75-89.
    We review the evidence for the concept of the “initial” or prototype brain. We outline four possible modes of brain evolution suggested by our new findings on the evolutionary status of the dolphin brain. The four modes involve various forms of deviation from and conformity to the hypothesized initial brain type. These include examples of conservative evolution, progressive evolution, and combinations of the two in which features of one or the other become dominant. The four types of neocortical organization in (...)
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  • Outline of a new approach to the nature of mind.Dr Petros A. M. Gelepithis - 2009
    I propose a new approach to the constitutive problem of psychology ‘what is mind?’ The first section introduces modifications of the received scope, methodology, and evaluation criteria of unified theories of cognition in accordance with the requirements of evolutionary compatibility and of a mature science. The second section outlines the proposed theory. Its first part provides empirically verifiable conditions delineating the class of meaningful neural formations and modifies accordingly the traditional conceptions of meaning, concept and thinking. This analysis is part (...)
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  • Darwin's mistake: Explaining the discontinuity between human and nonhuman minds.Derek C. Penn, Keith J. Holyoak & Daniel J. Povinelli - 2008 - Behavioral and Brain Sciences 31 (2):109-130.
    Over the last quarter century, the dominant tendency in comparative cognitive psychology has been to emphasize the similarities between human and nonhuman minds and to downplay the differences as (Darwin 1871). In the present target article, we argue that Darwin was mistaken: the profound biological continuity between human and nonhuman animals masks an equally profound discontinuity between human and nonhuman minds. To wit, there is a significant discontinuity in the degree to which human and nonhuman animals are able to approximate (...)
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  • Darwin's triumph: Explaining the uniqueness of the human mind without a deus ex Machina.Derek C. Penn, Keith J. Holyoak & Daniel J. Povinelli - 2008 - Behavioral and Brain Sciences 31 (2):153-178.
    In our target article, we argued that there is a profound functional discontinuity between the cognitive abilities of modern humans and those of all other extant species. Unsurprisingly, our hypothesis elicited a wide range of responses from commentators. After responding to the commentaries, we conclude that our hypothesis lies closer to Darwin's views on the matter than to those of many of our contemporaries.
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  • Brains, genes, and language evolution: A new synthesis.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):537-558.
    Our target article argued that a genetically specified Universal Grammar (UG), capturing arbitrary properties of languages, is not tenable on evolutionary grounds, and that the close fit between language and language learners arises because language is shaped by the brain, rather than the reverse. Few commentaries defend a genetically specified UG. Some commentators argue that we underestimate the importance of processes of cultural transmission; some propose additional cognitive and brain mechanisms that may constrain language and perhaps differentiate humans from nonhuman (...)
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  • Full-duplex acoustic interaction system for cognitive experiments with cetaceans.Jörg Rychen, Julie Semoroz, Alexander Eckerle, Richard H. R. Hahnloser & Rébecca Kleinberger - 2023 - Interaction Studies 24 (1):66-86.
    Cetaceans show high cognitive abilities and strong social bonds. Their primary sensory modality to communicate and sense the environment is acoustics. Research on their echolocation and social vocalizations typically uses visual and tactile systems adapted from research on primates or birds. Such research would benefit from a purely acoustic communication system to better match their natural capabilities. We argue that a full duplex system, in which signals can flow in both directions simultaneously is essential for communication research. We designed and (...)
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  • Do Bats Have the Necessary Prerequisites for Symbolic Communication?Mirjam Knörnschild & Ahana A. Fernandez - 2020 - Frontiers in Psychology 11:571678.
    Training animals such as apes, gray parrots, or dolphins that communicate via arbitrary symbols with humans has revealed astonishing mental capacities that may have otherwise gone unnoticed. Albeit bats have not yet been trained to communicate via symbols with humans, we are convinced that some species, especially captive Pteropodid bats (“flying foxes”), show the potential to master this cognitive task. Here, we briefly review what is known about bats’ cognitive skills that constitute relevant prerequisites for symbolic communication with humans. We (...)
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  • Cognitive Relatives yet Moral Strangers?Judith Benz-Schwarzburg & Andrew Knight - 2011 - Journal of Animal Ethics 1 (1):9-36.
