Results for 'Epigenetic robotics'

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  1.  14
    Epigenetic robotics: Modelling cognitive development in robotic systems.Giorgio Metta & Luc Berthouze - 2006 - Interaction Studies 7 (2):129-134.
  2.  3
    Epigenetic robotics.Giorgio Metta & Luc Berthouze - 2006 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 7 (2):129-134.
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  3.  20
    Third International Workshop on Epigenetic Robotics : 4–5 August 2003, Boston, MA, USA.Christopher G. Prince & Luc Berthouze - 2004 - Interaction Studiesinteraction Studies Social Behaviour and Communication in Biological and Artificial Systems 5 (1):155-159.
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  4.  7
    Third International Workshop on Epigenetic Robotics.Christopher G. Prince & Luc Berthouze - 2004 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 5 (1):155-159.
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  5.  30
    An Embodied Model for Sensorimotor Grounding and Grounding Transfer: Experiments With Epigenetic Robots.Angelo Cangelosi & Thomas Riga - 2006 - Cognitive Science 30 (4):673-689.
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  6.  25
    An Epigenetic Approach to Semantic Categories.Peter Gardenfors - forthcoming - IEEE Transactions on Cognitive and Developmental Systems.
    It is argued that early language learning in children emerges from five primary knowledge structures: Space, objects, actions, number and events. These structures constitute the basis for the semantic domains that are used to form categories that represent the meanings of early words. The domains are naturally modeled in conceptual spaces that are based on geometric notions rather than on symbolic representations. It is shown how these semantics domains can be used to generate an epigenetic model of language acquisition. (...)
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  7.  41
    Why Are There Developmental Stages in Language Learning? A Developmental Robotics Model of Language Development.Anthony F. Morse & Angelo Cangelosi - 2016 - Cognitive Science 40 (8):32-51.
    Most theories of learning would predict a gradual acquisition and refinement of skills as learning progresses, and while some highlight exponential growth, this fails to explain why natural cognitive development typically progresses in stages. Models that do span multiple developmental stages typically have parameters to “switch” between stages. We argue that by taking an embodied view, the interaction between learning mechanisms, the resulting behavior of the agent, and the opportunities for learning that the environment provides can account for the stage-wise (...)
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  8.  8
    Why Are There Developmental Stages in Language Learning? A Developmental Robotics Model of Language Development.Anthony F. Morse & Angelo Cangelosi - 2017 - Cognitive Science 41 (S1):32-51.
    Most theories of learning would predict a gradual acquisition and refinement of skills as learning progresses, and while some highlight exponential growth, this fails to explain why natural cognitive development typically progresses in stages. Models that do span multiple developmental stages typically have parameters to “switch” between stages. We argue that by taking an embodied view, the interaction between learning mechanisms, the resulting behavior of the agent, and the opportunities for learning that the environment provides can account for the stage‐wise (...)
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  9. The epigenesis of meaning in human beings, and possibly in robots.Jordan Zlatev - 2001 - Minds and Machines 11 (2):155-195.
    This article addresses a classical question: Can a machine use language meaningfully and if so, how can this be achieved? The first part of the paper is mainly philosophical. Since meaning implies intentionality on the part of the language user, artificial systems which obviously lack intentionality will be `meaningless'. There is, however, no good reason to assume that intentionality is an exclusively biological property and thus a robot with bodily structures, interaction patterns and development similar to those of human beings (...)
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  10. robot is going to operate in is completely understood and the actions it is going to take in the environment to achieve its goals are also completely understood. The problem is that this kind of design does not allow for encountering unknown obstacles and doing something different to get around them.Adaptable Robots - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Malden, MA: Blackwell. pp. 78.
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  11. Semiosis and the Umwelt of a robot.Does A. Robot Have an Umwelt - 2001 - Semiotica 134 (1/4):695-699.
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  12. Chapter Nine Kantian Robotics: Building a Robot to Understand Kant's Transcendental Turn Lawrence M. Hinman.Kantian Robotics - 2007 - In Soraj Hongladarom (ed.), Computing and Philosophy in Asia. Cambridge Scholars Press. pp. 135.
