Results for 'Phenotype Ontology'

967 found
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  1.  11
    IDOCS: Intelligent distributed ontology consensus system - The use of machine learning in retinal drusen phenotyping.George Thomas, Michael A. Grassi, John R. Lee, Albert O. Edwards, Michael B. Gorin, Ronald Klein, Thomas L. Casavant, Todd E. Scheetz, Edwin M. Stone & Andrew B. Williams - unknown
    PurposeTo use the power of knowledge acquisition and machine learning in the development of a collaborative computer classification system based on the features of age-related macular degeneration (AMD).MethodsA vocabulary was acquired from four AMD experts who examined 100 ophthalmoscopic images. The vocabulary was analyzed, hierarchically structured, and incorporated into a collaborative computer classification system called IDOCS. Using this system, three of the experts examined images from a second set of digital images compiled from more than 1000 patients with AMD. Images (...)
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  2. Finding Our Way through Phenotypes.Andrew R. Deans, Suzanna E. Lewis, Eva Huala, Salvatore S. Anzaldo, Michael Ashburner, James P. Balhoff, David C. Blackburn, Judith A. Blake, J. Gordon Burleigh, Bruno Chanet, Laurel D. Cooper, Mélanie Courtot, Sándor Csösz, Hong Cui, Barry Smith & Others - 2015 - PLoS Biol 13 (1):e1002033.
    Despite a large and multifaceted effort to understand the vast landscape of phenotypic data, their current form inhibits productive data analysis. The lack of a community-wide, consensus-based, human- and machine-interpretable language for describing phenotypes and their genomic and environmental contexts is perhaps the most pressing scientific bottleneck to integration across many key fields in biology, including genomics, systems biology, development, medicine, evolution, ecology, and systematics. Here we survey the current phenomics landscape, including data resources and handling, and the progress that (...)
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  3. The Ontology for Biomedical Investigations.Anita Bandrowski, Ryan Brinkman, Mathias Brochhausen, Matthew H. Brush, Bill Bug, Marcus C. Chibucos, Kevin Clancy, Mélanie Courtot, Dirk Derom, Michel Dumontier, Liju Fan, Jennifer Fostel, Gilberto Fragoso, Frank Gibson, Alejandra Gonzalez-Beltran, Melissa A. Haendel, Yongqun He, Mervi Heiskanen, Tina Hernandez-Boussard, Mark Jensen, Yu Lin, Allyson L. Lister, Phillip Lord, James Malone, Elisabetta Manduchi, Monnie McGee, Norman Morrison, James A. Overton, Helen Parkinson, Bjoern Peters, Philippe Rocca-Serra, Alan Ruttenberg, Susanna-Assunta Sansone, Richard H. Scheuermann, Daniel Schober, Barry Smith, Larisa N. Soldatova, Christian J. Stoeckert, Chris F. Taylor, Carlo Torniai, Jessica A. Turner, Randi Vita, Patricia L. Whetzel & Jie Zheng - 2016 - PLoS ONE 11 (4):e0154556.
    The Ontology for Biomedical Investigations (OBI) is an ontology that provides terms with precisely defined meanings to describe all aspects of how investigations in the biological and medical domains are conducted. OBI re-uses ontologies that provide a representation of biomedical knowledge from the Open Biological and Biomedical Ontologies (OBO) project and adds the ability to describe how this knowledge was derived. We here describe the state of OBI and several applications that are using it, such as adding semantic (...)
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  4.  17
    Precision medicine and digital phenotyping: Digital medicine's way from more data to better health.Renate Baumgartner - 2021 - Big Data and Society 8 (2).
    Precision medicine and digital phenotyping are two prominent data-based approaches within digital medicine. While precision medicine historically used primarily genetic data to find targeted treatment options, digital phenotyping relies on the usage of big data deriving from digital devices such as smartphones, wearables and other connected devices. This paper first focusses on the aspect of data type to explore differences and similarities between precision medicine and digital phenotyping. It outlines different ways of data collection and production and the consequences thereof. (...)
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  5. Is the free-energy principle a formal theory of semantics? From variational density dynamics to neural and phenotypic representations.Inês Hipólito, Maxwell Ramstead & Karl Friston - 2020 - Entropy 1 (1):1-30.
