Results for 'phenotypic elasticity'

990 found
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  1.  28
    Phenotypic Plasticity in Animals Exposed to Osmotic Stress – Is it Always Adaptive?Jan-Peter Hildebrandt, Amanda A. Wiesenthal & Christian Müller - 2018 - Bioessays 40 (11):1800069.
    Hyperplasia and hypertrophy are elements of phenotypic plasticity adjusting organ size and function. Because they are costly, we assume that they are beneficial. In this review, the authors discuss examples of tissue and organ systems that respond with plastic changes to osmotic stress to raise awareness that we do not always have sufficient experimental evidence to conclude that such processes provide fitness advantages. Changes in hydranth architecture in the hydroid Cordylophora caspia or variations in size in the anal papillae (...)
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  2.  17
    FKRP directed fibronectin glycosylation: A novel mechanism giving insights into muscular dystrophies?Andrew Boyd, Margo Montandon, Alasdair J. Wood & Peter D. Currie - 2022 - Bioessays 44 (5):2100270.
    The recently uncovered role of Fukutin‐related protein (FKRP) in fibronectin glycosylation has challenged our understanding of the basis of disease pathogenesis in the muscular dystrophies. FKRP is a Golgi‐resident glycosyltransferase implicated in a broad spectrum of muscular dystrophy (MD) pathologies that are not fully attributable to the well‐described α‐Dystroglycan hypoglycosylation. By revealing a new role for FKRP in the glycosylation of fibronectin, a modification critical for the development of the muscle basement membrane (MBM) and its associated muscle linkages, new possibilities (...)
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  3. J. goldembero.Elastic Scattering Form Factor & Nilsson Model - 1968 - In Peter Koestenbaum (ed.), Proceedings. [San Jose? Calif.,: [San Jose? Calif.. pp. 379.
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  4. Phenotypic Plasticity: Beyond Nature and Nurture.Massimo Pigliucci - 2001 - Johns Hopkins University Press.
    Phenotypic plasticity integrates the insights of ecological genetics, developmental biology, and evolutionary theory. Plasticity research asks foundational questions about how living organisms are capable of variation in their genetic makeup and in their responses to environmental factors. For instance, how do novel adaptive phenotypes originate? How do organisms detect and respond to stressful environments? What is the balance between genetic or natural constraints (such as gravity) and natural selection? The author begins by defining phenotypic plasticity and detailing its (...)
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  5. Phenotypic Evolution: A Reaction Norm Perspective.Carl Schlichting & Massimo Pigliucci - 1998 - Sinauer.
    Phenotypic Evolution explicitly recognizes organisms as complex genetic-epigenetic systems developing in response to changing internal and external environments. As a key to a better understanding of how phenotypes evolve, the authors have developed a framework that centers on the concept of the Developmental Reaction Norm. This encompasses their views: (1) that organisms are better considered as integrated units than as disconnected parts (allometry and phenotypic integration); (2) that an understanding of ontogeny is vital for evaluating evolution of adult (...)
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  6. Extended phenotypes and extended organisms.J. Scott Turner - 2004 - Biology and Philosophy 19 (3):327-352.
    Phenotype, whether conventional or extended, is defined as a reflectionof an underlying genotype. Adaptation and the natural selection thatfollows from it depends upon a progressively harmonious fit betweenphenotype and environment. There is in Richard Dawkins' notion ofthe extended phenotype a paradox that seems to undercut conventionalviews of adaptation, natural selection and adaptation. In a nutshell, ifthe phenotype includes an organism's environment, how then can theorganism adapt to itself? The paradox is resolvable through aphysiological, as opposed to a genetic, theory of (...)
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  7. Phenotypic Integration: Studying the Ecology and Evolution of Complex Phenotypes.Massimo Pigliucci & Katherine A. Preston (eds.) - 2004 - Oxford University Press.
    A new voice in the nature-nurture debate can be heard at the interface between evolution and development. Phenotypic integration is a major growth area in research.
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  8.  11
    Stretched Elastics, the Tour de France, and a Meaningful Life.Tim Elcombe & Jill Tracey - 2010-09-24 - In Fritz Allhoff, Jesús Ilundáin‐Agurruza & Michael W. Austin (eds.), Cycling ‐ Philosophy for Everyone. Wiley‐Blackwell. pp. 241–252.
    This chapter contains sections titled: The Bike as a Vehicle for Meaningful Suffering Suffering as the Hub of the Tour de France Share the Road! (And the Pain) Phil and Paul, and the Extension of Meaningful Suffering Of Suffering and Bicycles Notes.
