Results for 'genetic trait'

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  1.  17
    Flexible control in processing affective and non-affective material predicts individual differences in trait resilience.Jessica J. Genet & Matthias Siemer - 2011 - Cognition and Emotion 25 (2):380-388.
  2. Genetic traits and causal explanation.Robert Northcott - 2012 - In Kathryn Plaisance & Thomas Reydon (eds.), Philosophy of Behavioral Biology. 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 (...) traits and genetic dispositions. (shrink)
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  3.  92
    Genetic traits.Fred Gifford - 1990 - Biology and Philosophy 5 (3):327-347.
    Recognizing that all traits are the result of an interaction between genes and environment, I offer a set of criteria for nevertheless making sense of our practice of singling out certain traits as genetic ones, in effect making a distinction between causes and mere conditions. The central criterion is that a trait is genetic if it is genetic differences that make the differences in that trait variable in a given population. A second criterion requires that (...)
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  4.  45
    The parental obligation to expand a child's range of open futures when making genetic trait selections for their child.Eric B. Schmidt - 2007 - Bioethics 21 (4):191–197.
    ABSTRACT As parents become increasingly able to make genetic trait selections on behalf of their children, they will need ethical guidance in deciding what genetic traits to select. Dena Davis has argued that parents act unethically if they make selections that constrain their child's range of futures. But some selections may expand the child's range of futures. And other selections may shift the child's range of futures, without either constraining or expanding that range. I contend that not (...)
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  5. Expanding the Child's Range of Open Futures: A Proposed Basis for the Ethical Assessment of Parental Genetic Trait Selections.Eric B. Schmidt - 2004 - Dissertation, University of Washington
    This dissertation considers the bases upon which ethical assessments of parental genetic trait selections for their children can be made. It argues that if parents engage in genetic trait selections, they must act to expand their child's range of open futures, not to constrict their child's range of open futures or to differentially shift their child's range of open futures. It contends that other proposed distinctions, including distinctions between normal and diseased states and between treatment selections (...)
     
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  6. 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 kind genetically caused trait an 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 (...)
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  7.  2
    Cognitive traits are more appropriate for genetic analysis than social outcomes.Franck Ramus - 2023 - Behavioral and Brain Sciences 46:e224.
    The critique of the genetics of complex social outcomes is partly well-founded, insofar as social outcomes sometimes have unreliable relations with cognitive traits. But the correct conclusion is not to dismiss the entire field altogether. Rather, the implication is to redirect geneticists' attention to the stable cognitive phenotypes that are natural candidates for genetic analysis.
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  8. Evolutionary genetics and cultural traits in a 'body of theory' perspective.Emanuele Serrelli - 2016 - 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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  9.  15
    Genetics’ Piece of the PI: Inferring the Origin of Complex Traits and Diseases from Proteome‐Wide Protein–Protein Interaction Dynamics.Louis Gauthier, Bram Stynen, Adrian W. R. Serohijos & Stephen W. Michnick - 2020 - Bioessays 42 (2):1900169.
    How do common and rare genetic polymorphisms contribute to quantitative traits or disease risk and progression? Multiple human traits have been extensively characterized at the genomic level, revealing their complex genetic architecture. However, it is difficult to resolve the mechanisms by which specific variants contribute to a phenotype. Recently, analyses of variant effects on molecular traits have uncovered intermediate mechanisms that link sequence variation to phenotypic changes. Yet, these methods only capture a fraction of genetic contributions to (...)
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  10.  92
    Integrating genetic, behavioral, and psychometric research in conceptualizing human behavioral traits.Marcus R. Munafò - 2005 - Behavioral and Brain Sciences 28 (3):358-359.
    Previous research into human traits has reached impressive consensus regarding at least some traits, but recent evidence suggests these to be genetically heterogeneous. This is problematic for theories of the neurobiology of human traits. Future research should more closely integrate genetic, behavioral, and psychometric research to arrive at biologically validated measurement instruments, which may be better used to understand the mediating role of these traits in the association between genetic variants and complex behaviors.
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  11.  62
    Genetic modification of characteristic masculine traits: enhancement or deformity?Jeff McMahan - 2013 - Journal of Medical Ethics 39 (12):736-740.
