Results for 'Ewnetu Genet'

945 found
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  1. Genetically engineered mosquitoes, Zika and other arboviruses, community engagement, costs, and patents: Ethical issues.Zahra Meghani & Christophe Boëte - 2018 - PLoS Neglected Tropical Diseases 7 (12).
    Genetically engineered (GE) insects, such as the GE OX513A Aedes aegypti mosquitoes, have been designed to suppress their wild-type populations so as to reduce the transmission of vector-borne diseases in humans. Apart from the ecological and epidemiological uncertainties associated with this approach, such biotechnological approaches may be used by individual governments or the global community of nations to avoid addressing the underlying structural, systemic causes of those infections... We discuss here key ethical questions raised by the use of GE mosquitoes, (...)
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  2. Genetically caused trait is an interactive kind.Riin Kõiv - 2023 - European Journal for Philosophy of Science 13 (3):1-25.
    In this paper I argue that the extent to which a human trait is genetically caused can causally depend upon whether the trait is categorized within human genetics as genetically caused. This makes the kindgenetically caused traitan interactive kind. I demonstrate that this thesis is both conceptually coherent and empirically plausible. I outline the core rationale of this thesis and demonstrate its conceptual coherence by drawing upon Waters’ (2007) analysis of genetic causation. I add empirical plausibility to the thesis by (...)
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  3. Genetics on the neurodiversity spectrum: Genetic, phenotypic and endophenotypic continua in autism and ADHD.Polaris Koi - 2021 - Studies in History and Philosophy of Science Part A 89 (October 2021):52–62.
    How we ought to diagnose, categorise and respond to spectrum disabilities such as autism and Attention Deficit/Hyperactivity Disorder (ADHD) is a topic of lively debate. The heterogeneity associated with ADHD and autism is described as falling on various continua of behavioural, neural, and genetic difference. These continua are varyingly described either as extending into the general population, or as being continua within a given disorder demarcation. Moreover, the interrelationships of these continua are likewise often vague and subject to diverse interpretations. (...)
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  4. Genetic enhancement, human extinction, and the best interests of posthumanity.Jon Rueda - 2022 - Bioethics (6):529-538.
    The cumulative impact of enhancement technologies may alter the human species in the very long-term future. In this article, I will start showing how radical genetic enhancements may accelerate the conversion into a novel species. I will also clarify the concepts of ‘biological species’, ‘transhuman’ and ‘posthuman’. Then, I will summarize some ethical arguments for creating a transhuman or posthuman species with a substantially higher level of well-being than the human one. In particular, I will present what I shall call (...)
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  5. Non-genetic inheritance: Evolution above the organismal level.Anton Sukhoverkhov & Nathalie Gontier - 2021 - Biosystems 1 (200):104325.
    The article proposes to further develop the ideas of the Extended Evolutionary Synthesis by including into evolutionary research an analysis of phenomena that occur above the organismal level. We demonstrate that the current Extended Synthesis is focused more on individual traits (genetically or non-genetically inherited) and less on community system traits (synergetic/organizational traits) that characterize transgenerational biological, ecological, social, and cultural systems. In this regard, we will consider various communities that are made up of interacting populations, and for which the (...)
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  6. Designing Genetic Engineering Technologies For Human Values.Steven Umbrello - 2022 - Etica E Politica (2):481-510.
    Genetic engineering technologies are a subclass of the biotechnology family, and are concerned with the use of laboratory-based technologies to intervene with a given organism at the genetic level, i.e., the level of its DNA. This class of technologies could feasibly be used to treat diseases and disabilities, create disease-resistant crops, or even be used to enhance humans to make them more resistant to certain environmental conditions. However, both therapeutic and enhancement applications of genetic engineering raise serious ethical concerns. This (...)
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  7. Preimplantation genetic diagnosis and rational choice under risk or uncertainty.Tomasz Żuradzki - 2014 - Journal of Medical Ethics 40 (11):774-778.