    The aim of this paper is twofold: (1) to assess whether the construct of neural representations plays an explanatory role under the variational free-energy principle and its corollary process theory, active inference; and (2) if so, to assess which philosophical stance - in relation to the ontological and epistemological status of representations - is most appropriate. We focus on non-realist (deflationary and fictionalist-instrumentalist) approaches. We consider a deflationary account of mental representation, according to which the explanatorily relevant contents of neural (...)
     
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  6. The Planteome database: an integrated resource for reference ontologies, plant genomics and phenomics.Laurel Cooper, Austin Meier, Marie-Angélique Laporte, Justin L. Elser, Chris Mungall, Brandon T. Sinn, Dario Cavaliere, Seth Carbon, Nathan A. Dunn, Barry Smith, Botong Qu, Justin Preece, Eugene Zhang, Sinisa Todorovic, Georgios Gkoutos, John H. Doonan, Dennis W. Stevenson, Elizabeth Arnaud & Pankaj Jaiswal - 2018 - Nucleic Acids Research 46 (D1):D1168–D1180.
    The Planteome project provides a suite of reference and species-specific ontologies for plants and annotations to genes and phenotypes. Ontologies serve as common standards for semantic integration of a large and growing corpus of plant genomics, phenomics and genetics data. The reference ontologies include the Plant Ontology, Plant Trait Ontology, and the Plant Experimental Conditions Ontology developed by the Planteome project, along with the Gene Ontology, Chemical Entities of Biological Interest, Phenotype and Attribute Ontology, (...)
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  7. The Plant Ontology as a Tool for Comparative Plant Anatomy and Genomic Analyses.Laurel Cooper, Ramona Walls, Justin Elser, Maria A. Gandolfo, Dennis W. Stevenson, Barry Smith & Others - 2013 - Plant and Cell Physiology 54 (2):1-23..
    The Plant Ontology (PO; http://www.plantontology.org/) is a publicly-available, collaborative effort to develop and maintain a controlled, structured vocabulary (“ontology”) of terms to describe plant anatomy, morphology and the stages of plant development. The goals of the PO are to link (annotate) gene expression and phenotype data to plant structures and stages of plant development, using the data model adopted by the Gene Ontology. From its original design covering only rice, maize and Arabidopsis, the scope of the (...)
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  8. Toward an Ontological Treatment of Disease and Diagnosis.Richard H. Scheuermann, Werner Ceusters & Barry Smith - 2009 - In Proceedings of the 2009 AMIA Summit on Translational Bioinformatics. American Medical Informatics Association.
    Many existing biomedical vocabulary standards rest on incomplete, inconsistent or confused accounts of basic terms pertaining to diseases, diagnoses, and clinical phenotypes. Here we outline what we believe to be a logically and biologically coherent framework for the representation of such entities and of the relations between them. We defend a view of disease as involving in every case some physical basis within the organism that bears a disposition toward the execution of pathological processes. We present our view in the (...)
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  9.  15
    Using ontologies to study cell transitions.Ludger Jansen, G. Fuellen, U. Leser & A. Kurtz - 2012 - In M. Boeker, H. Herre, R. Hoehndorf & F. Loebe (eds.), OBML 2012. Workshop Proceedings. Dresden, September 27-28.
    BACKGROUND -/- Understanding, modelling and influencing the transition between different states of cells, be it reprogramming of somatic cells to pluripotency or trans-differentiation between cells, is a hot topic in current biomedical and cell-biological research. Nevertheless, the large body of published knowledge in this area is underused, as most results are only represented in natural language, impeding their finding, comparison, aggregation, and usage. Scientific understanding of the complex molecular mechanisms underlying cell transitions could be improved by making essential pieces of (...)
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  10. A comprehensive update on CIDO: the community-based coronavirus infectious disease ontology.Yongqun He, Hong Yu, Anthony Huffman, Asiyah Yu Lin, Darren A. Natale, John Beverley, Ling Zheng, Yehoshua Perl, Zhigang Wang, Yingtong Liu, Edison Ong, Yang Wang, Philip Huang, Long Tran, Jinyang Du, Zalan Shah, Easheta Shah, Roshan Desai, Hsin-hui Huang, Yujia Tian, Eric Merrell, William D. Duncan, Sivaram Arabandi, Lynn M. Schriml, Jie Zheng, Anna Maria Masci, Liwei Wang, Hongfang Liu, Fatima Zohra Smaili, Robert Hoehndorf, Zoë May Pendlington, Paola Roncaglia, Xianwei Ye, Jiangan Xie, Yi-Wei Tang, Xiaolin Yang, Suyuan Peng, Luxia Zhang, Luonan Chen, Junguk Hur, Gilbert S. Omenn, Brian Athey & Barry Smith - 2022 - Journal of Biomedical Semantics 13 (1):25.
