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  1. Biorobotic experiments for the discovery of biological mechanisms.Edoardo Datteri & Guglielmo Tamburrini - 2007 - Philosophy of Science 74 (3):409-430.
    Robots are being extensively used for the purpose of discovering and testing empirical hypotheses about biological sensorimotor mechanisms. We examine here methodological problems that have to be addressed in order to design and perform “good” experiments with these machine models. These problems notably concern the mapping of biological mechanism descriptions into robotic mechanism descriptions; the distinction between theoretically unconstrained “implementation details” and robotic features that carry a modeling weight; the role of preliminary calibration experiments; the monitoring of experimental environments for (...)
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  • The challenge of consciousness with special reference to the exclusive disjunction.Alex Antonites - 2015 - HTS Theological Studies 71 (3).
    The theory of evolution makes sense of the emergence of consciousness. Reduction is not wrong as such, but must not be totalised. The fact that we are star stuff does not preclude the novelty of consciousness. Materialism is naturalism, but naturalism need not be materialism. Neural pathways are relevant but are not the total picture. The central thesis is about David Chalmers’s philosophy being based on an exclusive disjunction. An inclusive disjunction is, when explained, more appropriate. Functionalism is appropriate. Thomas (...)
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  • Moving parts: the natural alliance between dynamical and mechanistic modeling approaches.David Michael Kaplan - 2015 - Biology and Philosophy 30 (6):757-786.
    Recently, it has been provocatively claimed that dynamical modeling approaches signal the emergence of a new explanatory framework distinct from that of mechanistic explanation. This paper rejects this proposal and argues that dynamical explanations are fully compatible with, even naturally construed as, instances of mechanistic explanations. Specifically, it is argued that the mathematical framework of dynamics provides a powerful descriptive scheme for revealing temporal features of activities in mechanisms and plays an explanatory role to the extent it is deployed for (...)
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  • Michael Gazzaniga’s Neuro-cognitive Antireductionism and the Challenge of Neo-mechanistic Reduction.Diego Azevedo Leite - 2018 - Rivista Internazionale di Filosofia e Psicologia 9 (2):109-126.
    : Michael Gazzaniga, a prominent cognitive neuroscientist, has argued against reductionist accounts of cognition. Instead, Gazzaniga defends a form of non-reductive physicalism: epistemological neuro-cognitive non-reductionism and ontological monist physicalism. His position is motivated by the theses that: cognitive phenomena can be realized by multiple neural systems; many outcomes of these systems are unpredictable; and multi-level explanations are required. Epistemological neuro-cognitive non-reductionism is presented as the most appropriate stance to account for the way in which phenomena should be explained in cognitive (...)
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