Results for 'Brain plasticity'

970 found
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  1. Sleep and Brain Plasticity.Pierre Maquet, Carlyle Smith & Robert Stickgold (eds.) - 2003 - Oxford University Press UK.
    Sleep has long been a topic of fascination for artists and scientists. Why do we sleep? What function does sleep serve? Why do we dream? What significance can we attach to our dreams? We spend so much of our lives sleeping, yet its precise function is unclear, in spite of our increasing understanding of the processes generating and maintaining sleep. We now know that sleep can be accompanied by periods of intense cerebral activity, yet only recently has experimental data started (...)
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  2. A Plastic Temporal Brain Code for Conscious State Generation.Birgitta Dresp & Jean Durup - 2009 - Neural Plasticity 2009:1-15.
    Consciousness is known to be limited in processing capacity and often described in terms of a unique processing stream across a single dimension: time. In this paper, we discuss a purely temporal pattern code, functionally decoupled from spatial signals, for conscious state generation in the brain. Arguments in favour of such a code include Dehaene et al.’s long-distance reverberation postulate, Ramachandran’s remapping hypothesis, evidence for a temporal coherence index and coincidence detectors, and Grossberg’s Adaptive Resonance Theory. A time-bin resonance (...)
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  3. Materialism and ‘the soft substance of the brain’: Diderot and plasticity.Charles T. Wolfe - 2017 - British Journal for the History of Philosophy 25 (5):963-982.
    ABSTRACTMaterialism is the view that everything that is real is material or is the product of material processes. It tends to take either a ‘cosmological’ form, as a claim about the ultimate nature of the world, or a more specific ‘psychological’ form, detailing how mental processes are brain processes. I focus on the second, psychological or cerebral form of materialism. In the mid-to-late eighteenth century, the French materialist philosopher Denis Diderot was one of the first to notice that any (...)
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  4. A Plastic Temporal Code for Conscious State Generation.Birgitta Dresp-Langley - 2009 - Neural Plasticity 2009 (482696):1-15..
    Consciousness is known to be limited in processing capacity and often described in terms of a unique processing stream across a single dimension: time. In this paper, we discuss a purely temporal pattern code, functionally decoupled from spatial signals, for conscious state generation in the brain. Arguments in favour of such a code include Dehaene et al.'s long-distance reverberation postulate, Ramachandran's remapping hypothesis, evidence for a temporal coherence index and coincidence detectors, and Grossberg's Adaptive Resonance Theory. A time-bin resonance (...)
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  5. Concept Nativism and Neural Plasticity.Stephen Laurence & Eric Margolis - 2015 - In Eric Margolis & Stephen Laurence (eds.), The Conceptual Mind: New Directions in the Study of Concepts. Cambridge, Massachusetts: MIT Press. pp. 117-147.
    One of the most important recent developments in the study of concepts has been the resurgence of interest in nativist accounts of the human conceptual system. However, many theorists suppose that a key feature of neural organization—the brain’s plasticity—undermines the nativist approach to concept acquisition. We argue that, on the contrary, not only does the brain’s plasticity fail to undermine concept nativism, but a detailed examination of the neurological evidence actually provides powerful support for concept nativism.
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  6. Cultured brains and the production of subjectivity: The politics of affect(s) as an unfinished project.Charles T. Wolfe - 2014 - In W. Neidich (ed.), The Psychopathologies of Cognitive Capitalism II. ArchiveBooks. pp. 245-267.
    A reflection on overcoming Natur vs Geisteswissenschaften oppositions in thinking about the 'cultured brain' and plasticity.
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  7. Neural plasticity and the limits of scientific knowledge.Pasha Parpia - 2015 - Dissertation, University of Sussex
    Western science claims to provide unique, objective information about the world. This is supported by the observation that peoples across cultures will agree upon a common description of the physical world. Further, the use of scientific instruments and mathematics is claimed to enable the objectification of science. In this work, carried out by reviewing the scientific literature, the above claims are disputed systematically by evaluating the definition of physical reality and the scientific method, showing that empiricism relies ultimately upon the (...)