     
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  13. Consciousness in human and robot minds.Robot Minds - 2009 - In Susan Schneider (ed.), Science Fiction and Philosophy: From Time Travel to Superintelligence. Wiley-Blackwell. pp. 186.
  14.  14
    The restless clock: a history of the centuries-long argument over what makes living things tick.Jessica Riskin - 2016 - Chicago: University of Chicago Press.
    A core principle of modern science holds that a scientific explanation must not attribute will or agency to natural phenomena.The Restless Clock examines the origins and history of this, in particular as it applies to the science of living things. This is also the story of a tradition of radicals—dissenters who embraced the opposite view, that agency is an essential and ineradicable part of nature. Beginning with the church and courtly automata of early modern Europe, Jessica Riskin guides us through (...)
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  15.  42
    Doing versus knowing.Peter R. Killeen - 2001 - Behavioral and Brain Sciences 24 (6):1063-1064.
    Aristotle's four causes frame Webb's question. Comprehension requires specification of trigger, function, mechanism, and representation. Robots are real models of function. Physical, biological, and epigenetic constraints delimit the hypothesis space for candidate mechanisms. Robots constitute a simplified system more susceptible to formal representation than the target system. They thus constitute an important tool in a constructivist development of scientific knowledge.
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  16.  32
    Epigenetic Inheritance and Evolution: The Lamarckian Dimension.Eva Jablonka & Marion J. Lamb - 1995 - Oxford University Press UK.
    '...a challenging and useful book, both because it provokes a careful scrutiny of one's own basic ideas regarding evolutionary theory, and because it cuts across so many biological disciplines.' -The Quarterly Review of Biology 'In my view, this work exemplifies Theoretical Biology at its best...here is rampant speculation that is consistently based on cautious reasoning from the available data. Even more refreshing is the absence of sloganeering, grandstanding, and 'isms'.' -Biology and Philosophy 'Epigenetics is fundamental to understanding both development and (...)
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  17. Welcoming Robots into the Moral Circle: A Defence of Ethical Behaviourism.John Danaher - 2020 - Science and Engineering Ethics 26 (4):2023-2049.
    Can robots have significant moral status? This is an emerging topic of debate among roboticists and ethicists. This paper makes three contributions to this debate. First, it presents a theory – ‘ethical behaviourism’ – which holds that robots can have significant moral status if they are roughly performatively equivalent to other entities that have significant moral status. This theory is then defended from seven objections. Second, taking this theoretical position onboard, it is argued that the performative threshold that robots need (...)
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  18. Robot Betrayal: a guide to the ethics of robotic deception.John Danaher - 2020 - Ethics and Information Technology 22 (2):117-128.
    If a robot sends a deceptive signal to a human user, is this always and everywhere an unethical act, or might it sometimes be ethically desirable? Building upon previous work in robot ethics, this article tries to clarify and refine our understanding of the ethics of robotic deception. It does so by making three arguments. First, it argues that we need to distinguish between three main forms of robotic deception (external state deception; superficial state deception; and hidden state deception) in (...)
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  19. Robots, Law and the Retribution Gap.John Danaher - 2016 - Ethics and Information Technology 18 (4):299–309.
    We are living through an era of increased robotisation. Some authors have already begun to explore the impact of this robotisation on legal rules and practice. In doing so, many highlight potential liability gaps that might arise through robot misbehaviour. Although these gaps are interesting and socially significant, they do not exhaust the possible gaps that might be created by increased robotisation. In this article, I make the case for one of those alternative gaps: the retribution gap. This gap arises (...)
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  20.  99
    Epigenetic Responsibility.Maria Hedlund - 2012 - Medicine Studies 3 (3):171-183.
    The purpose of this article is to argue for a position holding that epigenetic responsibility primarily should be a political and not an individual responsibility. Epigenetic is a rapidly growing research field studying regulations of gene expression that do not change the DNA sequence. Knowledge about these mechanisms is still uncertain in many respects, but main presumptions are that they are triggered by environmental factors and life style and, to a certain extent, heritable to subsequent generations, thereby reminding (...)
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  21.  66
    Sex Robots: Love in the Age of Machines.Maurizio Balistreri - 2022 - Budapest: Trivent Publishing.