    The current COVID-19 pandemic and the previous SARS/MERS outbreaks of 2003 and 2012 have resulted in a series of major global public health crises. We argue that in the interest of developing effective and safe vaccines and drugs and to better understand coronaviruses and associated disease mechenisms it is necessary to integrate the large and exponentially growing body of heterogeneous coronavirus data. Ontologies play an important role in standard-based knowledge and data representation, integration, sharing, and analysis. Accordingly, we initiated the (...)
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  11. VO: Vaccine Ontology.Yongqun He, Lindsay Cowell, Alexander D. Diehl, H. L. Mobley, Bjoern Peters, Alan Ruttenberg, Richard H. Scheuermann, Ryan R. Brinkman, Melanie Courtot, Chris Mungall, Barry Smith & Others - 2009 - In Barry Smith (ed.), ICBO 2009: Proceedings of the First International Conference on Biomedical Ontology. Buffalo: NCOR.
    Vaccine research, as well as the development, testing, clinical trials, and commercial uses of vaccines involve complex processes with various biological data that include gene and protein expression, analysis of molecular and cellular interactions, study of tissue and whole body responses, and extensive epidemiological modeling. Although many data resources are available to meet different aspects of vaccine needs, it remains a challenge how we are to standardize vaccine annotation, integrate data about varied vaccine types and resources, and support advanced vaccine (...)
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  12. The Non-Coding RNA Ontology : a comprehensive resource for the unification of non-coding RNA biology.Huang Jingshan, Eilbeck Karen, Barry Smith, A. Blake Judith, Dou Dejing, Huang Weili, A. Natale Darren, Ruttenberg Alan, Huan Jun & T. Zimmermann Michael - 2016 - Journal of Biomedical Semantics 7 (1).
    In recent years, sequencing technologies have enabled the identification of a wide range of non-coding RNAs (ncRNAs). Unfortunately, annotation and integration of ncRNA data has lagged behind their identification. Given the large quantity of information being obtained in this area, there emerges an urgent need to integrate what is being discovered by a broad range of relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a systematically structured and precisely defined controlled vocabulary for (...)
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  13. CIDO: The Community-Based Coronavirus Infectious Disease Ontology.Yongqun He, Hong Yu, Edison Ong, Yang Wang, Yingtong Liu, Anthony Huffman, Hsin-hui Huang, Beverley John, Asiyah Yu Lin, Duncan William D., Sivaram Arabandi, Jiangan Xie, Junguk Hur, Xiaolin Yang, Luonan Chen, Gilbert S. Omenn, Brian Athey & Barry Smith - 2021 - Proceedings of the 11th International Conference on Biomedical Ontologies (ICBO) and 10th Workshop on Ontologies and Data in Life Sciences (ODLS).
    Current COVID-19 pandemic and previous SARS/MERS outbreaks have caused a series of major crises to global public health. We must integrate the large and exponentially growing amount of heterogeneous coronavirus data to better understand coronaviruses and associated disease mechanisms, in the interest of developing effective and safe vaccines and drugs. Ontologies have emerged to play an important role in standard knowledge and data representation, integration, sharing, and analysis. We have initiated the development of the community-based Coronavirus Infectious Disease Ontology (...)
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  14. A plant disease extension of the Infectious Disease Ontology.Ramona Walls, Barry Smith, Elser Justin, Goldfain Albert, W. Stevenson Dennis & Pankaj Jaiswal - 2012 - In Walls Ramona, Smith Barry, Justin Elser, Albert Goldfain & Stevenson Dennis W. (eds.), Proceeedings of the Third International Conference on Biomedical Ontology (CEUR 897). pp. 1-5.
    Plants from a handful of species provide the primary source of food for all people, yet this source is vulnerable to multiple stressors, such as disease, drought, and nutrient deficiency. With rapid population growth and climate uncertainty, the need to produce crops that can tolerate or resist plant stressors is more crucial than ever. Traditional plant breeding methods may not be sufficient to overcome this challenge, and methods such as highOthroughput sequencing and automated scoring of phenotypes can provide significant new (...)