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  8. The social brain meets the reactive genome: neuroscience, epigenetics and the new social biology.Maurizio Meloni - 2014 - Frontiers in Human Neuroscience 8.
    The rise of molecular epigenetics over the last few years promises to bring the discourse about the sociality and susceptibility to environmental influences of the brain to an entirely new level. Epigenetics deals with molecular mechanisms such as gene expression, which may embed in the organism “memories” of social experiences and environmental exposures. These changes in gene expression may be transmitted across generations without changes in the DNA sequence. Epigenetics is the most advanced example of the new postgenomic and (...)
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  9. 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 (...)
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  10. Seven properties of self-organization in the human brain.Birgitta Dresp-Langley - 2020 - Big Data and Cognitive Computing 2 (4):10.
    The principle of self-organization has acquired a fundamental significance in the newly emerging field of computational philosophy. Self-organizing systems have been described in various domains in science and philosophy including physics, neuroscience, biology and medicine, ecology, and sociology. While system architecture and their general purpose may depend on domain-specific concepts and definitions, there are (at least) seven key properties of self-organization clearly identified in brain systems: 1) modular connectivity, 2) unsupervised learning, 3) adaptive ability, 4) functional resiliency, 5) functional (...)
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  11. Evidence Linking Brain Activity Modulation to Age and to Deductive Training.Paula Álvarez-Merino, Carmen Requena & Francisco Salto - 2018 - Neural Plasticity 2018:1-20.
    Electrical brain activity modulation in terms of changes in its intensity and spatial distribution is a function of age and task demand. However, the dynamics of brain modulation is unknown when it depends on external factors such as training. The aim of this research is to verify the effect of deductive reasoning training on the modulation in the brain activity of healthy younger and older adults ( (mean age of 21 ± 3.39) and (mean age of 68.92 (...)
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  12. Embraining Culture: Leaky Minds and Spongy Brains.Julian Kiverstein & Mirko Farina - 2011 - Teorema: International Journal of Philosophy (2).
    We offer an argument for the extended mind based on considerations from brain development. We argue that our brains develop to function in partnership with cognitive resources located in our external environments. Through our cultural upbringing we are trained to use artefacts in problem solving that become factored into the cognitive routines our brains support. Our brains literally grow to work in close partnership with resources we regularly and reliably interact with. We take this argument to be in line (...)
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  13. Alva Noë, Out of Our Heads. Why You Are Not Your Brain and Other Lessons from the Biology of Consciousness, Hill and Wang, New York, 2009. [REVIEW]Pietro Salis - 2011 - Aphex 4:246-264.
    Ita La recensione presenta la prospettiva enattivista difesa da Alva Noë, e ne discute alcuni aspetti specifici. Il pensiero, la coscienza e la cognizione non sono pienamente comprensibili, secondo l’enattivismo di Noë, senza un’adeguata considerazione del ruolo ricoperto dal corpo e dall’ambiente. Sarebbe quindi sbagliato continuare a pensare che il cervello da solo sia responsabile dei processi cognitivi umani: il programma che ricerca i correlati neurali della coscienza sarebbe quindi destinato al fallimento dal principio, perché tralascia in partenza corpo e (...)
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  14. Phantom Sensations: What's a Brain to Do? A Critical Review of the Re-mapping Hypothesis.Daniel DeFranco - 2018 - Journal of Cognition and Neuroethics 5 (1):1-25.
    I will review the most widely held account of phantom sensations; the “re-mapping hypothesis.” According to the re-mapping hypothesis, amputation is followed by significant neural reorganization that, over time, restores the alignment between the brain’s representation of and the actual condition of the body. Implicit in the re-mapping hypothesis is the view that the brain’s primary function is to accurately represent the body. In response, I propose an alternative theory, the “preservation hypothesis.” The preservation hypothesis argues that the (...)
