Results for 'Cognitive code'

977 found
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  1. Horace Barlow.Cognition as Code-Breaking - 2002 - In D. Heyer (ed.), Perception and the Physical World: Psychological and Philosophical Issues in Perception. John Wiley and Sons.
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  2. What Can She Know?: Feminist Theory and the Construction of Knowledge.Lorraine Code - 1991 - Ithaca: Cornell University Press.
    In this lively and accessible book Lorraine Code addresses one of the most controversial questions in contemporary theory of knowledge, a question of fundamental concern for feminist theory as well: Is the sex of the knower epistemologically significant? Responding in the affirmative, Code offers a radical alterantive to mainstream philosophy's terms for what counts as knowledge and how it is to be evaluated. Code first reviews the literature of established epistemologies and unmasks the prevailing assumption in Anglo-American (...)
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  3.  20
    (1 other version)Second Persons.Lorraine Code - 1987 - Canadian Journal of Philosophy, Supplementary Volume 13:357-382.
    Assumptions about what it is to be human are implicit in most philosophical reflections upon ethical and epistemological issues. Although such assumptions are not usually elaborated into a comprehensive theory of human nature, they are nonetheless influential in beliefs about what kinds of problem are worthy of consideration, and in judgments about the adequacy of proposed solutions. Claims to the effect that one should not be swayed by feelings and loyalties in the making of moral decisions, for example, presuppose that (...)
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  4.  53
    On the Poverty of Scientism.Murray Code - 1997 - Metaphilosophy 28 (1):102--22.
    If there is one rationality there must be a plurality of them. This conclusion follows, I argue, partly from the extreme and ineradicable vagueness of the fundamental concepts that every would‐be rational explanation must presuppose. Logicistic/scientistic assaults on this vagueness are doomed to fail partly because they are unable to acknowledge the imaginative dimension of rational thought. Being limited to the play of “outward appearances,” scientific investigations are also dependent on “inward imaginings” on their speculative side. The upshot is that (...)
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  5.  23
    Re-assembling the brain: Are cell assemblies the brain's language for recovery of function?Chris Code - 1999 - Behavioral and Brain Sciences 22 (2):284-284.
    Holistically ignited Hebbian models are fundamentally different from the serially organized connectionist implementations of language. This may be important for the recovery of language after injury, because connectionist models have provided useful insights into recovery of some cognitive functions. I ask whether cell assembly modelling can make an important contribution and whether the apparent incompatibility with successful connectionist modelling is a problem.
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  6.  9
    Myths of reason: vagueness, rationality, and the lure of logic.Murray Code - 1995 - Atlantic Highlands, N.J.: Humanities Press.
    Addresses the meaning of rationality. The author argues that common conceptions of this notion are founded upon dubious myths of reason; and that systematic approaches to rational understanding are inherently limited by denying the cognitive value of myth and metaphor.
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  7.  11
    (2 other versions)First in, last out?Chris Code - 2005 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 6 (2):311-334.
    Current work in the evolution of language and communication is emphasising a close relationship between the evolution of speech, language and gestural action. This paper briefly explores some evolutionary implications of a range of closely related impairments of speech, language and gesture arising from left frontal brain lesions. I discuss aphasic lexical speech automatisms and their resolution with some recovery into agrammatism with apraxia of speech, an impairment of speech planning and programming. I focus attention on the most common forms (...)
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  8.  35
    How does a brain build a cognitive code?Stephen Grossberg - 1980 - Psychological Review 87 (1):1-51.
  9.  35
    The Knowing Subject.Lorraine B. Code - 1984 - Idealistic Studies 14 (2):109-126.
    In characterizing cognitive activity as a creative synthesis of the imagination, Kant places the epistemological subject at the center of the cognitive process. This is wholly revolutionary in the history of epistemology. Yet, for all its revolutionary character, the concept of the creative synthesis falls short of providing an adequate context for an explication of the ways in which individual human knowers, as organic creatures, create the products we call knowledge. Jean Piaget’s genetic epistemology, on the other hand, (...)