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  9.  43
    Phenotypes from ancient DNA: Approaches, insights and prospects.Gloria G. Fortes, Camilla F. Speller, Michael Hofreiter & Turi E. King - 2013 - Bioessays 35 (8):690-695.
    The great majority of phenotypic characteristics are complex traits, complicating the identification of the genes underlying their expression. However, both methodological and theoretical progress in genome‐wide association studies have resulted in a much better understanding of the underlying genetics of many phenotypic traits, including externally visible characteristics (EVCs) such as eye and hair color. Consequently, it has become possible to predict EVCs from human samples lacking phenotypic information. Predicting EVCs from genetic evidence is clearly appealing for forensic (...)
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  10. The genotype/phenotype distinction.Richard Lewontin - 2008 - Stanford Encyclopedia of Philosophy.
    The distinction between phenotype and genotype is fundamental to the understanding of heredity and development of organisms. The genotype of an organism is the class to which that organism belongs as determined by the description of the actual physical material made up of DNA that was passed to the organism by its parents at the organism's conception. For sexually reproducing organisms that physical material consists of the DNA contributed to the fertilized egg by the sperm and egg of its two (...)
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  11. Genotype–phenotype mapping and the end of the ‘genes as blueprint’ metaphor.Massimo Pigliucci - 2010 - Philosophical Transactions Royal Society B 365:557–566.
    In a now classic paper published in 1991, Alberch introduced the concept of genotype–phenotype (G!P) mapping to provide a framework for a more sophisticated discussion of the integration between genetics and developmental biology that was then available. The advent of evo-devo first and of the genomic era later would seem to have superseded talk of transitions in phenotypic space and the like, central to Alberch’s approach. On the contrary, this paper shows that recent empirical and theoretical advances have only (...)
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  12. Elastic Language: How and Why We Stretch Our Words.[author unknown] - 2015
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  13.  46
    Digital Phenotyping: an Epistemic and Methodological Analysis.Simon Coghlan & Simon D’Alfonso - 2021 - Philosophy and Technology 34 (4):1905-1928.
    Some claim that digital phenotyping will revolutionize understanding of human psychology and experience and significantly promote human wellbeing. This paper investigates the nature of digital phenotyping in relation to its alleged promise. Unlike most of the literature to date on philosophy and digital phenotyping, which has focused on its ethical aspects, this paper focuses on its epistemic and methodological aspects. The paper advances a tetra-taxonomy involving four scenario types in which knowledge may be acquired from human “digitypes” by digital phenotyping. (...)
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  14. Phenotypic integration: studying the ecology and evolution of complex phenotypes.Massimo Pigliucci - 2003 - Ecology Letters 6:265-272.
    Phenotypic integration refers to the study of complex patterns of covariation among functionally related traits in a given organism. It has been investigated throughout the 20th century, but has only recently risen to the forefront of evolutionary ecological research. In this essay, I identify the reasons for this late flourishing of studies on integration, and discuss some of the major areas of current endeavour: the interplay of adaptation and constraints, the genetic and molecular bases of integration, the role of (...)
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  15.  18
    Elastic Worker: Time‐Sense, Energy and the Paradox of Resilience.Adrian Rebecca Rozelle‐Stone - 2020 - Philosophical Investigations 43 (1-2):177-196.
    This essay considers Simone Weil's experiences in factories and her social–political reflections on work, time and energy, in conjunction with arguments from theorists Melissa Gregg, Theodor Adorno and Sara Ahmed, to raise questions about supposedly humane interventions, including the cultivation of resilience, in the contemporary workplace. The transition from time‐sense in factory work at the turn of the century is examined, along with the growth of corporate time management ideologies and practices in the mid–late 20th century, and finally, the associated (...)
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  16.  74
    Genotype-Phenotype Maps.Peter F. Stadler & Bärbel M. R. Stadler - 2006 - Biological Theory 1 (3):268-279.
    The current implementation of the Neo-Darwinian model of evolution typically assumes that the set of possible phenotypes is organized into a highly symmetric and regular space. Most conveniently, a Euclidean vector space is used, representing phenotypic properties by real-valued variables. Computational work on the biophysical genotype-phenotype model of RNA folding, however, suggests a rather different picture. If phenotypes are organized according to genetic accessibility, the resulting space lacks a metric and can be formalized only in terms of a relatively (...)
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  17.  43
    Human phenotypic morality and the biological basis for knowing good.Margaret Boone Rappaport & Christopher Corbally - 2017 - Zygon 52 (3):822-846.