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  15. Morphing Intelligence: From IQ Measurement to Artificial Brains. [REVIEW]Ekin Erkan - 2020 - Chiasma 6 (1):248-260.
    In her seminal text, What Should We Do With Our Brain? (2008), Catherine Malabou gestured towards neuroplasticity to upend Bergson's famous parallel of the brain as a "central telephonic exchange," whereby the function of the brain is simply that of a node where perceptions get in touch with motor mechanisms, the brain as an instrument limited to the transmission and divisions of movements. Drawing from the history of cybernetics one can trace how Bergson's 'telephonic exchange' prefigures (...)
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  16. Symbolic Conscious Experience.Venkata Rayudu Posina - 2017 - Tattva - Journal of Philosophy 9 (1):1-12.
    Inspired by the eminently successful physical theories and informed by commonplace experiences such as seeing a cat upon looking at a cat, conscious experience is thought of as a measurement or photocopy of given stimulus. Conscious experience, unlike a photocopy, is symbolic—like language—in that the relation between conscious experience and physical stimulus is analogous to that of the word "cat" and its meaning, i.e., arbitrary and yet systematic. We present arguments against the photocopy model and arguments for a symbolic conception (...)
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  17. Reid's Discovery of the Sense of Balance.David Vender - 2010 - Journal of Scottish Thought 3:23 - 40.
    The sense of balance remains a Cinderella among our senses. Although the vestibular apparatus and the apprehension of motion, equilibrium and orientation which it serves has now been studied extensively and descriptions abound in textbooks on perceptual psychology, its key role in our agency remains neglected in philosophical accounts of perception. Popularly received wisdom on the senses also largely ignores balance and it has recently even been called 'the lost sense'. -/- Recognition for the discovery of this sense should probably (...)
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  18. (3 other versions)Sensory Substitution Conference Question Three.Kevin Connolly, Diana Acosta Navas, Umut Baysan, Janiv Paulsberg & David Suarez - manuscript
    This is an excerpt from a report on the Sensory Substitution and Augmentation Conference at the British Academy in March of 2013. This portion of the report explores the question: How does sensory substitution interact with the brain’s architecture?
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  19. Enactivism and the New Teleology: Reconciling the Warring Camps.Ralph D. Ellis - 2014 - Avant: Trends in Interdisciplinary Studies (2):173-198.
    Enactivism has the potential to provide a sense of teleology in purpose-directed action, but without violating the principles of efficient causation. Action can be distinguished from mere reaction by virtue of the fact that some systems are self-organizing. Self-organization in the brain is reflected in neural plasticity, and also in the primacy of motivational processes that initiate the release of neurotransmitters necessary for mental and conscious functions, and which guide selective attention processes. But in order to flesh out (...)
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  20. Dynamic Neurons, Santiago Ramón y Cajal.PhD Tanya Kelley - unknown
    Santiago Ramón y Cajal practice what became neuroscience in the remote town of Ayerbe, Aragón Spain. He struggled to travel to conferences in northern Europe to share his remarkable discovery.
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  21. Implications of Neuroplasticity to the Philosophical Debate of Free Will and Determinism.Panagiotis Kormas, Antonia Moutzouri & Evangelos D. Protopapadakis - 2022 - Handbook of Computational Neurodegeneration.
    Neuroplasticity, the capacity of the brain to induce changes in response to environmental stimuli, entails a continuous rearrangement of the neural network through a complex interaction between genetics and environment. Within this process, the plastic brain uses its internal representations to predict future conditions and proactively proceed to actions. It can be said that plasticity demands a rethinking of the concept of determinism as the process of coming-to-be is directly related to modifications produced by experience. Pure determinism (...)
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  22. Mad Speculation and Absolute Inhumanism: Lovecraft, Ligotti, and the Weirding of Philosophy.Ben Woodard - 2011 - Continent 1 (1):3-13.
    continent. 1.1 : 3-13. / 0/ – Introduction I want to propose, as a trajectory into the philosophically weird, an absurd theoretical claim and pursue it, or perhaps more accurately, construct it as I point to it, collecting the ground work behind me like the Perpetual Train from China Mieville's Iron Council which puts down track as it moves reclaiming it along the way. The strange trajectory is the following: Kant's critical philosophy and much of continental philosophy which has followed, (...)