    Sex robots are already a reality: in this provocative text, Maurizio Balistreri explores the fascinating world of future sex, exploring the ethical questions raised by the existence of a sex robot industry.
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  22. Epigenetics, Harm, and Identity.Joona Räsänen & Anna Smajdor - 2022 - American Journal of Bioethics 22 (9):40-42.
    Robert Sparrow argues that genome editing is unlikely to be person-affecting for the foreseeable future and, as a result, will neither benefit nor harm edited individuals. We regard Sparrow’...
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  23. The epigenetic landscape in the course of time: Conrad Hal Waddington’s methodological impact on the life sciences.Jan Baedke - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):756-773.
    It seems that the reception of Conrad Hal Waddington’s work never really gathered speed in mainstream biology. This paper, offering a transdisciplinary survey of approaches using his epigenetic landscape images, argues that (i) Waddington’s legacy is much broader than is usually recognized—it is widespread across the life sciences (e.g. stem cell biology, developmental psychology and cultural anthropology). In addition, I will show that (ii) there exist as yet unrecognized heuristic roles, especially in model building and theory formation, which Waddington’s (...)
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  24. Social Epigenetics and Equality of Opportunity.Michele Loi, Lorenzo Del Savio & Elia Stupka - 2013 - Public Health Ethics 6 (2):142-153.
    Recent epidemiological reports of associations between socioeconomic status and epigenetic markers that predict vulnerability to diseases are bringing to light substantial biological effects of social inequalities. Here, we start the discussion of the moral consequences of these findings. We firstly highlight their explanatory importance in the context of the research program on the Developmental Origins of Health and Disease (DOHaD) and the social determinants of health. In the second section, we review some theories of the moral status of health (...)
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  25.  84
    Epigenetics and the Environment in Bioethics.Charles Dupras, Vardit Ravitsky & Bryn Williams-Jones - 2012 - Bioethics 28 (7):327-334.
    A rich literature in public health has demonstrated that health is strongly influenced by a host of environmental factors that can vary according to social, economic, geographic, cultural or physical contexts. Bioethicists should, we argue, recognize this and – where appropriate – work to integrate environmental concerns into their field of study and their ethical deliberations. In this article, we present an argument grounded in scientific research at the molecular level that will be familiar to – and so hopefully more (...)
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  26. Robotic Rape and Robotic Child Sexual Abuse: Should They be Criminalised?John Danaher - 2017 - Criminal Law and Philosophy 11 (1):71-95.
    Soon there will be sex robots. The creation of such devices raises a host of social, legal and ethical questions. In this article, I focus in on one of them. What if these sex robots are deliberately designed and used to replicate acts of rape and child sexual abuse? Should the creation and use of such robots be criminalised, even if no person is harmed by the acts performed? I offer an argument for thinking that they should be. The argument (...)
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  27.  30
    How epigenetic mutations can affect genetic evolution: Model and mechanism.Filippos D. Klironomos, Johannes Berg & Sinéad Collins - 2013 - Bioessays 35 (6):571-578.
    We hypothesize that heritable epigenetic changes can affect rates of fitness increase as well as patterns of genotypic and phenotypic change during adaptation. In particular, we suggest that when natural selection acts on pure epigenetic variation in addition to genetic variation, populations adapt faster, and adaptive phenotypes can arise before any genetic changes. This may make it difficult to reconcile the timing of adaptive events detected using conventional population genetics tools based on DNA sequence data with environmental drivers (...)
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  28.  12
    Epigenetics across the evolutionary tree: New paradigms from non‐model animals.Kirsten C. Sadler - 2023 - Bioessays 45 (1):2200036.
    All animals have evolved solutions to manage their genomes, enabling the efficient organization of meters of DNA strands in the nucleus and allowing for nuanced regulation of gene expression while keeping transposable elements suppressed. Epigenetic modifications are central to accomplishing all these. Recent advances in sequencing technologies and the development of techniques that profile epigenetic marks and chromatin accessibility using reagents that can be used in any species has catapulted epigenomic studies in diverse animal species, shedding light on (...)
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  29. Genetic, epigenetic and exogenetic information in development and evolution.Paul Edmund Griffiths - 2017 - Interface Focus 7 (5).