    In this paper I present an argument in favour of a parental duty to use preimplantation genetic diagnosis (PGD). I argue that if embryos created in vitro were able to decide for themselves in a rational manner, they would sometimes choose PGD as a method of selection. Couples, therefore, should respect their hypothetical choices on a principle similar to that of patient autonomy. My thesis shows that no matter which moral doctrine couples subscribe to, they ought to conduct the PGD (...)
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  8. 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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  9. (1 other version)Genetic Determinism and the Innate-Acquired Distinction in Medicine.Maria E. Kronfeldner - 2009 - Medicine Studies (2):167-181.
    This article illustrates in which sense genetic determinism is still part of the contemporary interactionist consensus in medicine. Three dimensions of this consensus are discussed: kinds of causes, a continuum of traits ranging from monogenetic diseases to car accidents, and different kinds of determination due to different norms of reaction. On this basis, this article explicates in which sense the interactionist consensus presupposes the innate?acquired distinction. After a descriptive Part 1, Part 2 reviews why the innate?acquired distinction is under attack (...)
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  10. Genetic variance–covariance matrices: A critique of the evolutionary quantitative genetics research program.Massimo Pigliucci - 2006 - Biology and Philosophy 21 (1):1-23.
    This paper outlines a critique of the use of the genetic variance–covariance matrix (G), one of the central concepts in the modern study of natural selection and evolution. Specifically, I argue that for both conceptual and empirical reasons, studies of G cannot be used to elucidate so-called constraints on natural selection, nor can they be employed to detect or to measure past selection in natural populations – contrary to what assumed by most practicing biologists. I suggest that the search for (...)
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  11. Genetic assimilation and a possible evolutionary paradox: can macroevolution sometimes be so fast to pass us by?Massimo Pigliucci - 2003 - Evolution 57 (7):1455-1464.
    The idea of genetic assimilation, that environmentally induced phenotypes may become genetically fixed and no longer require the original environmental stimulus, has had varied success through time in evolutionary biology research. Proposed by Waddington in the 1940s, it became an area of active empirical research mostly thanks to the efforts of its inventor and his collaborators. It was then attacked as of minor importance during the ‘‘hardening’’ of the neo-Darwinian synthesis and was relegated to a secondary role for decades. Recently, (...)
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  12. Genetically Modifying Livestock for Improved Welfare: A Path Forward.Adam Shriver & Emilie McConnachie - 2018 - Journal of Agricultural and Environmental Ethics 31 (2):161-180.
    In recent years, humans’ ability to selectively modify genes has increased dramatically as a result of the development of new, more efficient, and easier genetic modification technology. In this paper, we argue in favor of using this technology to improve the welfare of agricultural animals. We first argue that using animals genetically modified for improved welfare is preferable to the current status quo. Nevertheless, the strongest argument against pursuing gene editing for welfare is that there are alternative approaches to addressing (...)
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  13. Genetic Affinity and the Right to ‘Three-parent IVF’.G. Owen Schaefer & Markus Labude - 2017 - Journal of Assisted Reproduction and Genetics 34 (12):1577-1580.
    With the recent report of a live birth after use of Mitochondrial replacement therapy, sometimes called ‘Three-parent IVF’, the clinical application of the technique is fast becoming a reality. While the United Kingdom allows the procedure under regulatory scrutiny, it remains effectively outlawed in many other countries. We argue that such prohibitions may violate individuals’ procreative rights, grounded in individuals’ interest in genetic affinity. The interest in genetic affinity was recently endorsed by Singapore’s highest court, reflecting an emphasis on the (...)
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  14. Procreative Beneficence and Genetic Enhancement.Walter Veit - 2018 - Kriterion - Journal of Philosophy 32 (1):75-92.
    Imagine a world where everyone is healthy, intelligent, long living and happy. Intuitively this seems wonderful albeit unrealistic. However, recent scienti c breakthroughs in genetic engineering, namely CRISPR/Cas bring the question into public discourse, how the genetic enhancement of humans should be evaluated morally. In 2001, when preimplantation genetic diagnosis (PGD) and in vitro fertilisation (IVF), enabled parents to select between multiple embryos, Julian Savulescu introduced the principle of procreative bene cence (PPB), stating that parents have the obligations to choose (...)