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  15. OmniSearch: a semantic search system based on the Ontology for MIcroRNA Target Gene Interaction data.Huang Jingshan, Gutierrez Fernando, J. Strachan Harrison, Dou Dejing, Huang Weili, A. Blake Judith, Barry Smith, Eilbeck Karen, A. Natale Darren & Lin Yu - 2016 - Journal of Biomedical Semantics 7 (1):1.
    In recent years, sequencing technologies have enabled the identification of a wide range of non-coding RNAs (ncRNAs). Unfortunately, annotation and integration of ncRNA data has lagged behind their identification. Given the large quantity of information being obtained in this area, there emerges an urgent need to integrate what is being discovered by a broad range of relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a systematically structured and precisely defined controlled vocabulary for (...)
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  16. From Obesity to Energy Metabolism: Ontological Perspectives on the Metrics of Human Bodies.Davide Serpico & Andrea Borghini - 2020 - Topoi 40 (3):577-586.
    In this paper, we aim at rethinking the concept of obesity in a way that better captures the connection between underlying medical aspects, on the one hand, and an individual’s developmental history, on the other. Our proposal rests on the idea that obesity is not to be understood as a phenotypic trait or character; rather, obesity represents one of the many possible states of a more complex phenotypic trait that we call ‘energy metabolism.’ We argue that this apparently simple conceptual (...)
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  17. Chapter two autobiography, ontology and responsibility Roy Elveton.Ontology Autobiography - 2009 - In B. P. O'Donohoe & R. O. Elveton (eds.), Sartre's Second Century. Cambridge Scholars Press. pp. 17.
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  18. Jonathan Edwards.Dispositional Ontology - 2009 - In Graham Oppy & Nick Trakakis (eds.), Medieval Philosophy of Religion: The History of Western Philosophy of Religion, Volume 2. Routledge. pp. 3--223.
     
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  19. Argument's value1.Ontological Arguments & G. O. D. In - 2009 - In William J. Wainwright (ed.), Philosophy of Religion. Routledge. pp. 2--54.
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  20.  49
    The controversy over res in philosophy of science and the mysteries of ontological neutrality.Ontological Neutrality - 2011 - Filozofia 66 (2):141.
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  21. History in the Philosophy of Heidegger.".Ontology Phenomenology - 1958 - Revue Internationale de Philosophie 12:117-32.
     
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  22.  17
    Chislwlm, Internalism, and Knowing that One Knows, CHRISTOPHER H. CONN.Ontological Minimalism - 2001 - Australasian Journal of Philosophy 79 (2).
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  23. Goran Sundholm.Ontologic Versus Epistemologic - 1994 - In Dag Prawitz & Dag Westerståhl (eds.), Logic and Philosophy of Science in Uppsala. Kluwer Academic Publishers. pp. 373.
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  24. Bantu philosophy.Bantu Ontology - forthcoming - African Philosophy: A Classical Approach.
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  25.  15
    caracteristica-actividad. See part-whole relation/steps-activity causal relation certainty in. See certainty.Basic Formal Ontology - 2010 - In Alain Auger & Caroline Barrière (eds.), Probing Semantic Relations: Exploration and Identification in Specialized Texts. John Benjamins. pp. 149.
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  26.  30
    Index To Volume 5.Wild Ontology & Elaborating Environmental Pragmatism - 2000 - Ethics and the Environment 5 (2).
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  27.  10
    Keith Campbell.Of Ontology - 2012 - In Lila Haaparanta & Heikki Koskinen (eds.), Categories of Being: Essays on Metaphysics and Logic. Oxford University Press, Usa. pp. 420.
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  28. Mario Bunge.Semantics To Ontology - 1974 - In Edgar Morscher, Johannes Czermak & Paul Weingartner (eds.), Problems in Logic and Ontology. Akadem. Druck- U. Verlagsanst..
  29.  20
    The Scope Argument, MICHAEL O'ROURKE.Against Musical Ontology & Aaron Ridley - 2003 - Journal of Philosophy 100 (3).
  30.  19
    Models back in the bunk. [REVIEW]Deriving Methodology From Ontology & A. Decade of Feminist Economics - 2005 - Journal of Economic Methodology 12 (4):599-621.