    The idea that development is the expression of information accumulated during evolution and that heredity is the transmission of this information is surprisingly hard to cash out in strict, scientific terms. This paper seeks to do so using the sense of information introduced by Francis Crick in his sequence hypothesis and central dogma of molecular biology. It focuses on Crick's idea of precise determination. This is analysed using an information-theoretic measure of causal specificity. This allows us to reconstruct some of (...)
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  30.  45
    Epigenetic and Transcriptional Variability Shape Phenotypic Plasticity.Simone Ecker, Vera Pancaldi, Alfonso Valencia, Stephan Beck & Dirk S. Paul - 2018 - Bioessays 40 (2):1700148.
    Epigenetic and transcriptional variability contribute to the vast diversity of cellular and organismal phenotypes and are key in human health and disease. In this review, we describe different types, sources, and determinants of epigenetic and transcriptional variability, enabling cells and organisms to adapt and evolve to a changing environment. We highlight the latest research and hypotheses on how chromatin structure and the epigenome influence gene expression variability. Further, we provide an overview of challenges in the analysis of biological (...)
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  31. Crossing the Threshold: An Epigenetic Alternative to Dimensional Accounts of Mental Disorders.Davide Serpico & Valentina Petrolini - forthcoming - British Journal for the Philosophy of Science.
    Recent trends in psychiatry involve a transition from categorical to dimensional frameworks, in which the boundary between health and pathology is understood as a difference in degree rather than as a difference in kind. A major tenet of dimensional approaches is that no qualitative distinction can be made between health and pathology. As a consequence, these approaches tend to characterize such a threshold as pragmatic or conventional in nature. However, dimensional approaches to psychopathology raise several epistemological and ontological issues. First, (...)
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  32.  12
    Epigenetic Regulation of Secondary Metabolite Biosynthetic Genes in Fungi.Robert Cichewicz - 2012 - In Witzany (ed.), Biocommunication of Fungi. Springer. pp. 57--69.
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  33. Epigenetics, Evolution, and Us.W. Malcolm Byrnes - 2003 - The National Catholic Bioethics Quarterly 3 (3):489-500.
    This essay moves along broad lines from molecular biology to evolutionary biology and ecology to theology. Its objectives are to: 1) present some recent scientific findings in the emerging field of epigenetics that indicate that it is “the genome in context,” not genes per se, that are important in biological development and evolution; 2) show that this weakens the gene-centric neo-Darwinist explanation of evolution which, in fact, shares a certain preformationist orientation with intelligent design theory; 3) argue that the evidence (...)
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  34.  80
    Robotic Nudges: The Ethics of Engineering a More Socially Just Human Being.Jason Borenstein & Ron Arkin - 2016 - Science and Engineering Ethics 22 (1):31-46.
    Robots are becoming an increasingly pervasive feature of our personal lives. As a result, there is growing importance placed on examining what constitutes appropriate behavior when they interact with human beings. In this paper, we discuss whether companion robots should be permitted to “nudge” their human users in the direction of being “more ethical”. More specifically, we use Rawlsian principles of justice to illustrate how robots might nurture “socially just” tendencies in their human counterparts. Designing technological artifacts in such a (...)
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  35.  77
    Epigenetics, representation, and society.Ilya Gadjev - 2017 - Zygon 52 (2):491-515.
    In recent decades, advances in the life sciences have created an unprecedentedly detailed picture of heredity and the formation of the phenotype where clusters of simplistic reductionist and deterministic views and interpretations have begun to lose ground to more complex and holistic notions. The developments in gene regulation and epigenetics have become a vivid emblem of the ongoing ‘softening’ of heredity. Despite this headway, the outlook and rhetoric widely popular in the twentieth century favoring the ‘gene’ in the ‘genegenetic plasticityphenotypeenvironment’ (...)
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  36. Sexual Robots: The Social-Relational Approach and the Concept of Subjective Reference.Piercosma Bisconti & Susanna Piermattei - 2020 - Lecture Notes in Computer Science.