    Some philosophers, most notably Julian Savulescu, have argued that potential parents have a moral reason to do what they can to have a child with the highest expected level of well-being.1 This is not just a reason to do what will make a particular child better off than he or she would otherwise be but also a reason to choose, from among different possible children, the one that has the highest expected well-being. The claim that potential parents have such a (...)
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  12.  32
    Genetic and biological determinants of psychological traits.Colin Martindale - 1999 - Behavioral and Brain Sciences 22 (5):897-898.
    Rose seems to be arguing against an extreme ultra-Darwinism that probably has no adherents. He incorrectly argues that a number of psychological traits are very difficult to measure. This is not the case. Rose argues that intelligence has no biological correlates. In fact, it is correlated with brain size, EEG evoked potentials, and cerebral glucose uptake during problem solving. Data that Rose should be aware of are omitted when they do not fit the case he is trying to make.
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  13.  37
    Genetics and Human Traits.Sister M. Ellen O’Hanlon - 1943 - Thought: Fordham University Quarterly 18 (4):694-704.
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  14.  27
    Genetic Technology to Prevent Disabilities: How Popular Culture Informs Our Understanding of the Use of Genetics to Define and Prevent Undesirable Traits.Sara Weinberger & Dov Greenbaum - 2015 - American Journal of Bioethics 15 (6):32-34.
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  15.  12
    Genetic studies of genius. Vol. I. Mental and physical traits of a thousand gifted children.J. F. Duff - 1926 - The Eugenics Review 18 (1):45.
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  16.  14
    The genetics of behavioral traits.Marguerite Strobel - 2000 - Hastings Center Report 30 (4):47.
  17.  60
    Reasoning About Cultural and Genetic Transmission: Developmental and Cross‐Cultural Evidence From Peru, Fiji, and the United States on How People Make Inferences About Trait Transmission.Cristina Moya, Robert Boyd & Joseph Henrich - 2015 - Topics in Cognitive Science 7 (4):595-610.
    Using samples from three diverse populations, we test evolutionary hypotheses regarding how people reason about the inheritance of various traits. First, we provide a framework for differentiat-ing the outputs of mechanisms that evolved for reasoning about variation within and between biological taxa and culturally evolved ethnic categories from a broader set of beliefs and categories that are the outputs of structured learning mechanisms. Second, we describe the results of a modified “switched-at-birth” vignette study that we administered among children and adults (...)
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  18.  7
    GWAS for genetics of complex quantitative traits: Genome to pangenome and SNPs to SVs and k‐mers.Pushpendra K. Gupta - 2021 - Bioessays 43 (11):2100109.
    The development of improved methods for genome‐wide association studies (GWAS) for genetics of quantitative traits has been an active area of research during the last 25 years. This activity initially started with the use of mixed linear model (MLM), which was variously modified. During the last decade, however, with the availability of high throughput next generation sequencing (NGS) technology, development and use of pangenomes and novel markers including structural variations (SVs) and k‐mers for GWAS has taken over as a new (...)
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  19.  27
    About Face: Forensic Genetic Testing for Race and Visible Traits.Pilar N. Ossorio - 2006 - Journal of Law, Medicine and Ethics 34 (2):277-292.
    Information from forensic genetic tests of crime scene samples has been used to make claims about suspects' race and appearance. This article discusses and critiques the techniques used to make such claims, and raises policy concerns about them.
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  20.  8
    A cultural evolutionary behavior genetics will need a more sophisticated conceptualization of cultural traits.Moin Syed & Phuong Linh L. Nguyen - 2022 - Behavioral and Brain Sciences 45:e176.
    A framework that brings together cultural perspectives and behavior genetics has long been needed. To be successful, however, we need sophistication in the conceptualization of culture. Here, we highlight three imperatives to this end: the need for a clear definition of cultural traits, inclusion of the role of societal power, and recognizing the distinction between traits and characteristic adaptations.
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  21.  31
    The dominance of traits in genetic analysis.Raphael Falk - 1991 - Journal of the History of Biology 24 (3):457-484.
  22.  24
    About Face: Forensic Genetic Testing for Race and Visible Traits.Pilar N. Ossorio - 2006 - Journal of Law, Medicine and Ethics 34 (2):277-292.