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  15. Genetic Protection Modifications: Moving Beyond the Binary Distinction Between Therapy and Enhancement for Human Genome Editing.Rasmus Bjerregaard Mikkelsen, Henriette Reventlow S. Frederiksen, Mickey Gjerris, Bjørn Holst, Poul Hyttel, Yonglun Luo, Kristine Freude & Peter Sandøe - 2019 - CRISPR Journal 2 (6):362-369.
    Current debate and policy surrounding the use of genetic editing in humans often relies on a binary distinction between therapy and human enhancement. In this paper, we argue that this dichotomy fails to take into account perhaps the most significant potential uses of CRISPR-Cas9 gene editing in humans. We argue that genetic treatment of sporadic Alzheimer’s disease, breast- and ovarian-cancer causing BRCA1/2 mutations and the introduction of HIV resistance in humans should be considered within a new category of genetic protection (...)
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  16. Genetic Enhancement and the Child’s Right to an Open Future.Davide Battisti - 2020 - Phenomenology and Mind 19 (19):212.
    In this paper, I analyze the ethical implications of genetic enhancement within the specific framework of the “child’s right to an open future” argument (CROF). Whilst there is a broad ethical consensus that genetic modifications for eradicating diseases or disabilities are in line with – or do not violate – CROF, there is huge disagreement about how to ethically understand genetic enhancement. Here, I analyze this disagreement and I provide a revised formulation of the argument in the specific field of (...)
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  17. The Genetic Reification of 'Race'? A Story of Two Mathematical Methods.Rasmus Grønfeldt Winther - 2014 - Critical Philosophy of Race 2 (2):204-223.
    Two families of mathematical methods lie at the heart of investigating the hierarchical structure of genetic variation in Homo sapiens: /diversity partitioning/, which assesses genetic variation within and among pre-determined groups, and /clustering analysis/, which simultaneously produces clusters and assigns individuals to these “unsupervised” cluster classifications. While mathematically consistent, these two methodologies are understood by many to ground diametrically opposed claims about the reality of human races. Moreover, modeling results are sensitive to assumptions such as preexisting theoretical commitments to certain (...)
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  18. Genetic parenthood and causation: An objection to Douglas and Devolder’s modified direct proportionate genetic descent account.César Palacios-González - 2019 - Bioethics 33 (9):1085-1090.
    In a recent publication Tom Douglas and Katrien Devolder have proposed a new account of genetic parenthood, building on the work of Heidi Mertes. Douglas and Devolder’s account aims to solve, among other things, the question of who are the genetic parents of an individual created through somatic cell nuclear transfer (i.e. cloning): (a) the nuclear DNA provider or (b) the progenitors of the nuclear DNA provider. Such a question cannot be answered by simply appealing to the folk account of (...)
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  19. Genetic traits and causal explanation.Robert Northcott - 2012 - In Kathryn S. Plaisance & Thomas A. C. Reydon (eds.), Philosophy of Behavioral Biology (Boston Studies in the Philosophy of Science). Springer. pp. 65-82.
    I use a contrastive theory of causal explanation to analyze the notion of a genetic trait. The resulting definition is relational, an implication of which is that no trait is genetic always and everywhere. Rather, every trait may be either genetic or non-genetic, depending on explanatory context. I also outline some other advantages of connecting the debate to the wider causation literature, including how that yields us an account of the distinction between genetic traits and genetic dispositions.
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  20. Genetic explanations of religious belief.James H. Lesher - 1975 - Philosophical Studies 27 (5):317 - 328.
    Genetic explanations of religious belief, such as Freud’s analysis of theism as ‘a neurotic relic’, pose a problem for theists: how far do such explanations establish the irrationality of religious belief? I argue that genetic analyses of belief suffer from a number of limitations. Showing that some reason-irrelevant factor or factors were sufficient to produce conviction on some occasion would not establish that they were necessary in every case of religious conviction. Showing that reason-irrelevant factors were both necessary and sufficient (...)
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  21. The genetic technologies questionnaire: lay judgments about genetic technologies align with ethical theory, are coherent, and predict behaviour.Svenja Küchenhoff, Johannes Doerflinger & Nora Heinzelmann - 2022 - BMC Medical Ethics 23 (54):1-14.