    In this paper we propose the notion of “subjective reference” as a conceptual tool that explains how and why human-robot sexual interactions could reframe users approach to human-human sexual interactions. First, we introduce the current debate about Sexual Robotics, situated in the wider discussion about Social Robots, stating the urgency of a regulative framework. We underline the importance of a social-relational approach, mostly concerned about Social Robots impact in human social structures. Then, we point out the absence of a (...)
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  37. Robots, rape, and representation.Robert Sparrow - 2017 - International Journal of Social Robotics 9 (4):465-477.
    Sex robots are likely to play an important role in shaping public understandings of sex and of relations between the sexes in the future. This paper contributes to the larger project of understanding how they will do so by examining the ethics of the “rape” of robots. I argue that the design of realistic female robots that could explicitly refuse consent to sex in order to facilitate rape fantasy would be unethical because sex with robots in these circumstances is a (...)
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  38.  53
    Epigenetics and Future Generations.Lorenzo del Savio, Michele Loi & Elia Stupka - 2015 - Bioethics 29 (8):580-587.
    Recent evidence of intergenerational epigenetic programming of disease risk broadens the scope of public health preventive interventions to future generations, i.e. non existing people. Due to the transmission of epigenetic predispositions, lifestyles such as smoking or unhealthy diet might affect the health of populations across several generations. While public policy for the health of future generations can be justified through impersonal considerations, such as maximizing aggregate well-being, in this article we explore whether there are rights-based obligations supervening on (...)
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  39.  11
    Epigenetic regulation of replication origin assembly: A role for histone H1 and chromatin remodeling factors.Lucia Falbo & Vincenzo Costanzo - 2021 - Bioessays 43 (1):2000181.
    During early embryonic development in several metazoans, accurate DNA replication is ensured by high number of replication origins. This guarantees rapid genome duplication coordinated with fast cell divisions. In Xenopus laevis embryos this program switches to one with a lower number of origins at a developmental stage known as mid‐blastula transition (MBT) when cell cycle length increases and gene transcription starts. Consistent with this regulation, somatic nuclei replicate poorly when transferred to eggs, suggesting the existence of an epigenetic memory (...)
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  40.  70
    Epigenetics: ambiguities and implications.Karola Stotz & Paul Griffiths - 2016 - History and Philosophy of the Life Sciences 38 (4):1-20.
    Everyone has heard of ‘epigenetics’, but the term means different things to different researchers. Four important contemporary meanings are outlined in this paper. Epigenetics in its various senses has implications for development, heredity, and evolution, and also for medicine. Concerning development, it cements the vision of a reactive genome strongly coupled to its environment. Concerning heredity, both narrowly epigenetic and broader ‘exogenetic’ systems of inheritance play important roles in the construction of phenotypes. A thoroughly epigenetic model of development (...)
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  41. Robot rights? Towards a social-relational justification of moral consideration.Mark Coeckelbergh - 2010 - Ethics and Information Technology 12 (3):209-221.
    Should we grant rights to artificially intelligent robots? Most current and near-future robots do not meet the hard criteria set by deontological and utilitarian theory. Virtue ethics can avoid this problem with its indirect approach. However, both direct and indirect arguments for moral consideration rest on ontological features of entities, an approach which incurs several problems. In response to these difficulties, this paper taps into a different conceptual resource in order to be able to grant some degree of moral consideration (...)
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  42. Robot Mindreading and the Problem of Trust.Andrés Páez - 2021 - In AISB Convention 2021: Communication and Conversation. Curran. pp. 140-143.
    This paper raises three questions regarding the attribution of beliefs, desires, and intentions to robots. The first one is whether humans in fact engage in robot mindreading. If they do, this raises a second question: does robot mindreading foster trust towards robots? Both of these questions are empirical, and I show that the available evidence is insufficient to answer them. Now, if we assume that the answer to both questions is affirmative, a third and more important question arises: should developers (...)
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  43. Killer robots.Robert Sparrow - 2007 - Journal of Applied Philosophy 24 (1):62–77.
    The United States Army’s Future Combat Systems Project, which aims to manufacture a “robot army” to be ready for deployment by 2012, is only the latest and most dramatic example of military interest in the use of artificially intelligent systems in modern warfare. This paper considers the ethics of a decision to send artificially intelligent robots into war, by asking who we should hold responsible when an autonomous weapon system is involved in an atrocity of the sort that would normally (...)