    “DNAPrint Genomics, Inc. has applied the most recent advancements in human genomic technology for the deciphering of an individual's race. We are proud to introduce to the forensic community DNA WITNESS 2.0, a genetic test for the deduction of the heritable component of race, called Biogeographical Ancestry.”–Z. Gaskin“One definite and obvious consequence of the complexity of human demographic history is that races in any meaningful sense of the term do not exist in the human species.”–D. B. Goldstein and L. (...)
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  23.  35
    Ethics of Genetic Enhancement of Aptitudes and Personality Traits.John Alan Cohan - 2005 - Journal of Philosophical Research 30 (9999):27-35.
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  24.  11
    Neural and Genetic Bases for Human Ability Traits.Camila Bonin Pinto, Jannis Bielefeld, Rami Jabakhanji, Diane Reckziegel, James W. Griffith & A. Vania Apkarian - 2020 - Frontiers in Human Neuroscience 14:609170.
    The judgement of human ability is ubiquitous, from school admissions to job performance reviews. The exact make-up of ability traits, however, is often narrowly defined and lacks a comprehensive basis. We attempt to simplify the spectrum of human ability, similar to how five personality traits are widely believed to describe most personalities. Finding such a basis for human ability would be invaluable since neuropsychiatric disease diagnoses and symptom severity are commonly related to such differences in performance. Here, we identified four (...)
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  25.  32
    Incorporating alternative splicing and mRNA editing into the genetic analysis of complex traits.Musa A. Hassan & Jeroen P. J. Saeij - 2014 - Bioessays 36 (11):1032-1040.
    The nomination of candidate genes underlying complex traits is often focused on genetic variations that alter mRNA abundance or result in non‐conservative changes in amino acids. Although inconspicuous in complex trait analysis, genetic variants that affect splicing or RNA editing can also generate proteomic diversity and impact genetic traits. Indeed, it is known that splicing and RNA editing modulate several traits in humans and model organisms. Using high‐throughput RNA sequencing (RNA‐seq) analysis, it is now possible to (...)
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  26. 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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  27.  57
    Attitudes of healthcare professionals and parents regarding genetic testing for violent traits in childhood.E. Campbell - 2004 - Journal of Medical Ethics 30 (6):580-586.
    Objectives: Although no genetic tests for violent behaviour are currently available, research is ongoing to isolate genes related to a propensity for violence. We explored the attitudes of parents and healthcare professionals toward behavioural genetic testing for violence.Design: The attitudes of healthcare professionals and the lay public about genetic testing of children were elicited for a range of conditions through interviews with healthcare professionals and focus groups with parents. All participants were informed that behavioural genetic testing (...)
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  28. 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 (...)
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  29.  14
    Active genetics comes alive.Valentino M. Gantz & Ethan Bier - 2022 - Bioessays 44 (8):2100279.
    Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)‐based “active genetic” elements developed in 2015 bypassed the fundamental rules of traditional genetics. Inherited in a super‐Mendelian fashion, such selfish genetic entities offered a variety of potential applications including: gene‐drives to disseminate gene cassettes carrying desired traits throughout insect populations to control disease vectors or pest species, allelic drives biasing inheritance of preferred allelic variants, neutralizing genetic elements to delete and replace or to halt the spread of gene‐drives, split‐drives with (...)
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  30.  11
    Expanding Our Thoughts about Autonomy in Relation to Whether We Should Offer Genetic Testing for Nonmedical Traits.Kelly E. Ormond - 2023 - American Journal of Bioethics 23 (3):21-23.
    The Target Article “Non-invasive prenatal testing for ‘non-medical’ traits: ensuring consistency in ethical decision making” by Bowman-Smart et al. (2023) raises the important issue that “decision-...
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  31. Beyond quantitative and qualitative traits: three telling cases in the life sciences.Davide Serpico - 2020 - Biology and Philosophy 35 (3):1-26.
    This paper challenges the common assumption that some phenotypic traits are quantitative while others are qualitative. The distinction between these two kinds of traits is widely influential in biological and biomedical research as well as in scientific education and communication. This is probably due to both historical and epistemological reasons. However, the quantitative/qualitative distinction involves a variety of simplifications on the genetic causes of phenotypic variability and on the development of complex traits. Here, I examine three cases from the (...)