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  23. Does consciousness exist independently of present time and present time independently of consciousness.Birgitta Dresp-Langley & Jean Durup - 2012 - Open Journal of Philosophy 2 (1):45-49.
    While some are currently debating whether time may or may not be an illusion, others keep devoting their time to the science of consciousness. Time as such may be seen as a physical or a subjective variable, and the limitations in our capacity of perceiving and analyzing temporal order and change in physical events definitely constrain our understanding of consciousness which, in return, constrains our conceptual under-standing of time. Temporal codes generated in the brain have been considered as the (...)
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  24. The perception of phantom Limbs: The D. O. Hebb lecture.Vilayanur S. Ramachandran & William Hirstein - 1998 - Brain 121:1603-1630.
    Almost everyone who has a limb amputated will experience a phantom limb--the vivid impression that the limb is not only still present, but in some cases, painful. There is now a wealth of empirical evidence demonstrating changes in cortical topography in primates following deafferentation or amputation, and this review will attempt to relate these in a systematic way to the clinical phenomenology of phantom limbs. With the advent of non-invasive imaging techniques such as MEG (magnetoencephalogram) and functional MRI, topographical reorganization (...)
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  25. The Reality of Dreaming.Eugene Halton - 1992 - Theory, Culture and Society 9 (4):119-139.
    Dreaming is a communicative activity between the most sensitive archive of the enregistered experience of life on the earth, the brain, and the most plastic medium for the discovery and practice of meaning, the mind or culture. Both love and war have been made on the basis of dreams, not to mention scientific discoveries. In ancient Greece dreams were medicinal parts of curative sleeping or "incubation" rites in the temple of Aesculapius, and many psychoanalytic physicians today still consider dreams (...)
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  26. From Biological Synapses to "Intelligent" Robots.Birgitta Dresp-Langley - 2022 - Electronics 11:1-28.
    This selective review explores biologically inspired learning as a model for intelligent robot control and sensing technology on the basis of specific examples. Hebbian synaptic learning is discussed as a functionally relevant model for machine learning and intelligence, as explained on the basis of examples from the highly plastic biological neural networks of invertebrates and vertebrates. Its potential for adaptive learning and control without supervision, the generation of functional complexity, and control architectures based on self-organization is brought forward. Learning without (...)
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  27. Visuospatial Integration: Paleoanthropological and Archaeological Perspectives.Emiliano Bruner, Enza Spinapolice, Ariane Burke & Karenleigh A. Overmann - 2018 - In Laura Desirèe Di Paolo, Fabio Di Vincenzo & Francesca De Petrillo (eds.), Evolution of Primate Social Cognition. Springer Verlag. pp. 299-326.
    The visuospatial system integrates inner and outer functional processes, organizing spatial, temporal, and social interactions between the brain, body, and environment. These processes involve sensorimotor networks like the eye–hand circuit, which is especially important to primates, given their reliance on vision and touch as primary sensory modalities and the use of the hands in social and environmental interactions. At the same time, visuospatial cognition is intimately connected with memory, self-awareness, and simulation capacity. In the present article, we review issues (...)
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  28. Medical Models of Addiction.Harold Kincaid & Jacqueline Anne Sullivan - 2010 - In Don Ross, Harold Kincaid & David Spurrett (eds.), What Is Addiction? The MIT Press.
    Biomedical science has been remarkably successful in explaining illness by categorizing diseases and then by identifying localizable lesions such as a virus and neoplasm in the body that cause those diseases. Not surprisingly, researchers have aspired to apply this powerful paradigm to addiction. So, for example, in a review of the neuroscience of addiction literature, Hyman and Malenka (2001, p. 695) acknowledge a general consensus among addiction researchers that “[a]ddiction can appropriately be considered as a chronic medical illness.” Like other (...)