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  44.  13
    Epigenetics and Obesity: The Reproduction of Habitus through Intracellular and Social Environments.Stanley Ulijaszek, Michael Davies, Vivienne Moore & Megan Warin - 2016 - Body and Society 22 (4):53-78.
    Bourdieu suggested that the habitus contains the ‘genetic information’ which both allows and disposes successive generations to reproduce the world they inherit from their parents’ generation. While his writings on habitus are concerned with embodied dispositions, biological processes are not a feature of the practical reason of habitus. Recent critiques of the separate worlds of biology and culture, and the rise in epigenetics, provide new opportunities for expanding theoretical concepts like habitus. Using obesity science as a case study we attempt (...)
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  45. Robot Sex: Social and Ethical Implications.John Danaher & Neil McArthur - 2017 - MIT Press.
    Sexbots are coming. Given the pace of technological advances, it is inevitable that realistic robots specifically designed for people's sexual gratification will be developed in the not-too-distant future. Despite popular culture's fascination with the topic, and the emergence of the much-publicized Campaign Against Sex Robots, there has been little academic research on the social, philosophical, moral, and legal implications of robot sex. This book fills the gap, offering perspectives from philosophy, psychology, religious studies, economics, and law on the possible future (...)
  46.  50
    Epigenetic Exceptionalism.Mark A. Rothstein - 2013 - Journal of Law, Medicine and Ethics 41 (3):733-736.
    This article considers the distinctive features of epigenetics and discusses whether, as a matter of ethics and law, epigenetics should be considered separate from genetics.
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  47. Genetic, epigenetic and exogenetic information.Karola Stotz & Paul Edmund Griffiths - 2016 - In Richard Joyce (ed.), The Routledge Handbook of Evolution and Philosophy. New York: Routledge.
    We describe an approach to measuring biological information where ‘information’ is understood in the sense found in Francis Crick’s foundational contributions to molecular biology. Genes contain information in this sense, but so do epigenetic factors, as many biologists have recognized. The term ‘epigenetic’ is ambiguous, and we introduce a distinction between epigenetic and exogenetic inheritance to clarify one aspect of this ambiguity. These three heredity systems play complementary roles in supplying information for development. -/- We then consider (...)
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  48.  7
    Epigenetic editing: Dissecting chromatin function in context.Cristina Policarpi, Juliette Dabin & Jamie A. Hackett - 2021 - Bioessays 43 (5):2000316.
    How epigenetic mechanisms regulate genome output and response to stimuli is a fundamental question in development and disease. Past decades have made tremendous progress in deciphering the regulatory relationships involved by correlating aggregated (epi)genomics profiles with global perturbations. However, the recent development of epigenetic editing technologies now enables researchers to move beyond inferred conclusions, towards explicit causal reasoning, through 'programing’ precise chromatin perturbations in single cells. Here, we first discuss the major unresolved questions in the epigenetics field that (...)
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  49.  18
    Epigenetic Responsibility.Maria Hedlund - 2012 - Medicine Studies 3 (3):171-183.
    The purpose of this article is to argue for a position holding that epigenetic responsibility primarily should be a political and not an individual responsibility. Epigenetic is a rapidly growing research field studying regulations of gene expression that do not change the DNA sequence. Knowledge about these mechanisms is still uncertain in many respects, but main presumptions are that they are triggered by environmental factors and life style and, to a certain extent, heritable to subsequent generations, thereby reminding (...)
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  50.  48
    Epigenetics in the Neoliberal “Regime of Truth”.Charles Dupras & Vardit Ravitsky - 2015 - Hastings Center Report 46 (1):26-35.
    Recent findings in epigenetics have been attracting much attention from social scientists and bioethicists because they reveal the molecular mechanisms by which exposure to socioenvironmental factors, such as pollutants and social adversity, can influence the expression of genes throughout life. Most surprisingly, some epigenetic modifications may also be heritable via germ cells across generations. Epigenetics may be the missing molecular evidence of the importance of using preventive strategies at the policy level to reduce the incidence and prevalence of common (...)
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