    A review of U. Mäki (ed.). Fact and Fiction in Economics, Cambridge: Cambridge University Press, 2003. pp. xvi 384. ISBN 0521 00957. As people interested mainly in theory, methodologists and philos...
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  31.  18
    Jacek Pasnic/ck.Complex Properties Do We Need & Inour Ontology - 2006 - In J. Jadacki & J. Pasniczek (eds.), The Lvov-Warsaw School: The New Generation. Reidel. pp. 113.
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  32.  45
    Potential Infinite Models and Ontologically Neutral Logic. [REVIEW]Theodore Hailperin & Ontologically Neutral Logic - 2001 - Journal of Philosophical Logic 30 (1):79-96.
    The paper begins with a more carefully stated version of ontologically neutral (ON) logic, originally introduced in (Hailperin, 1997). A non-infinitistic semantics which includes a definition of potential infinite validity follows. It is shown, without appeal to the actual infinite, that this notion provides a necessary and sufficient condition for provability in ON logic.
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  33.  11
    Prosoponická ontológia a jej perspektívy.J. Letz & Prosoponic Ontology - 2002 - Filozofia 57 (8):582.
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  34. Index of volume 79, 2001.Stephen Buckle, Miracles Marvels, Mundane Order, Temporal Solipsism, Robert Kirk, Nonreductive Physicalism, Strict Implication, Donald Mertz Individuation, Instance Ontology & Dale E. Miller - 2001 - Australasian Journal of Philosophy 79 (4):594-596.
     
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  35. Comparative Dialectics: Nishida Kitaro's Logic of Place and Western Dialectical Thought By GS Axtell Philosophy East and West Vol. 41, No. 2 (April 1991). [REVIEW]I. I. Methodological & Ontological Materialism - 1991 - Philosophy East and West 41 (2):163-184.
  36.  58
    Sources of Wilhelm Johannsen’s Genotype Theory.Nils Roll-Hansen - 2009 - Journal of the History of Biology 42 (3):457-493.
    This paper describes the historical background and early formation of Wilhelm Johannsen's distinction between genotype and phenotype. It is argued that contrary to a widely accepted interpretation his concepts referred primarily to properties of individual organisms and not to statistical averages. Johannsen's concept of genotype was derived from the idea of species in the tradition of biological systematics from Linnaeus to de Vries: An individual belonged to a group - species, subspecies, elementary species - by representing a certain underlying (...)
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  37. Causes That Make a Difference.C. Kenneth Waters - 2007 - Journal of Philosophy 104 (11):551-579.
    Biologists studying complex causal systems typically identify some factors as causes and treat other factors as background conditions. For example, when geneticists explain biological phenomena, they often foreground genes and relegate the cellular milieu to the background. But factors in the milieu are as causally necessary as genes for the production of phenotypic traits, even traits at the molecular level such as amino acid sequences. Gene-centered biology has been criticized on the grounds that because there is parity among causes, the (...)
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  38. 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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  39. The Dispositional Genome: Primus Inter Pares.Christopher J. Austin - 2015 - Biology and Philosophy 30 (2):227-246.
    According to the proponents of Developmental Systems Theory and the Causal Parity Thesis, the privileging of the genome as “first among equals” with respect to the development of phenotypic traits is more a reflection of our own heuristic prejudice than of ontology - the underlying causal structures responsible for that specified development no more single out the genome as primary than they do other broadly “environmental” factors. Parting with the methodology of the popular responses to the Thesis, this paper (...)
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  40. The Identity of Living Beings, Epigenetics, and the Modesty of Philosophy.Giovanni Boniolo & Giuseppe Testa - 2012 - Erkenntnis 76 (2):279-298.
    Two problems related to the biological identity of living beings are faced: the who-problem (which are the biological properties making that living being unique and different from the others?); the persistence-problem (what does it take for a living being to persist from a time to another?). They are discussed inside a molecular biology framework, which shows how epigenetics can be a good ground to provide plausible answers. That is, we propose an empirical solution to the who-problem and to the persistence-problem (...)
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  41. What could cognition be, if not human cognition?: Individuating cognitive abilities in the light of evolution.Carrie Figdor - 2022 - Biology and Philosophy 37 (6):1-21.