    Co-creating knowledge takes a new approach to human phenotypic morality as a biologically based, human lineage specific trait. Authors from very different backgrounds first review research on the nature and origins of morality using the social brain network, and studies of individuals who cannot “know good” or think morally because of brain dysfunction. They find these models helpful but insufficient, and turn to paleoanthropology, cognitive science, and neuroscience to understand human moral capacity and its origins long ago, in the (...)
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  18. Temporal elasticity in "real time" media: towards the spread event.Misha Kavka - 2019 - In Reinhold Gorling, Barbara Gronau & Ludger Schwarte (eds.), Aesthetics of standstill. Berlin: Sternberg Press.
     
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  19.  32
    Tendon elasticity and positional control.R. McN Alexander - 1995 - Behavioral and Brain Sciences 18 (4):745-745.
    The spring-like behaviour of a joint following a sudden change of torque is partly a result of the elastic properties of tendons. A large fall in a muscle with a long tendon may be accompanied by tendon recoil causing joint movements as large as 20°.
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  20.  25
    Phenotypic Plasticity and Reaction Norms.Jonathan M. Kaplan - 2008 - In Sahorta Sarkar & Anya Plutynski (eds.), Companion to the Philosophy of Biology. Blackwell. pp. 205–222.
    This chapter contains section titled: Introduction: What is Phenotypic Plasticity? Developmental Conversion and Developmental Sensitivity: Two Forms of Phenotypic Plasticity Environmental Heterogeneity, Cues, and Plasticity Phenotypic Plasticity and Developmental Buffering The Future of Phenotypic Plasticity Research Acknowledgments References Further Reading.
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  21. Elastic Membrane Based Model of Human Perception.Alexander Egoyan - 2011 - Toward a Science of Consciousness.
    Undoubtedly the Penrose-Hameroff Orch OR model may be considered as a good theory for describing information processing mechanisms and holistic phenomena in the human brain, but it doesn’t give us satisfactory explanation of human perception. In this work a new approach explaining our perception is introduced, which is in good agreement with Orch OR model and other mainstream science theories such as string theory, loop quantum gravity and holographic principle. It is shown that human perception cannot be explained in the (...)
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  22. Phenotypic plasticity.Massimo Pigliucci - 2001 - In C. W. Fox D. A. Roff (ed.), Evolutionary Ecology: Concepts and Case Studies.
  23.  57
    The evolution of phenotypic plasticity: Genealogy of a debate in genetics.Antonine Nicoglou - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 50:67-76.
    The paper describes the context and the origin of a particular debate that concerns the evolution of phenotypic plasticity. In 1965, British biologist A. D. Bradshaw proposed a widely cited model intended to explain the evolution of norms of reaction, based on his studies of plant populations. Bradshaw’s model went beyond the notion of the “adaptive norm of reaction” discussed before him by Dobzhansky and Schmalhausen by suggesting that “plasticity” the ability of a phenotype to be modified by the (...)
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  24.  79
    The phenotypic gambit: selective pressures and ESS methodology in evolutionary game theory.Hannah Rubin - 2016 - Biology and Philosophy 31 (4):551-569.
    The ‘phenotypic gambit,’ the assumption that we can ignore genetics and look at the fitness of phenotypes to determine the expected evolutionary dynamics of a population, is often used in evolutionary game theory. However, as this paper will show, an overlooked genotype to phenotype map can qualitatively affect evolution in ways the phenotypic approach cannot predict or explain. This gives us reason to believe that, even in the long-term, correspondences between phenotypic predictions and dynamical outcomes are not (...)
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  25.  42
    Eco-phenotypic physiologies: a new kind of modeling for unifying evolution, ecology and cultural transmission.Fabrizio Panebianco & Emanuele Serrelli - unknown
    Mathematical modeling can ground communication and reciprocal enrichment among fields of knowledge whose domains are very different. We propose a new mathematical model applicable in biology, specified into ecology and evolutionary biology, and in cultural transmission studies, considered as a branch of economics. Main inspiration for the model are some biological concepts we call “eco-phenotypic” such as development, plasticity, reaction norm, phenotypic heritability, epigenetics, and niche construction. “Physiology” is a core concept we introduce and translate differently in the (...)
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  26.  50
    The extended phenotype: a comparison with niche construction theory.David A. Wells - 2015 - Biology and Philosophy 30 (4):547-567.
    While niche construction theory locates animal artefacts in their constructors’ environment, hence treating them as capable of exerting selective pressure on both the constructors and their descendants, the extended phenotype concept assimilates artefacts with their constructors’ genes. Analogous contrasts apply in the case of endoparasite and brood parasite genes influencing host behaviour. The explanatory power of these competing approaches are assessed by re-examining the core chapters of Richard Dawkins’ _The Extended Phenotype_. Because animal artefacts have multiple evolutionary consequences for their (...)