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  32.  29
    Genetic Causation in Complex Regulatory Systems: An Integrative Dynamic Perspective.James DiFrisco & Johannes Jaeger - 2020 - Bioessays 42 (6):1900226.
    The logic of genetic discovery has changed little over time, but the focus of biology is shifting from simple genotype–phenotype relationships to complex metabolic, physiological, developmental, and behavioral traits. In light of this, the traditional reductionist view of individual genes as privileged difference‐making causes of phenotypes is re‐examined. The scope and nature of genetic effects in complex regulatory systems, in which dynamics are driven by regulatory feedback and hierarchical interactions across levels of organization are considered. This review argues (...)
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  33. 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 (...)
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  34.  64
    Deafness, Genetics and Dysgenics.Rui Nunes - 2005 - Medicine, Health Care and Philosophy 9 (1):25-31.
    It has been argued by some authors that our reaction to deaf parents who choose deafness for their children ought to be compassion, not condemnation. Although I agree with the reasoning proposed I suggest that this practice could be regarded as unethical. In this article, I shall use the term “dysgenic” as a culturally imposed genetic selection not to achieve any improvement of the human person but to select genetic traits that are commonly accepted as a disabling condition (...)
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  35. 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 (...)
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  36. Genetic Representation Explains the Cluster of Innateness‐Related Properties.Nicholas Shea - 2012 - Mind and Language 27 (4):466-493.
    The concept of innateness is used to make inferences between various better-understood properties, like developmental canalization, evolutionary adaptation, heritability, species-typicality, and so on (‘innateness-related properties’). This article uses a recently-developed account of the representational content carried by inheritance systems like the genome to explain why innateness-related properties cluster together, especially in non-human organisms. Although inferences between innateness-related properties are deductively invalid, and lead to false conclusions in many actual cases, where some aspect of a phenotypic trait develops in reliance (...)
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  37. 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 (...)
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  38.  77
    Genetic screening with the DNA chip: a new Pandora's box?W. Henn - 1999 - Journal of Medical Ethics 25 (2):200-203.
    The ethically controversial option of genetic population screening used to be restricted to a small number of rather rare diseases by methodological limitations which are now about to be overcome. With the new technology of DNA microarrays ("DNA chip"), emerging from the synthesis of microelectronics and molecular biology, methods are now at hand for the development of mass screening programmes for a wide spectrum of genetic traits. Thus, the DNA chip may be the key technology for a refined (...)
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  39. Genetic determinism and the innate-acquired distinction.Maria Kronfeldner - 2009 - Medicine Studies 1 (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 (...)
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  40.  25
    Visualizing genetic similarity at the symptom level: The example of learning disabilities.Oliver Sp Davis & Robert Plomin - 2010 - Behavioral and Brain Sciences 33 (2-3):155-157.
    Psychological traits and disorders are often interrelated through shared genetic influences. A combination of maximum-likelihood structural equation modelling and multidimensional scaling enables us to open a window onto the genetic architecture at the symptom level, rather than at the level of latent genetic factors. We illustrate this approach using a study of cognitive abilities involving over 5,000 pairs of twins.
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  41.  71
    Genetics and culture: The geneticization thesis.Henk A. M. J. ten Have - 2001 - Medicine, Health Care and Philosophy 4 (3):295-304.
    The concept of ‘geneticization’ has been introduced in the scholarly literature to describe the various interlocking and imperceptible mechanisms of interaction between medicine, genetics, society and culture. It is argued that Western culture currently is deeply involved in a process of geneticization. This process implies a redefinition of individuals in terms of DNA codes, a new language to describe and interpret human life and behavior in a genomic vocabulary of codes, blueprints, traits, dispositions, genetic mapping, and a gentechnological approach (...)
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  42. Genetics in the ADHD Clinic: How Can Genetic Testing Support the Current Clinical Practice?Lívia Balogh, Attila J. Pulay & János M. Réthelyi - 2022 - Frontiers in Psychology 13.
    Attention-deficit/hyperactivity disorder is a neurodevelopmental disorder with a childhood prevalence of 5%. In about two-thirds of the cases, ADHD symptoms persist into adulthood and often cause significant functional impairment. Based on the results of family and twin studies, the estimated heritability of ADHD approximates 80%, suggests a significant genetic component in the etiological background of the disorder; however, the potential genetic effects on disease risk, symptom severity, and persistence are unclear. This article provides a brief review of the (...)