    This article provides an empirically based, interdisciplinary approach to the following two questions: Do animals possess behavioral and cognitive characteristics such as culture, language, and a theory of mind? And if so, what are the implications, when long-standing criteria used to justify differences in moral consideration between humans and animals are no longer considered indisputable? One basic implication is that the psychological needs of captive animals should be adequately catered for. However, for species such as great apes and dolphins with (...)
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  • Hierarchies and tool-using strategies.Kevin J. Connolly & Edison de J. Manoel - 1991 - Behavioral and Brain Sciences 14 (4):554-555.
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  • Making the best use of primate tool use?James R. Anderson - 1991 - Behavioral and Brain Sciences 14 (4):551-552.
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  • Overcoming contextual variables, negative results, and Macphail's null hypothesis.Roger K. Thomas - 1987 - Behavioral and Brain Sciences 10 (4):680.
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  • Within-species variations in g: The case of Homo sapiens.John G. Borkowski - 1987 - Behavioral and Brain Sciences 10 (4):660.
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  • Out for the count.Mark Johnson - 1988 - Behavioral and Brain Sciences 11 (4):589-589.
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  • Caretakers of value: A theory of human personhood.Philip Woodward - 2024 - Philosophical Forum 55 (3):251-269.
    According to a traditional view, humans are superior to their non‐human terrestrial companions because they alone are “rational animals.” Although the traditional view is presupposed by our social and legal institutions, it has been called into question by modern science: Darwin himself claimed that humans differ in degree rather than in kind from animals, and recent discoveries in comparative animal cognition have seemed to confirm Darwin's assertion. Sustaining the traditional view in light of these discoveries calls out for a careful (...)
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  • Are rhythms of human cerebral development “traveling waves”?Robert W. Thatcher - 1991 - Behavioral and Brain Sciences 14 (4):575-575.
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  • Gestures, persons and communication: Sociocognitive factors in the development and evolution of linguistic abilities.Juan C. Gómez & Encarnación Sarriá - 1991 - Behavioral and Brain Sciences 14 (4):562-563.
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  • Continuity versus discontinuity theories of the evolution of human and animal minds.Kathleen R. Gibson - 1991 - Behavioral and Brain Sciences 14 (4):560-560.
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  • Reinforcement schedules and “numerical competence”.John A. Nevin - 1988 - Behavioral and Brain Sciences 11 (4):594-595.
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  • Rethinking the Cartesian theory of linguistic productivity.Pauli Brattico & Lassi Liikkanen - 2009 - Philosophical Psychology 22 (3):251-279.
    Descartes argued that productivity, namely our ability to generate an unlimited number of new thoughts or ideas from previous ones, derives from a single undividable source in the human soul. Cognitive scientists, in contrast, have viewed productivity as a modular phenomenon. According to this latter view, syntactic, semantic, musical or visual productivity emerges each from their own generative engines in the human brain. Recent evidence has, however, led some authors to revitalize the Cartesian theory. According to this view, a single (...)
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  • Developmental Plasticity and Language: A Comparative Perspective.Ulrike Griebel, Irene M. Pepperberg & D. Kimbrough Oller - 2016 - Topics in Cognitive Science 8 (2):435-445.
    The growing field of evo-devo is increasingly demonstrating the complexity of steps involved in genetic, intracellular regulatory, and extracellular environmental control of the development of phenotypes. A key result of such work is an account for the remarkable plasticity of organismal form in many species based on relatively minor changes in regulation of highly conserved genes and genetic processes. Accounting for behavioral plasticity is of similar potential interest but has received far less attention. Of particular interest is plasticity in communication (...)
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  • Evolving remembrance of times past and future.William Noble & Iain Davidson - 1991 - Behavioral and Brain Sciences 14 (4):572-572.
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  • Objects are analogous to words, not phonemes or grammatical categories.Michael Tomasello - 1991 - Behavioral and Brain Sciences 14 (4):575-576.
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  • The quest for divergent mechanisms in vertebrate learning.Mauricio R. Papini - 1987 - Behavioral and Brain Sciences 10 (4):676.
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  • Cognitive science and comparative intelligence.Ira Fischler - 1987 - Behavioral and Brain Sciences 10 (4):665.