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  29. Dynamic Change of Awareness during Meditation Techniques: Neural and Physiological Correlates.Jerath Ravinder, Vernon A. Barnes, David Dillard-Wright, Shivani Jerath & Brittany Hamilton - 2012 - Frontiers in Human Neuroscience 6:1-5.
    Recent fndings illustrate how changes in consciousness accommodated by neural correlates and plasticity of the brain advance a model of perceptual change as a function of meditative practice. During the mindbody response neural correlates of changing awareness illustrate how the autonomic nervous system shifts from a sympathetic dominant to a parasympathetic dominant state. Expansion of awareness during the practice of meditation techniques can be linked to the Default Mode Network (DMN), a network of brain regions that is (...)
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  30. Cortical excitability in patients with focal epilepsy: a study with high frequency repetitive transcranial magnetic stimulation (rTMS).Francesca Gilio, Elisa Iacovelli, Maria Gabriele, Elena Giacomelli, Cinzia Lorenzano, Floriana Picchiorri, Anna M. Cipriani, Maria T. Faedda & Maurizio Inghilleri - 2008 - Dialogues in Philosophy, Mental and Neuro Sciences 1 (1):28-32.
    Epileptogenesis involves an increase in excitatory synaptic strength in the brain in a manner similar to synaptic potentiation. In the present study we investigated the mechanisms of short-term synaptic potentiation in patients with focal epilepsy by using 5 Hz repetitive transcranial magnetic stimulation (rTMS), a non invasive neurophysiological technique able to investigate the mechanisms of synaptic plasticity in humans. Ten patients with focal idiopathic cortical epilepsy were studied. 5 Hz-rTMS (10 stimuli-trains, 120% of motor threshold, RMT) was delivered (...)
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  31. Bridging emotion theory and neurobiology through dynamic systems modeling.Marc D. Lewis - 2005 - Behavioral and Brain Sciences 28 (2):169-194.
    Efforts to bridge emotion theory with neurobiology can be facilitated by dynamic systems (DS) modeling. DS principles stipulate higher-order wholes emerging from lower-order constituents through bidirectional causal processes cognition relations. I then present a psychological model based on this reconceptualization, identifying trigger, self-amplification, and self-stabilization phases of emotion-appraisal states, leading to consolidating traits. The article goes on to describe neural structures and functions involved in appraisal and emotion, as well as DS mechanisms of integration by which they interact. These mechanisms (...)
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  32. Controlled and uncontrolled English for ontology editing.Brian Donohue, Douglas Kutach, Robert Ganger, Ron Rudnicki, Tien Pham, Geeth de Mel, Dave Braines & Barry Smith - 2015 - Semantic Technology for Intelligence, Defense and Security 1523:74-81.
    Ontologies formally represent reality in a way that limits ambiguity and facilitates automated reasoning and data fusion, but is often daunting to the non-technical user. Thus, many researchers have endeavored to hide the formal syntax and semantics of ontologies behind the constructs of Controlled Natural Languages (CNLs), which retain the formal properties of ontologies while simultaneously presenting that information in a comprehensible natural language format. In this paper, we build upon previous work in this field by evaluating prospects of implementing (...)
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  33. Plastic Subjects: Plasticity, Time, and the Bling Ring.Adam E. Foster - 2022 - New Political Science 44 (2):265-282.
    This paper explores the events surrounding a string of robberies from the homes of young celebrities living in Los Angeles County by a group of teenagers referred to by the media as “The Bling Ring.” It argues that the group demonstrates the intersections of desire and materiality under the conditions of a culture driven by idolization of the celebrity, referring to the works of Jean Baudrillard, Pierre Bourdieu, and French collective Tiqqun. It further examines the events as a moment where (...)
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  34. Plasticity, Numerical Identity,and Transitivity.Samuel Kahn - 2022 - International Philosophical Quarterly 62 (3):289-299.
