Results for 'Mazviita Chirimuuta'

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  1. Extending, changing, and explaining the brain.Mazviita Chirimuuta - 2013 - Biology and Philosophy 28 (4):613-638.
    This paper addresses concerns raised recently by Datteri (Biol Philos 24:301–324, 2009) and Craver (Philos Sci 77(5):840–851, 2010) about the use of brain-extending prosthetics in experimental neuroscience. Since the operation of the implant induces plastic changes in neural circuits, it is reasonable to worry that operational knowledge of the hybrid system will not be an accurate basis for generalisation when modelling the unextended brain. I argue, however, that Datteri’s no-plasticity constraint unwittingly rules out numerous experimental paradigms in behavioural and systems (...)
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  2. Discussion of Susanna Siegel's “Can perceptual experiences be rational?”.Ori Beck, Mazviita Chirimuuta, T. Raja Rosenhagen, Susanna Siegel, Declan Smithies & Alison Springle - 2018 - Analytic Philosophy 59 (1):175-190.
    Replies to commentaries on "Can experiences be rational?", forthcoming in Analytic Philosophy.
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  3. Realism, Relativism, Adverbialism: How Different are they? Comments on Mazviita Chirimuuta's Outside Color.Mohan Matthen - 2017 - Philosophy and Phenomenological Research 95 (1):236-243.
    Mazviita Chirimuuta proposes a new “adverbialist” ontology of color. I argue that ontological disputes in the philosophy of color are uniformly terminological. Chirimuuta's proposal too is a terminological variant on others, though it has some hortatory value in directing attention to aspects of color science that have hitherto been neglected. On a side note, I also take issue with Chirimuuta's laudatory take on early modern theories of color.
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  4. The Embedded Neuron, the Enactive Field?M. Chirimuuta & I. Gold - 2009 - In John Bickle (ed.), The Oxford handbook of philosophy and neuroscience. New York: Oxford University Press.
    The concept of the receptive field, first articulated by Hartline, is central to visual neuroscience. The receptive field of a neuron encompasses the spatial and temporal properties of stimuli that activate the neuron, and, as Hubel and Wiesel conceived of it, a neuron’s receptive field is static. This makes it possible to build models of neural circuits and to build up more complex receptive fields out of simpler ones. Recent work in visual neurophysiology is providing evidence that the classical receptive (...)
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  5.  93
    How to be a realist about computational neuroscience.Danielle J. Williams - forthcoming - Synthese.
    Recently, a version of realism has been offered to address the simplification strategies used in computational neuroscience (Chirimuuta, 2023; 2024). According to this view, computational models provide us with knowledge about the brain, but they should not be taken literally in any sense, even rejecting the idea that the brain performs computations (computationalism). I acknowledge the need for considerations regarding simplification strategies in neuroscience and how they contribute to our interpretations of computational models; however, I argue that whether we (...)
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