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  43.  13
    Genetic modules and networks for behavior: lessons from Drosophila.Robert R. H. Anholt - 2004 - Bioessays 26 (12):1299-1306.
    Behaviors are quantitative traits determined through actions of multiple genes and subject to genome–environment interactions. Early studies concentrated on analyzing the effects of single genes on behaviors, often generating views of simplified linear genetic pathways. The genome era has generated a profound paradigm shift enabling us to identify all the genes that contribute to expression of a behavioral phenotype, to investigate how they are organized as functional ensembles and to begin to identify polymorphisms that contribute to phenotypic variation and (...)
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  44.  80
    The global governance of genetic enhancement technologies: Justification, proposals, and challenges.Jon Rueda - 2024 - Enrahonar: Quaderns de Filosofía 72:55-71.
    The prospect of human genetic enhancement requires an institutional response, and probably the creation of new institutions. The governance of genetic enhancement technologies, moreover, needs to be global in scope. In this article, I analyze the debate on the global governance of human genetic enhancement. I begin by offering a philosophical justification for the need to adopt a global framework for governance of technologies that would facilitate the improvement of non-pathological genetic traits. I then summarize the (...)
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  45. 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 (...) supermarket in isolation from one another, this may have a negative effect on society as a whole, including future generations. In this article we argue that RGTs targeting height, innate immunity, and certain cognitive traits could lead to collective action problems. We then discuss whether this risk could in principle justify state intervention in the genetic supermarket. We argue that there is a plausible prima facie case for the view that such state intervention would be justified and respond to a number of arguments that might be adduced against that view. (shrink)
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  46.  8
    Genetics and culture: The geneticization thesis.Henk Have - 2001 - Medicine, Health Care and Philosophy 4 (3):295-304.
    The concept of ‘geneticization’ has been introduced in the scholarly literature to describe the various interlocking and imperceptible mechanisms of interaction between medicine, genetics, society and culture. It is argued that Western culture currently is deeply involved in a process of geneticization. This process implies a redefinition of individuals in terms of DNA codes, a new language to describe and interpret human life and behavior in a genomic vocabulary of codes, blueprints, traits, dispositions, genetic mapping, and a gentechnological approach (...)
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  47.  23
    Behaving: What's Genetic, What's Not, and Why Should We Care?Kenneth F. Schaffner - 2016 - New York, US: Oxford University Press USA.
    Behaving presents an overview of the recent history and methodology of behavioral genetics and psychiatric genetics, informed by a philosophical perspective. Kenneth F. Schaffner addresses a wide range of issues, including genetic reductionism and determinism, "free will," and quantitative and molecular genetics. The latter covers newer genome-wide association studies that have produced a paradigm shift in the subject, and generated the problem of "missing heritability." Schaffner also presents cases involving pro and con arguments for genetic testing for IQ (...)
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  48. 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 (...)
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  49.  38
    Ethical Concerns About Human Genetic Enhancement in the Malay Science Fiction Novels.Noor Munirah Isa & Muhammad Fakhruddin Hj Safian Shuri - 2018 - Science and Engineering Ethics 24 (1):109-127.
    Advancements in science and technology have not only brought hope to humankind to produce disease-free offspring, but also offer possibilities to genetically enhance the next generation’s traits and capacities. Human genetic enhancement, however, raises complex ethical questions, such as to what extent should it be allowed? It has been a great challenge for humankind to develop robust ethical guidelines for human genetic enhancement that address both public concerns and needs. We believe that research about public concerns is necessary (...)
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  50.  68
    Are Genetic Representations Read in Development?Ronald J. Planer - 2016 - British Journal for the Philosophy of Science 67 (4):997-1023.
    The status of genes as bearers of semantic content remains very much in dispute among philosophers of biology. In a series of papers, Nicholas Shea has argued that his ‘infotel’ theory of semantics vindicates the claim that genes carry semantic content. On Shea’s account, each organism is associated with a ‘developmental system’ that takes genetic representations as inputs and produces whole-organism traits as outputs. Moreover, at least in his most recent work on the topic, Shea is explicit in claiming (...)
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