    In a recent paper, Chunghyoung Lee argues that, because zygotes are developmentally plastic, they cannot be numerically identical to the singletons into which they develop, thereby undermining conceptionism. In this short paper, I respond to Lee. I argue, first, that, on the most popular theories of personal identity, zygotic plasticity does not undermine conceptionism, and, second, that, even overlooking this first issue, Lee’s plasticity argument is problematic. My goal in all of this is not to take a stand (...)
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  35. Phenotypic plasticity.Massimo Pigliucci - 2001 - In C. W. Fox D. A. Roff (ed.), Evolutionary Ecology: Concepts and Case Studies.
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  36. Phenotypic plasticity and evolution by genetic assimilation.Massimo Pigliucci, Courtney Murren & Carl Schlichting - 2006 - Journal of Experimental Biology 209:2362-2367.
    In addition to considerable debate in the recent evolutionary literature about the limits of the Modern Synthesis of the 1930s and 1940s, there has also been theoretical and empirical interest in a variety of new and not so new concepts such as phenotypic plasticity, genetic assimilation and phenotypic accommodation. Here we consider examples of the arguments and counter- arguments that have shaped this discussion. We suggest that much of the controversy hinges on several misunderstandings, including unwarranted fears of a (...)
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  37. The “puzzle” of emotional plasticity.Raamy Majeed - 2022 - Philosophical Psychology 35 (4):546-568.
    The “puzzle” of emotional plasticity concerns making sense of two conflicting bodies of evidence: evidence that emotions often appear modular in key respects, and evidence that our emotions also often appear to transcend this modularity. In this paper, I argue a developmentalist approach to emotion, which builds on Karmiloff-Smith’s (1986, 1992, 1994, 2015) work on cognitive development, can help us dissolve this puzzle.
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  38. Evolution of phenotypic plasticity: where are we going now?Massimo Pigliucci - 2005 - Trends in Ecology and Evolution 20 (9):481-486.
    The study of phenotypic plasticity has progressed significantly over the past few decades. We have moved from variation for plasticity being considered as a nuisance in evolutionary studies to it being the primary target of investigations that use an array of methods, including quantitative and molecular genetics, as well as of several approaches that model the evolution of plastic responses. Here, I consider some of the major aspects of research on phenotypic plasticity, assessing where progress has been (...)
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  39. Brain Data in Context: Are New Rights the Way to Mental and Brain Privacy?Daniel Susser & Laura Y. Cabrera - 2023 - American Journal of Bioethics Neuroscience 15 (2):122-133.
    The potential to collect brain data more directly, with higher resolution, and in greater amounts has heightened worries about mental and brain privacy. In order to manage the risks to individuals posed by these privacy challenges, some have suggested codifying new privacy rights, including a right to “mental privacy.” In this paper, we consider these arguments and conclude that while neurotechnologies do raise significant privacy concerns, such concerns are—at least for now—no different from those raised by other well-understood (...)
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  40. Deep Brain Stimulation, Authenticity and Value.Pugh Jonathan, Maslen Hannah & Savulescu Julian - 2017 - Cambridge Quarterly of Healthcare Ethics 26 (4):640-657.
    Deep brain stimulation has been of considerable interest to bioethicists, in large part because of the effects that the intervention can occasionally have on central features of the recipient’s personality. These effects raise questions regarding the philosophical concept of authenticity. In this article, we expand on our earlier work on the concept of authenticity in the context of deep brain stimulation by developing a diachronic, value-based account of authenticity. Our account draws on both existentialist and essentialist approaches to (...)
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  41. Constructival plasticity.Ronald P. Endicott - 1994 - Philosophical Studies 74 (1):51-75.
    Some scientists and philosophers claimed that there is a converse to multiple realizability. While a given higher-level property can be realized by different lower-level properties (multiple realizability), a given lower-level property can in turn serve to realize different higher-level properties (this converse I dubbed the unfortunately obscure "constructival plasticity" to emphasize the constructive metaphysics involved in this converse to multiple realizability). I began by defining multiple realizabilty in a formal way. (Looking back, one point of interest is that I (...)