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  10. Alvin I. Goldman, Epistemology and Cognition. [REVIEW]Lorraine Code - 1988 - Philosophy in Review 8:398-401.
  11.  65
    The Theory of Epistemic Rationality. [REVIEW]Lorraine Code - 1989 - Review of Metaphysics 42 (4):829-831.
    Richard Foley's theory of epistemic rationality specifies what a cognitive agent should believe, whose epistemic goal is now to believe truths and not to believe falsehoods. As the emphasis upon 'now' demonstrates, this is a synchronic, not a diachronic, theory. Foley acknowledges the importance of long-term intellectual goals in human lives--particularly in their practical aspect, and in scientific practice. But such goals are beyond the scope of a purely epistemic theory of rationality.
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  12. Cognitive Penetration and Predictive Coding: A Commentary on Lupyan.Fiona Macpherson - 2015 - Review of Philosophy and Psychology 6 (4):571-584.
    The main aim of Lupyan’s paper is to claim that perception is cognitively penetrated and that this is consistent with the idea of perception as predictive coding. In these remarks I will focus on what Lupyan says about whether perception is cognitively penetrated, and set aside his remarks about epistemology. I have argued (2012) that perception can be cognitively penetrated and so I am sympathetic to Lupyan’s overall aim of showing that perception is cognitively penetrable. However, I will be critical (...)
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  13.  7
    Cognitive Focus through Adaptive Neural Coding in the Primate Prefrontal Cortex.John Duncan & Earl K. Miller - 2002 - In Donald T. Stuss & Robert T. Knight (eds.), Principles of Frontal Lobe Function. Oxford University Press.
    This chapter presents some rather different ideas about the organization of the prefrontal cortex. Rather than fixed functional specialization, it emphasizes adaptability of neural coding to fit a behavioral context. In particular, it presents both neuroimaging and single-unit electrophysiological evidence to suggest that, in selected regions of the prefrontal cortex, neurons adapt their properties to code just that information of relevance to current behavior. This adaptation is a major contributor to the achievement of cognitive focus and control. Although (...)
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  14.  30
    Predictive coding and the strong thesis of cognitive penetrability.Sergio Cermeño-Aínsa - 2021 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 36 (3):341-360.
    In this paper, I discuss the strong thesis of cognitive penetrability (CPs), to wit, th at the perceptual states (P) of a subject (S) are pervasively influenced, affected, or caused by cognitive factors (C) as expectations, memories, thoughts, goals, and so on, at all levels of perceptual processing. I argue that following the predictive coding models of perception (PC), the strong thesis of cognitive penetrability is to be expected.
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  15.  58
    Introduction – Cognitive penetration and predictive coding. Pushing the debate forward with the recent achievements of cognitive science.Albert Newen, Francesco Marchi & Peter Brössel - 2017 - Consciousness and Cognition 47:1-5.
  16. The relationship between cognitive penetration and predictive coding.Fiona Macpherson - 2017 - Consciousness and Cognition 47:6-16.
    If beliefs and desires affect perception—at least in certain specified ways—then cognitive penetration occurs. Whether it occurs is a matter of controversy. Recently, some proponents of the predictive coding account of perception have claimed that the account entails that cognitive penetrations occurs. I argue that the relationship between the predictive coding account and cognitive penetration is dependent on both the specific form of the predictive coding account and the specific form of cognitive penetration. In so doing, (...)
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  17. Deictic codes for the embodiment of cognition.Dana H. Ballard, Mary M. Hayhoe, Polly K. Pook & Rajesh P. N. Rao - 1997 - Behavioral and Brain Sciences 20 (4):723-742.
    To describe phenomena that occur at different time scales, computational models of the brain must incorporate different levels of abstraction. At time scales of approximately 1/3 of a second, orienting movements of the body play a crucial role in cognition and form a useful computational level embodiment level,” the constraints of the physical system determine the nature of cognitive operations. The key synergy is that at time scales of about 1/3 of a second, the natural sequentiality of body movements (...)