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  • Evidence of divergence in vertebrate learning.M. E. Bitterman - 1987 - Behavioral and Brain Sciences 10 (4):659.
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  • Intelligence: More than a matter of associations.Sara J. Shettleworth - 1987 - Behavioral and Brain Sciences 10 (4):679.
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  • Natural selection and intelligence.David F. Sherry - 1987 - Behavioral and Brain Sciences 10 (4):678.
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  • The epistemology of intelligence: Contextual variables, tautologies, and external referents.Craig T. Nagoshi - 1987 - Behavioral and Brain Sciences 10 (4):675.
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  • Zoosemiotics 2.0.Pauline Delahaye - 2018 - International Journal for the Semiotics of Law - Revue Internationale de Sémiotique Juridique 31 (3):707-714.
    This paper discusses how major changes in methodology, ideology and the points of view of researchers have given linguistics a new opportunity to study animal semiotics and return to the “animal language” question. The article presents new linguistic perspectives from language theory but also from sociolinguistics, language development studies or the study of sign language. This paper shows how these perspective changes have scientifically modified the way linguists approach animal communication and cleared a path for new study fields such as (...)
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  • The comparative simplicity of tool-use and its implications for human evolution.Thomas Wynn - 1991 - Behavioral and Brain Sciences 14 (4):576-577.
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  • Brain differences determine different limits of intelligence.Onur Güntürkün - 1987 - Behavioral and Brain Sciences 10 (4):689.
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  • Is a Darwinian taxonomy of animal learning possible?E. W. Menzel - 1987 - Behavioral and Brain Sciences 10 (4):673.
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  • The initial brain concept: A work in progress.Karl Zilles & Gerd Rehkämper - 1988 - Behavioral and Brain Sciences 11 (1):105-106.
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  • Animal general intelligence: An idea ahead of its time.William Hodos - 1987 - Behavioral and Brain Sciences 10 (4):668.
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  • Psychometric considerations in the evaluation of intraspecies differences in intelligence.Lloyd G. Humphreys - 1987 - Behavioral and Brain Sciences 10 (4):668.
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  • Phylogenetically widespread “facts-of-life”.Donald R. Griffin - 1987 - Behavioral and Brain Sciences 10 (4):667.
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  • Kanting processes in the chimpanzee: What really counts?Sarah T. Boysen - 1988 - Behavioral and Brain Sciences 11 (4):580-580.
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  • Bottlenose dolphins understand relationships between concepts.Louis M. Herman, Robert K. Uyeyama & Adam A. Pack - 2008 - Behavioral and Brain Sciences 31 (2):139-140.
    We dispute Penn et al.'s claim of the sharp functional discontinuity between humans and nonhumans with evidence in bottlenose dolphins (Tursiops truncatus) of higher-order generalizations: spontaneous integration of previously learned rules and concepts in response to novel stimuli. We propose that species-general explanations that are in approach are more plausible than Penn et al.'s innatist approach of a genetically prespecified supermodule.
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  • Grapheme–phoneme correspondence learning in parrots.Jennifer M. Cunha, Ilyena Hirskyj-Douglas, Rèbecca Kleinberger, Susan Clubb & Lynn K. Perry - 2023 - Interaction Studies 24 (1):87-129.
    Symbolic representation acquisition is the complex cognitive process consisting of learning to use a symbol to stand for something else. A variety of non-human animals can engage in symbolic representation learning. One particularly complex form of symbol representation is the associations between orthographic symbols and speech sounds, known as grapheme–phoneme correspondence. To date, there has been little evidence that animals can learn this form of symbolic representation. Here, we evaluated whether an Umbrella cockatoo (Cacatua alba) can learn letter-speech correspondence using (...)
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  • Body and self in dolphins.Louis M. Herman - 2012 - Consciousness and Cognition 21 (1):526-545.
    In keeping with recent views of consciousness of self as represented in the body in action, empirical studies are reviewed that demonstrate a bottlenose dolphin’s conscious awareness of its own body and body parts, implying a representational “body image” system. Additional work reviewed demonstrates an advanced capability of dolphins for motor imitation of self-produced behaviors and of behaviors of others, including imitation of human actions, supporting hypotheses that dolphins have a sense of agency and ownership of their actions and may (...)
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