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  27. 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 (...)
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  28. 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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  29.  32
    Phenotype-first hypotheses, spandrels and early metazoan evolution.Joshua Rust - 2022 - History and Philosophy of the Life Sciences 44 (4):1-23.
    Against the neo-Darwinian assumption that genetic factors are the principal source of variation upon which natural selection operates, a phenotype-first hypothesis strikes us as revolutionary because development would seem to constitute an independent source of variability. Richard Watson and his co-authors have argued that developmental memory constitutes one such variety of phenotypic variability. While this version of the phenotype-first hypothesis is especially well-suited for the late metazoan context, where animals have a sufficient history of selection from which to draw, (...)
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  30. The elastic clock.".James Ft Bugental - 1967 - Humanitas 3:5-21.
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  31.  15
    Phenotypic Integration as a Constraint and Adaptation.J. B. S. Haldane - 2004 - In Massimo Pigliucci & Katherine A. Preston (eds.), Phenotypic Integration: Studying the Ecology and Evolution of Complex Phenotypes. Oxford University Press. pp. 107.
  32.  16
    Elastic and plastic aspects of martensitic transformations.R. C. Pond & J. P. Hirth - 2010 - Philosophical Magazine 90 (7-8):805-819.
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  33.  12
    Connecting phenotype to genotype: PheWAS-inspired analysis of autism spectrum disorder.John Matta, Daniel Dobrino, Dacosta Yeboah, Swade Howard, Yasser El-Manzalawy & Tayo Obafemi-Ajayi - 2022 - Frontiers in Human Neuroscience 16:960991.
    Autism Spectrum Disorder (ASD) is extremely heterogeneous clinically and genetically. There is a pressing need for a better understanding of the heterogeneity of ASD based on scientifically rigorous approaches centered on systematic evaluation of the clinical and research utility of both phenotype and genotype markers. This paper presents a holistic PheWAS-inspired method to identify meaningful associations between ASD phenotypes and genotypes. We generate two types of phenotype-phenotype (p-p) graphs: a direct graph that utilizes only phenotype data, and an indirect graph (...)
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  34.  28
    Digital/computational phenotyping: What are the differences in the science and the ethics?Nina Hallowell & Federica Lucivero - 2021 - Big Data and Society 8 (2).
    The concept of ‘digital phenotyping’ was originally developed by researchers in the mental health field, but it has travelled to other disciplines and areas. This commentary draws upon our experiences of working in two scientific projects that are based at the University of Oxford’s Big Data Institute – The RADAR-AD project and The Minerva Initiative – which are developing algorithmic phenotyping technologies. We describe and analyse the concepts of digital biomarkers and computational phenotyping that underlie these projects, explain how they (...)
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  35.  4
    Elasticity, militancy, and infection: metaphorical argumentation in the trial against the German Communist Party, 1954–56.Timo Pankakoski - forthcoming - History of European Ideas.
    This article analyzes the epoch-making trial against the German Communist Party (KPD) in 1954-56 - a process with unmistakable political, ideological, and political-theoretical aspects. Both the government and the party's representatives used metaphorical arguments to publicly state their case for or against the eventual party ban. Citing classics of Marxism-Leninism for evidence, the government blamed the KPD for planning a violent revolution and described its activities metaphorically in military terms. The party retorted by ridiculing the government for reading metaphors literally (...)
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  36. Evolution, phenotypic selection, and the units of selection.Timothy Shanahan - 1990 - Philosophy of Science 57 (2):210-225.
    In recent years philosophers have attempted to clarify the units of selection controversy in evolutionary biology by offering conceptual analyses of the term 'unit of selection'. A common feature of many of these analyses is an emphasis on the claim that units of selection are entities exhibiting heritable variation in fitness. In this paper I argue that the demand that units of selection be characterized in terms of heritability is unnecessary, as well as undesirable, on historical, theoretical, and philosophical grounds. (...)
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  37. 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 made (...)
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  38.  18
    Closing the genotype–phenotype gap: Emerging technologies for evolutionary genetics in ecological model vertebrate systems.Claudius F. Kratochwil & Axel Meyer - 2015 - Bioessays 37 (2):213-226.
    The analysis of genetic and epigenetic mechanisms of the genotype–phenotypic connection has, so far, only been possible in a handful of genetic model systems. Recent technological advances, including next‐generation sequencing methods such as RNA‐seq, ChIP‐seq and RAD‐seq, and genome‐editing approaches including CRISPR‐Cas, now permit to address these fundamental questions of biology also in organisms that have been studied in their natural habitats. We provide an overview of the benefits and drawbacks of these novel techniques and experimental approaches that can (...)