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  18.  15
    Dual Coding or Cognitive Load? Exploring the Effect of Multimodal Input on English as a Foreign Language Learners’ Vocabulary Learning.Wenwen Li, Jia Yu, Zina Zhang & Xiaobin Liu - 2022 - Frontiers in Psychology 13.
    In the era of eLearning 4.0, many researchers have suggested that multimodal input helps to enhance second language vocabulary learning. However, previous studies on the effects of multimodal teaching have failed to yield definitive conclusions. Furthermore, only few studies on the multimodal input of vocabulary learning have aimed at junior high school students and have focused on explicit vocabulary instruction in class. To explore the effects of multimodal input on English as a foreign language learners’ vocabulary learning and summarize effective (...)
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  19.  16
    Cognitive control in bilinguals: Proficiency and code-switching both matter.Souad Kheder & Edith Kaan - 2021 - Cognition 209 (C):104575.
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  20.  43
    Common codes for situated interaction.Paul Cisek & John F. Kalaska - 2001 - Behavioral and Brain Sciences 24 (5):883-884.
    A common code for integrating perceptions and actions was relevant for simple behavioral guidance well before the evolution of cognitive abilities. We review proposals that representation of to-be-produced events played important roles in early behavior, and evidence that the neural mechanisms supporting such rudimentary sensory predictions have been elaborated through evolution to support the cognitive codes addressed by TEC.
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  21.  37
    Basic tastes as cognitive concepts and taste coding as more than spatial.Patricia M. Di Lorenzo & Jen-Yung Chen - 2008 - Behavioral and Brain Sciences 31 (1):78-79.
    Erickson's treatise intertwines and confuses two major, but separable, issues: whether there are basic tastes and how taste stimuli are encoded. The idea of basic tastes may reflect a natural process of concept formation. By only discussing two spatial coding schemes for taste, Erickson ignores the temporal dimension of taste responses and the contribution of neuronal cooperativity.
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  22.  26
    Codes, communication and cognition.Stevan Harnad - 2019 - Behavioral and Brain Sciences 42.
    Brette criticizes the notion of neural coding because it seems to entail that neural signals need to “decoded” by or for some receiver in the head. If that were so, then neural coding would indeed be homuncular, requiring an entity to decipher the code. But I think Brette's plea to think instead in terms of complex, interactive causal throughput is preaching to the converted. Turing has already shown the way. In any case, the metaphor of neural coding has little (...)
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  23. Noise, uncertainty, and interest: Predictive coding and cognitive penetration.Jona Vance & Dustin Stokes - 2017 - Consciousness and Cognition 47:86-98.
    This paper concerns how extant theorists of predictive coding conceptualize and explain possible instances of cognitive penetration. §I offers brief clarification of the predictive coding framework and relevant mechanisms, and a brief characterization of cognitive penetration and some challenges that come with defining it. §II develops more precise ways that the predictive coding framework can explain, and of course thereby allow for, genuine top-down causal effects on perceptual experience, of the kind discussed in the context of cognitive (...)
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  24.  45
    Deictic codes, embodiment of cognition, and the real world.Julie Epelboim - 1997 - Behavioral and Brain Sciences 20 (4):746-746.
    It is unlikely that Ballard et al.'s embodiment theory has general applicability to cognition because it is based on experiments that neglect the importance of meaning, purpose, and learning in cognitive tasks. Limitations of the theory are illustrated with examples from everyday life and the results of recent experiments using cognitive and visuomotor tasks.
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  25.  72
    An efficient coding approach to the debate on grounded cognition.Abel Wajnerman Paz - 2018 - Synthese 195 (12):5245-5269.
    The debate between the amodal and the grounded views of cognition seems to be stuck. Their only substantial disagreement is about the vehicle or format of concepts. Amodal theorists reject the grounded claim that concepts are couched in the same modality-specific format as representations in sensory systems. The problem is that there is no clear characterization of format or its neural correlate. In order to make the disagreement empirically meaningful and move forward in the discussion we need a neurocognitive criterion (...)
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  26. Fusing significance coding with the stream of cognitive and conscious sequences: Generalizing from a neurocomputational model of motivated saccadic eye movements.M. Bernstein & J. Bickle - 2000 - Consciousness and Cognition 9 (2):S74 - S75.