    -/- Policy regulations of ethically controversial genetic technologies should, on the one hand, be based on ethical principles. On the other hand, they should be socially acceptable to ensure implementation. In addition, they should align with ethical theory. Yet to date we lack a reliable and valid scale to measure the relevant ethical judgements in laypeople. We target this lacuna. -/- We developed a scale based on ethical principles to elicit lay judgments: the Genetic Technologies Questionnaire (GTQ). In two pilot (...)
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  22. Human Genetic Technology, Eugenics, and Social Justice.W. Malcolm Byrnes - 2001 - The National Catholic Bioethics Quarterly 1 (4):555-581.
    In this new post-genomic age of medicine and biomedical technology, there will be novel approaches to understanding disease, and to finding drugs and cures for diseases. Hundreds of new “disease genes” thought to be the causative agents of various genetic maladies will be identified and added to the list of hundreds of such genes already identified. Based on this knowledge, many new genetic tests will be developed and used in genetic screening programs. Genetic screening is the foundation upon which reproductive (...)
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  23. 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 the evolutionary significance (...)
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  24. Genetic Testing for Sale: Implications of Commercial Brca Testing in Canada.Bryn Williams-Jones - 2002 - Dissertation, The University of British Columbia (Canada)
    Ongoing research in the fields of genetics and biotechnology hold the promise of improved diagnosis and treatment of genetic diseases, and potentially the development of individually tailored pharmaceuticals and gene therapies. Difficulty, however, arises in determining how these services are to be evaluated and integrated equitably into public health care systems such as Canada's. The current context is one of increasing fiscal restraint on the part of governments, limited financial resources being dedicated to health care, and rising costs for new (...)
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  25. Stocking the Genetic Supermarket: Reproductive Genetic Technologies and Collective Action Problems.Chris Gyngell & Thomas Douglas - 2014 - Bioethics 29 (4):241-250.
    Reproductive genetic technologies allow parents to decide whether their future children will have or lack certain genetic predispositions. A popular model that has been proposed for regulating access to RGTs is the ‘genetic supermarket’. In the genetic supermarket, parents are free to make decisions about which genes to select for their children with little state interference. One possible consequence of the genetic supermarket is that collective action problems will arise: if rational individuals use the genetic supermarket in isolation from one (...)
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  26. On being genetically "irresponsible".Judith Andre, Leonard M. Fleck & Thomas Tomlinson - 2000 - Kennedy Institute of Ethics Journal 10 (2):129-146.
    : New genetic technologies continue to emerge that allow us to control the genetic endowment of future children. Increasingly the claim is made that it is morally "irresponsible" for parents to fail to use such technologies when they know their possible children are at risk for a serious genetic disorder. We believe such charges are often unwarranted. Our goal in this article is to offer a careful conceptual analysis of the language of irresponsibility in an effort to encourage more care (...)
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  27. Genetic Engineering and The Non-Identity Problem.Tomasz Żuradzki - 2008 - Diametros 16:63-79.
    In my essay I consider the imaginary case of a future mother who refuses to undergo genetic alteration on her germline although she knows that her, as yet unconceived, child will have a serious genetic disorder. I analyze the good and bad points of two branches of arguments directed against her decision, consequentialist and rights-based. Then I discuss whether accepting one line of these arguments or the other makes a difference in moral assessment. I conclude that, although from the preanalytical (...)
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  28. Personalized genetic medicine: present reality, future prospects.Donna Dickenson - 2013 - In Sheldon Krimsky & Jeremy Gruber (eds.), Biotechnology in Our Lives. Skyhorse Publishing.
    The soaring promises made by personalized genetic medicine advocates are probably loftier than those in any other medical or scientific realm today. Are they justified?
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  29. Genetic Selective Abortion: Still a Matter of Choice.Bruce P. Blackshaw - 2020 - Ethical Theory and Moral Practice 23 (2):445-455.