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  39.  16
    Digital phenotyping and data inheritance.Mette N. Svendsen & Sara Green - 2021 - Big Data and Society 8 (2).
    Proponents of precision medicine envision that digital phenotyping can enable more individualized strategies to manage current and future health conditions. We problematize the interpretation of digital phenotypes as straightforward representations of individuals through examples of what we call data inheritance. Rather than being a digital copy of a presumed original, digital phenotypes are shaped by larger data collectives that precede and continuously change how the individual is represented. We contend that looking beyond the individual is crucial for understanding the factors (...)
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  40.  29
    The Elasticity of the Animal Fibre: Movement and Life in Enlightenment Medicine.Hisao Ishizuka - 2006 - History of Science 44 (4):435-468.
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  41.  41
    Categorizing Phenotypic Plasticity: An Analysis of Its Role in Human Cognitive Evolution.Mirko Farina - 2022 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 53 (2):103-121.
    I identify six types of phenotypic plasticity and categorize them with respect to their cognitive status. I look at differences and relations between some of these types of plasticity and then analyze how phenotypic outcomes are transmitted across generations. I engage with the relevant literature on developmental scaffolding and entrenchment in cultural evolution. I argue that that the typology I present here can be beneficial for such a debate and therefore instructive to better comprehend the evolution and development (...)
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  42.  25
    Elastic moduli and internal friction of nanocrystalline Pd and PdSi as a function of temperature.D. S. Agosta, R. G. Leisure, K. Foster, J. Markmann & J. J. Adams - 2008 - Philosophical Magazine 88 (6):949-958.
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  43.  33
    The elastic constants of chromium.S. B. Palmer & E. W. Lee - 1971 - Philosophical Magazine 24 (188):311-318.
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  44.  23
    Phenotype Landscapes, Adaptive Landscapes, and the Evolution of Development.Sean H. Rice - 2012 - In Erik Svensson & Ryan Calsbeek (eds.), The Adaptive Landscape in Evolutionary Biology. Oxford University Press. pp. 283.
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  45.  65
    The Digital Phenotype: a Philosophical and Ethical Exploration.Michele Loi - 2019 - Philosophy and Technology 32 (1):155-171.
    The concept of the digital phenotype has been used to refer to digital data prognostic or diagnostic of disease conditions. Medical conditions may be inferred from the time pattern in an insomniac’s tweets, the Facebook posts of a depressed individual, or the web searches of a hypochondriac. This paper conceptualizes digital data as an extended phenotype of humans, that is as digital information produced by humans and affecting human behavior and culture. It argues that there are ethical obligations to persons (...)
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  46.  63
    The self as phenotype.Philippe Rochat - 2011 - Consciousness and Cognition 20 (1):109-119.
    Self-awareness is viewed here as the phenotypic expression of an interaction between genes and the environment. Brain and behavioral development of fetuses and newborn infants are a rich source of information regarding what might constitute minimal self-awareness. Research indicates that newborns have feeling experience. Unlike automata, they do not just sense and respond to proximal stimulations. In light of the explosive brain growth that takes place inside and outside of the womb, first signs of feeling as opposed to sensing (...)
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  47.  18
    Mechanical elastic constants and diffraction stress factors of macroscopically elastically anisotropic polycrystals: the effect of grain-shape texture.N. Koch, U. Welzel §, H. Wern & E. J. Mittemeijer - 2004 - Philosophical Magazine 84 (33):3547-3570.
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  48.  14
    Phenotyping as disciplinary practice: Data infrastructure and the interprofessional conflict over drug use in California.Geoffrey C. Bowker & Mustafa I. Hussain - 2021 - Big Data and Society 8 (2).
    The narrative of the digital phenotype as a transformative vector in healthcare is nearly identical to the concept of “data drivenness” in other fields such as law enforcement. We examine the role of a prescription drug monitoring program in California—a computerized law enforcement surveillance program enabled by a landmark Supreme Court case that upheld “broad police powers”—in the interprofessional conflict between physicians and law enforcement over the jurisdiction of drug use. We bring together interview passages, clinical artifacts, and academic and (...)
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  49.  48
    The Elastic Instant in Aristotle's Becoming and Perishing.Mary Christine Morkovsky - 1969 - Modern Schoolman 46 (3):191-217.
  50.  23
    Elastic constitutive laws for incompatible crystalline media: the contributions of dislocations, disclinations and G-disclinations.Manas Vijay Upadhyay, Laurent Capolungo, Vincent Taupin & Claude Fressengeas - 2013 - Philosophical Magazine 93 (7):794-832.
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