  27.  24
    The theory of event coding as embodied-cognition framework.Bernhard Hommel - 2015 - Frontiers in Psychology 6.
  28.  21
    Cognitive focus through adaptive neural coding in the primate prefrontal cortex.John Duncan & Earl K. Miller - 2002 - In Donald T. Stuss & Robert T. Knight (eds.), Principles of Frontal Lobe Function. Oxford University Press.
  29.  70
    Predictive coding I: Introduction.Mark Sprevak - 2024 - Philosophy Compass 19 (1):e12950.
    Predictive coding – sometimes also known as ‘predictive processing’, ‘free energy minimisation’, or ‘prediction error minimisation’ – claims to offer a complete, unified theory of cognition that stretches all the way from cellular biology to phenomenology. However, the exact content of the view, and how it might achieve its ambitions, is not clear. This series of articles examines predictive coding and attempts to identify its key commitments and justification. The present article begins by focusing on possible confounds with predictive coding: (...)
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  30. Predictive coding and representationalism.Paweł Gładziejewski - 2016 - Synthese 193 (2).
    According to the predictive coding theory of cognition , brains are predictive machines that use perception and action to minimize prediction error, i.e. the discrepancy between bottom–up, externally-generated sensory signals and top–down, internally-generated sensory predictions. Many consider PCT to have an explanatory scope that is unparalleled in contemporary cognitive science and see in it a framework that could potentially provide us with a unified account of cognition. It is also commonly assumed that PCT is a representational theory of sorts, (...)
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  31.  48
    Intuitive coding: Vision and delusion.Anca Rădulescu - 2011 - Philosophical Psychology 24 (2):145-157.
    We review the hypothesis that the brain uses a generative model to explain the causes of sensory inputs, using prediction schemes that operate based upon assimilation of time-series sensory data. We put this hypothesis in the context of psychopathology, in particular, schizophrenia's positive symptoms. Building upon work of Helmholtz and upon theories in computational cognitive processing, we hypothesize that delusions in schizophrenia can be explained in terms of false inference. An impairment in inferring appropriate information from the sensory input (...)
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  32. Codes of Ethics and the Pursuit of Organizational Legitimacy: Theoretical and Empirical Contributions.Brad S. Long & Cathy Driscoll - 2007 - Journal of Business Ethics 77 (2):173-189.
    The focus of this paper is to further a discussion of codes of ethics as institutionalized organizational structures that extend some form of legitimacy to organizations. The particular form of legitimacy is of critical importance to our analysis. After reviewing various theories of legitimacy, we analyze the literature on how legitimacy is derived from codes of ethics to discover which specific form of legitimacy is gained from their presence in organizations. We content analyze a sample of codes to consider the (...)
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  33.  61
    Is coding a relevant metaphor for the brain?Romain Brette - 2019 - Behavioral and Brain Sciences 42:1-44.
    “Neural coding” is a popular metaphor in neuroscience, where objective properties of the world are communicated to the brain in the form of spikes. Here I argue that this metaphor is often inappropriate and misleading. First, when neurons are said to encode experimental parameters, the neural code depends on experimental details that are not carried by the coding variable. Thus, the representational power of neural codes is much more limited than generally implied. Second, neural codes carry information only by (...)
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  34.  66
    Pointers, codes, and embodiment.Robert A. Wilson - 1997 - Behavioral and Brain Sciences 20 (4):757-758.
    This commentary raises three questions about the target article: What are pointers or deictic devices? Why insist on deictic codes for cognition rather than deixis simpliciter? And in what sense is cognition embodied, on this view?
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  35.  29
    Emote aloud during learning with AutoTutor: Applying the Facial Action Coding System to cognitive–affective states during learning.Scotty D. Craig, Sidney D'Mello, Amy Witherspoon & Art Graesser - 2008 - Cognition and Emotion 22 (5):777-788.