    Jeremy Williams has argued that if we are committed to a liberal pro-choice stance with regard to selective abortion for disability, we will be unable to justify the prohibition of sex selective abortion. Here, I apply his reasoning to selective abortion based on other traits pregnant women may decide are undesirable. These include susceptibility to disease, level of intelligence, physical appearance, sexual orientation, religious belief and criminality—in fact any traits attributable to some degree to a genetic component. Firstly, I review (...)
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  30. Genetic modifications for personal enhancement: a defense.Timothy F. Murphy - 2013 - Journal of Medical Ethics (4):2012-101026.
    Bioconservative commentators argue that parents should not take steps to modify the genetics of their children even in the name of enhancement because of the damage they predict for values, identities and relationships. Some commentators have even said that adults should not modify themselves through genetic interventions. One commentator worries that genetic modifications chosen by adults for themselves will undermine moral agency, lead to less valuable experiences and fracture people's sense of self. These worries are not justified, however, since the (...)
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  31. Ethics and genetics: Susceptibility testing in the workplace.Chris MacDonald & Bryn Williams-Jones - 2002 - Journal of Business Ethics 35 (3):235-241.
    Genetic testing in the workplace is a technology both full of promise and fraught with ethical peril. Though not yet common, it is likely to become increasingly so. We survey the key arguments in favour of such testing, along with the most significant ethical worries. We further propose a set of pragmatic criteria, which, if met, would make it permissible for employers to offer (but not to require) workplace genetic testing.
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  32. A conception of genetic parenthood.Thomas Douglas & Katrien Devolder - 2018 - Bioethics 33 (1):54-59.
    We seek to develop a plausible conception of genetic parenthood, taking a recent discussion by Heidi Mertes as our point of departure. Mertes considers two conceptions of genetic parenthood—one invoking genetic resemblance, and the other genetic inheritance—and presents counter-examples to both conceptions. We revise Mertes’ second conception so as to avoid these and related counter-examples.
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  33. Risk assessment of genetically modified food and neoliberalism: An argument for democratizing the regulatory review protocol of the Food and Drug Administration.Zahra Meghani - 2014 - Journal of Agricultural and Environmental Ethics 27 (6):967–989.
    The primary responsibility of the US Food and Drug Administration is to protect public health by ensuring the safety of the food supply. To that end, it sometimes conducts risk assessments of novel food products, such as genetically modified food. The FDA describes its regulatory review of GM food as a purely scientific activity, untainted by any normative considerations. This paper provides evidence that the regulatory agency is not justified in making that claim. It is argued that the FDA’s policy (...)
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  34. Evolutionary genetics and cultural traits in a 'body of theory' perspective.Emanuele Serrelli - 2018 - In Fabrizio Panebianco & Emanuele Serrelli (eds.), Understanding Cultural Traits: A Multidisciplinary Perspective on Cultural Diversity. Springer. pp. 179-199.
    The chapter explains why evolutionary genetics – a mathematical body of theory developed since the 1910s – eventually got to deal with culture: the frequency dynamics of genes like “the lactase gene” in populations cannot be correctly modeled without including social transmission. While the body of theory requires specific justifications, for example meticulous legitimations of describing culture in terms of traits, the body of theory is an immensely valuable scientific instrument, not only for its modeling power but also for the (...)
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  35. Biological Parenthood: Gestational, Not Genetic.Anca Gheaus - 2017 - Australasian Journal of Philosophy 96 (2):225-240.
    Common sense morality and legislations around the world ascribe normative relevance to biological connections between parents and children. Procreators who meet a modest standard of parental competence are believed to have a right to rear the children they brought into the world. I explore various attempts to justify this belief and find most of these attempts lacking. I distinguish between two kinds of biological connections between parents and children: the genetic link and the gestational link. I argue that the second (...)
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  36. Genetic Modification and Future Generations.David Sackris - 2006 - Macalester Journal of Philosophy 15 (1).
    One of the most difficult issues to sort out morally is our obligation to future generations. Most individuals feel that they do indeed have some kind of obligation, but face difficulty in explaining the exact nature of the obligation. For one, it seems impossible to know the wants and desires of future generations, and furthermore the existence of the persons we are obligated to is entirely dependent upon the choices that we in fact make. In essence, we could shape future (...)