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  42. Deep brain stimulation and revising the Mental Health Act: the case for intervention-specific safeguards.Jonathan Pugh, Tipu Aziz, Jonathan Herring & Julian Savulescu - 2018 - British Journal of Psychiatry 214 (3).
    Under the current Mental Health Act of England and Wales, it is lawful to perform deep brain stimulation in the absence of consent and independent approval. We argue against the Care Quality Commission's preferred strategy of addressing this problematic issue, and offer recommendations for deep brain stimulation-specific provisions in a revised Mental Health Act.
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  43. Über den Zusammenhang zwischen plastic natures, spirit of nature und dem Naturgesetzbegriff bei Cudworth und More.Andreas Hüttemann - 2001 - In Kausalität und Naturgesetz in der frühen Neuzeit. Steiner. pp. 139-154.
    The paper discusses Cudworth's plastice natures and More's spirit of nature in the context of different 17th century conceptions of laws of nature.
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  44. Impressionable Biologies: From the Archaeology of Plasticity to the Sociology of Epigenetics.Maurizio Meloni - 2019 - New York, USA: Routledge.
    Chapter 1st of the book. This chapter explores the fundamental ambiguity of the concept of plasticity – between openness and determination, change and stabilization of forms. This pluralism of meanings is used to unpack different instantiations of corporeal plasticity across various epochs, starting from ancient and early modern medicine, particularly humouralism. A genealogical approach displaces the notion that plasticity is a unitary phenomenon, coming in the abstract, and illuminates the unequal distribution of different forms of plasticities across (...)
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  45. Natural selection, plasticity, and the rationale for largest-scale trends.Hugh Desmond - 2018 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 68:25-33.
    Many have argued that there is no reason why natural selection should cause directional increases in measures such as body size or complexity across evolutionary history as a whole. In this paper I argue that this conclusion does not hold for selection for adaptations to environmental variability, and that, given the inevitability of environmental variability, trends in adaptations to variability are an expected feature of evolution by natural selection. As a concrete instance of this causal structure, I outline how this (...)
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  46. Control of phenotypic plasticity via regulatory genes.Carl Schlichting & Massimo Pigliucci - 1993 - American Naturalist 142 (2):366-370.
    A response to Via about the existence (or not) and role of plasticity genes in evolution.
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  47. Brain Death as the End of a Human Organism as a Self-moving Whole.Adam Omelianchuk - 2021 - Journal of Medicine and Philosophy 46 (5):530-560.
    The biophilosophic justification for the idea that “brain death” is death needs to support two claims: that what dies in human death is a human organism, not merely a psychological entity distinct from it; that total brain failure signifies the end of the human organism as a whole. Defenders of brain death typically assume without argument that the first claim is true and argue for the second by defending the “integrative unity” rationale. Yet the integrative unity rationale (...)
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  48. Developmental phenotypic plasticity: where internal programming meets the external environment.Massimo Pigliucci - 1998 - Current Biology 1:87-91.
    Developmental plasticity as the nexus between genetics and ecology.
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  49. Developmental phenotypic plasticity: where ecology and evolution meet molecular biology.Hilary S. Callahan, Massimo Pigliucci & Carl D. Schlichting - 1997 - Bioessays 19 (6):519-525.
    An exploration of the nexus between ecology, evolutionary biology and molecular biology, via the concept of phenotypic plasticity.
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  50. Intention inertia and the plasticity of planning.Piotr Makowski - 2016 - Philosophical Psychology 29 (7):1045-1056.
    In this article, I examine Michael Bratman’s account of stability in his planning theory of intention. Future-directed intentions should be stable, or appropriately resistant to change, over time. Bratman claims that the norm of stability governs both intentions and plans. The aim of this article is to critically enrich Bratman’s account of stability by introducing plasticity as an additional norm of planning. I construct plasticity as a kind of stability of intentions which supplements Bratman’s notion of “reasonable stability.” (...)
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