    In an attempt to discover the facial action units for affective states that occur during complex learning, this study adopted an emote-aloud procedure in which participants were recorded as they verbalised their affective states while interacting with an intelligent tutoring system (AutoTutor). Participants’ facial expressions were coded by two expert raters using Ekman's Facial Action Coding System and analysed using association rule mining techniques. The two expert raters received an overall kappa that ranged between.76 and.84. The association rule mining analysis (...)
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  36.  32
    Cognitive Penetration and Cognitive Realism.Majid D. Beni - 2024 - Episteme 21 (1):270-285.
    The paper addresses the issue of theory-ladenness of observation/experimentation. Motivated by a naturalistic reading of Thomas Kuhn's insights into the same topic, I draw on cognitive neuroscience (predictive coding under Free Energy Principle) to scrutinise theory-ladenness. I equate theory-ladenness with the cognitive penetrability of perceptual inferences and argue that strong theory-ladenness prevails only under uncertain circumstances. This understanding of theory-ladenness is in line with Thomas Kuhn's view on the same subject as well as a cognitive version of (...)
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  37. Codes and their vicissitudes.Bernhard Hommel, Jochen Müsseler, Gisa Aschersleben & Wolfgang Prinz - 2001 - Behavioral and Brain Sciences 24 (5):910-926.
    First, we discuss issues raised with respect to the Theory of Event Coding (TEC)'s scope, that is, its limitations and possible extensions. Then, we address the issue of specificity, that is, the widespread concern that TEC is too unspecified and, therefore, too vague in a number of important respects. Finally, we elaborate on our views about TEC's relations to other important frameworks and approaches in the field like stages models, ecological approaches, and the two-visual-pathways model. Footnotes1 We acknowledge the precedence (...)
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  38.  31
    Biological Codes: A Field Guide for Code Hunters.Robert Prinz - 2024 - Biological Theory 19 (2):120-136.
    This article presents an update on known and unknown biological codes. While the genetic code has been recognized as a code for decades, most other codes were hidden in the shadow of this hallmark discovery. It was the dawn of the new millennium when the histone language and code were proclaimed in the years 2000 and 2001, respectively, marking the start of an explosion in the number of published codes across all biological disciplines since then. Actually, there (...)
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  39. Predictive coding and thought.Daniel Williams - 2020 - Synthese 197 (4):1749-1775.
    Predictive processing has recently been advanced as a global cognitive architecture for the brain. I argue that its commitments concerning the nature and format of cognitive representation are inadequate to account for two basic characteristics of conceptual thought: first, its generality—the fact that we can think and flexibly reason about phenomena at any level of spatial and temporal scale and abstraction; second, its rich compositionality—the specific way in which concepts productively combine to yield our thoughts. I consider two (...)
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  40.  30
    An effect of spatial–temporal association of response codes: Understanding the cognitive representations of time.Antonino Vallesi, Malcolm A. Binns & Tim Shallice - 2008 - Cognition 107 (2):501-527.
  41. Predictive coding and religious belief.Hans Van Eyghen - 2018 - Filosofia Unisinos 19 (3).
    In this paper I investigate the epistemic implications of a recent theory of religious cognition that draws on predictive coding. The theory argues that certain experiences are heavily shaped by a subject’s prior (religious) beliefs and thereby makes religious believers prone to detect invisible agents. The theory is an update of older theories of religious cognition but departs from them in crucial ways. I will assess the epistemic implications by reformulating existing arguments based on other (older) theories of religious cognition.
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  42.  30
    Natural Code of Subjective Experience.Ilya A. Surov - 2022 - Biosemiotics 15 (1):109-139.
    The paper introduces mathematical encoding for subjective experience and meaning in natural cognition. The code is based on a quantum-theoretic qubit structure supplementing classical bit with circular dimension, functioning as a process-causal template for representation of contexts relative to the basis decision. The qubit state space is demarcated in categories of emotional experience of animals and humans. Features of the resulting spherical map align with major theoreties in cognitive and emotion science, modeling of natural language, and semiotics, suggesting (...)
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  43. Words and the world: predictive coding and the language-perception-cognition interface.Gary Lupyan & Andy Clark - 2015 - Current Directions in Psychological Science 24 (4):279-284.