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  37.  84
    Classifying Genetic Essentialist Biases using Large Language Models.Ritsaart Reimann, Kate Lynch, Stefan Gawronski, Jack Chan & Paul Edmund Griffiths - manuscript
    The rapid rise of generative AI, including LLMs, has prompted a great deal of concern, both within and beyond academia. One of these concerns is that generative models embed, reproduce, and therein potentially perpetuate all manner of bias. The present study offers an alternative perspective: exploring the potential of LLMs to detect bias in human generated text. Our target is genetic essentialism in obesity discourse in Australian print media. We develop and deploy an LLM-based classification model to evaluate a large (...)
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  38. Genetic privacy: a challenge to medico-legal norms: G Laurie. Cambridge University Press, 2002, 50.00 (hbk), pp 335. ISBN 0521660270. [REVIEW]D. Dickenson - 2003 - Journal of Medical Ethics 29 (6):373-374.
    Review of Graeme Laurie, Genetic Privacy.
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  39. Genetic Evolvability: Using a Restricted Pluralism to Tidy Up the Evolvability Concept.Mitchell Ryan Distin - forthcoming - London, UK: Springer Nature.
    Advances in the empirical sectors of biology are beginning to reveal evolvability as a major evolutionary process. Yet evolvability’s theoretical role is still intensely debated. Since its inception nearly thirty years ago, the evolvability research front has put a strong emphasis on the non-genetic mechanisms that influence the short-term evolvability of individuals within populations by causing phenotypic heterogeneity, such as developmental trait plasticity, phenotypic plasticity, modularity, the G-P map, robustness, and/or epigenetic variation. However, genetic evolvability mechanisms such as mutation or (...)
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  40. Genetic Epistemology and Piaget's Philosophy of Science: Piaget vs. Kuhn on Scientific Progress.Jonathan Y. Tsou - 2006 - Theory and Psychology 16 (2):203-224.
    This paper concerns Jean Piaget's (1896–1980) philosophy of science and, in particular, the picture of scientific development suggested by his theory of genetic epistemology. The aims of the paper are threefold: (1) to examine genetic epistemology as a theory concerning the growth of knowledge both in the individual and in science; (2) to explicate Piaget's view of ‘scientific progress’, which is grounded in his theory of equilibration; and (3) to juxtapose Piaget's notion of progress with Thomas Kuhn's (1922–1996). Issues of (...)
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  41. Artificial and Natural Genetic Information Processing.Guenther Witzany - 2017 - In Mark Burgin & Wolfgang Hoflkirchner (eds.), Information Studies and the Quest for Transdisciplinarity. New York, USA: World Scientific. pp. 523-547.
    Conventional methods of genetic engineering and more recent genome editing techniques focus on identifying genetic target sequences for manipulation. This is a result of historical concept of the gene which was also the main assumption of the ENCODE project designed to identify all functional elements in the human genome sequence. However, the theoretical core concept changed dramatically. The old concept of genetic sequences which can be assembled and manipulated like molecular bricks has problems in explaining the natural genome-editing competences of (...)
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  42. Parental genetic shaping and parental environmental shaping.Anca Gheaus - 2017 - Philosophical Quarterly 67 (267):20-31.
    Analytic philosophers tend to agree that intentional parental genetic shaping and intentional parental environmental shaping for the same feature are, normatively, on a par. I challenge this view by advancing a novel argument, grounded in the value of fair relationships between parents and children: Parental genetic shaping is morally objectionable because it unjustifiably exacerbates the asymmetry between parent and child with respect to the voluntariness of their entrance into the parent–child relationship. Parental genetic shaping is, for this reason, different from (...)
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  43. Evolution of Genetic Information without Error Replication.Guenther Witzany - 2020 - In Theoretical Information Studies. Singapur: pp. 295-319.
    Darwinian evolutionary theory has two key terms, variations and biological selection, which finally lead to survival of the fittest variant. With the rise of molecular genetics, variations were explained as results of error replications out of the genetic master templates. For more than half a century, it has been accepted that new genetic information is mostly derived from random error-based events. But the error replication narrative has problems explaining the sudden emergence of new species, new phenotypic traits, and genome innovations (...)
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  44. When Is Genetic Reasoning Not Fallacious?Kevin C. Klement - 2002 - Argumentation 16 (4):383-400.
    Attempts to evaluate a belief or argument on the basis of its cause or origin are usually condemned as committing the genetic fallacy. However, I sketch a number of cases in which causal or historical factors are logically relevant to evaluating a belief, including an interesting abductive form that reasons from the best explanation for the existence of a belief to its likely truth. Such arguments are also susceptible to refutation by genetic reasoning that may come very close to the (...)
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  45. Narrativization of human population genetics: Two cases in Iceland and Russia.Vadim Chaly & Olga V. Popova - 2024 - Public Understanding of Science 33 (3):370-386.
    Using the two cases of the Icelandic Health Sector Database and Russian initiatives in biobanking, the article criticizes the view of narratives and imaginaries as a sufficient and unproblematic means of shaping public understanding of genetics and justifying population-wide projects. Narrative representations of national biobanking engage particular imaginaries that are not bound by the universal normative framework of human rights, promote affective thinking, distract the public from recognizing and discussing tangible ethical and socioeconomic issues, and harm trust in science and (...)
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  46.  60
    Genetics, Race and Intelligence.Davide Serpico - 2024 - Viewpoint: Magazine of the British Society for the History of Science 134:3-4.
    Davide Serpico describes his research at the Special Collection dedicated to the distinguished population geneticist John R. G. Turner at the University of Leeds’ Library.
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  47. Genetics, Epigenetics, Paragenetics: Getting Closer to Life.Bhakti Madhava Puri - 2014 - The Harmonizer.
    Gregor Mendel (1822-1884) was the first to explain that certain 'traits' were inherited in plants from one generation to the next. These would later become known as genes. Frederich Miescher in 1869 analyzed a substance from the nucleus of cells, which he therefore called nuclein. Further study of nuclein revealed that it contained elements like hydrogen, oxygen, nitrogen and phosphorous, with a specific ratio of nitrogen to phosphorous. Then in 1878 Albrecht Kossel determined that nuclein contained nucleic acid, from which (...)
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  48. Introduction to Neutrosophic Genetics.Florentin Smarandache - 2021 - International Journal of Neutrosophic Science 1 (1):1-5.
    Neutrosophic Genetics is the study of genetics using neutrosophic logic, set, probability, statistics, measure and other neutrosophic tools and procedures. In this paper, based on the Neutrosophic Theory of Evolution (that includes degrees of Evolution, Neutrality (or Indeterminacy), and Involution) – as extension of Darwin’s Theory of Evolution, we show the applicability of neutrosophy in genetics, and we present within the frame of neutrosophic genetics the following concepts: neutrosophic mutation, neutrosophic speciation, and neutrosophic coevolution.
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  49. Innateness as genetic adaptation: Lorenz redivivus (and revised).Nathan Cofnas - 2017 - Biology and Philosophy 32 (4):559-580.
    In 1965, Konrad Lorenz grounded the innate–acquired distinction in what he believed were the only two possible sources of information that can underlie adaptedness: phylogenetic and individual experience. Phylogenetic experience accumulates in the genome by the process of natural selection. Individual experience is acquired ontogenetically through interacting with the environment during the organism’s lifetime. According to Lorenz, the adaptive information underlying innate traits is stored in the genome. Lorenz erred in arguing that genetic adaptation is the only means of accumulating (...)
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  50. Conceiving People: Genetic Knowledge and the Ethics of Sperm and Egg Donation.Daniel Groll - 2021 - New York: Oxford University Press.
    OPEN ACCESS -/- Each year, tens of thousands of children are conceived with donated gametes (sperm or eggs). By some estimates, there are over one million donor-conceived people in the United States and, of course, many more the world over. Some know they are donor-conceived. Some do not. Some know the identity of their donors. Others never will. -/- Questions about what donor-conceived people should know about their genetic progenitors are hugely significant for literally millions of people, including donor-conceived people, (...)
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