    Can what we know change what we see? Does language affect cognition and perception? The last few years have seen increased attention to these seemingly disparate questions, but with little theoretical advance. We argue that substantial clarity can be gained by considering these questions through the lens of predictive processing, a framework in which mental representations—from the perceptual to the cognitive—reflect an interplay between downward-flowing predictions and upward-flowing sensory signals. This framework provides a parsimonious account of how what we (...)
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  44.  33
    A fundamental limitation of the conjunctive codes learned in PDP models of cognition: Comment on Botvinick and Plaut (2006).Jeffrey S. Bowers, Markus F. Damian & Colin J. Davis - 2009 - Psychological Review 116 (4):986-995.
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  45.  34
    Embodied Cognition With and Without Mental Representations: The Case of Embodied Choices in Sports.Markus Raab & Duarte Araújo - 2019 - Frontiers in Psychology 10:467232.
    In this conceptual analysis contribution to the special issue on radical embodied cognition, we discuss how embodied cognition can exist with and without representations. We explore this concept through the lens of judgment and decision making in sports (JDMS). Embodied cognition has featured in many investigations of human behavior, but no single approach has emerged. Indeed, the very definitions of the concepts “embodiment” and “cognition” lack consensus, and consequently the degree of “radicalism” is not universally defined, either. In this paper (...)
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  46.  20
    Neural code: Another breach in the wall?Chloé Huetz, Samira Souffi, Victor Adenis & Jean-Marc Edeline - 2019 - Behavioral and Brain Sciences 42.
    Brette presents arguments that query the existence of the neural code. However, he has neglected certain evidence that could be viewed as proof that a neural code operates in the brain. Albeit these proofs show a link between neural activity and cognition, we discuss why they fail to demonstrate the existence of an invariant neural code.
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  47.  13
    Coding Ethical Decision-Making in Research.Wayne Fuqua, Thomas Valey & David Hartmann - 2017 - Science and Engineering Ethics 23 (1):121-146.
    This paper presents methods and challenges attendant on the use of protocol analysis to develop a model of heuristic processing applied to research ethics. Participants are exposed to ethically complex scenarios and asked to verbalize their thoughts as they formulate a requested decision. The model identifies functional parts of the decision-making task: interpretation, retrieval, judgment and editing and seeks to reliably code participant verbalizations to those tasks as well as to a set of cognitive tools generally useful in (...)
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  48.  55
    Code Biology, Peircean Biosemiotics, and Rosen’s Relational Biology.Marcello Barbieri - 2019 - Biological Theory 14 (1):21-29.
    The classical theories of the genetic code claimed that its coding rules were determined by chemistry—either by stereochemical affinities or by metabolic reactions—but the experimental evidence has revealed a totally different reality: it has shown that any codon can be associated with any amino acid, thus proving that there is no necessary link between them. The rules of the genetic code, in other words, obey the laws of physics and chemistry but are not determined by them. They are (...)
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  49.  47
    Event coding as feature guessing: The lessons of the motor theory of speech perception.Bruno Galantucci, Carol A. Fowler & M. T. Turvey - 2001 - Behavioral and Brain Sciences 24 (5):886-887.
    The claim that perception and action are commonly coded because they are indistinguishable at the distal level is crucial for theories of cognition. However, the consequences of this claim run deep, and the Theory of Event Coding (TEC) is not up to the challenge it poses. We illustrate why through a brief review of the evidence that led to the motor theory of speech perception.
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  50.  15
    Mind, code, and context: essays in pragmatics.Talmy Givón - 1989 - Hillsdale, N.J.: L. Erlbaum Associates.
    Scholars concerned with the phenomenon of mind have searched through history for a principled yet non-reductionist approach to the study of knowledge, communication, and behavior. Pragmatics has been a recurrent theme in Western epistemology, tracing itself back from pre-Socratic dialectics and Aristotle's bio- functionalism, all the way to Wittgenstein's content-dependent semantics. This book's treatment of pragmatics as an analytic method focuses on the central role of context in determining the perception, organization, and communication of experience. As a bioadaptive strategy, pragmatics (...)
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