    I argue that an explicit distinction between cognitive characters and cognitive phenotypes is needed for empirical progress in the cognitive sciences and their integration with evolution-guided sciences. I elaborate what ontological commitment to characters involves and how such a commitment would clarify ongoing debates about the relations between human and nonhuman cognition and the extent of cognitive abilities across biological species. I use theoretical proposals in episodic memory, language, and sociocultural bases of cognition to illustrate how cognitive characters are being (...)
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  42.  89
    heritability and causal reasoning.Kate E. Lynch - 2017 - Biology and Philosophy 32 (1):25-49.
    Gene–environment covariance is the phenomenon whereby genetic differences bias variation in developmental environment, and is particularly problematic for assigning genetic and environmental causation in a heritability analysis. The interpretation of these cases has differed amongst biologists and philosophers, leading some to reject the utility of heritability estimates altogether. This paper examines the factors that influence causal reasoning when G–E covariance is present, leading to interpretive disagreement between scholars. It argues that the causal intuitions elicited are influenced by concepts of agency (...)
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  43.  14
    Investigations Into the Trans Self and Moore's Paradox.Linda A. W. Brakel - 2020 - Cham, Switzerland: Palgrave-Macmillan.
    This book explores how the trans phenomenon can challenge the existing concept of the Self and its nature. The catalyst is Moore’s Paradox: can a trans person coherently state ‘I am a girl but I don’t believe that’? More deeply, three fundamental philosophical questions arise, of ontological, epistemological, and conceptual significance: what Self understands that the natal-gender is ‘wrong’? How does the trans person know that the natal-gender is ‘wrong’ and what counts as evidence? And finally, how does this effect (...)
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  44.  16
    Engaging the Adaptive Subject: Learning Evolution Beyond the Cell Walls.Ramsey Affifi - 2020 - Biological Theory 15 (3):121-135.
    According to the modern synthesis, evolution is the gradual change of gene frequencies in a population. The MS is closely allied to adaptationist explanations of phenotypes, where organismic form and behavior is treated as previously selected for and owes its genesis to some remote past. However, some new theories of evolution broadly aligned with the extended evolutionary synthesis, in particular developmental plasticity theory and niche construction theory, foreground the fact that evolution is sometimes much more rapid than previously imagined, and (...)
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  45.  18
    Homeorhesis: envisaging the logic of life trajectories in molecular research on trauma and its effects.Stephanie Lloyd, Alexandre Larivée & Pierre-Eric Lutz - 2022 - History and Philosophy of the Life Sciences 44 (4):1-29.
    What sets someone on a life trajectory? This question is at the heart of studies of 21st-century neurosciences that build on scientific models developed over the last 150 years that attempt to link psychopathology risk and human development. Historically, this research has documented persistent effects of singular, negative life experiences on people’s subsequent development. More recently, studies have documented neuromolecular effects of early life adversity on life trajectories, resulting in models that frame lives as disproportionately affected by early negative experiences. (...)
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  46.  26
    Sources of Wilhelm Johannsen’s Genotype Theory.Nils Roll-Hansen - 2009 - Journal of the History of Biology 42 (3):457-493.
    This paper describes the historical background and early formation of Wilhelm Johannsen's distinction between genotype and phenotype. It is argued that contrary to a widely accepted interpretation his concepts referred primarily to properties of individual organisms and not to statistical averages. Johannsen's concept of genotype was derived from the idea of species in the tradition of biological systematics from Linnaeus to de Vries: An individual belonged to a group - species, subspecies, elementary species - by representing a certain underlying (...)
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  47.  9
    That What Is - more meaningful.Ulrich de Balbian - 2019 - London: Academic Publishers.
    According to Maslow's Hierarchy of needs, only when lower or basic needs are satisfied will an individual be able to concentrate on higher needs. The motivation for the doing of original and creative philosophizing, theorizing in sciences and original work in disciplines or socio-cultural practices are some of the highest 'needs', values and attitudes. What are the values, attitudes and beliefs that groups of individuals subscribe to and employ to constitute their selves and realities? These things(that individuals experience as it (...)
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  48. Hybridity in Agriculture.Catherine Kendig - 2012 - In Paul B. Thompson & David M. Kaplan (eds.), Encyclopedia of Food and Agricultural Ethics. New York: Springer Verlag.
    In a very general sense, hybrid can be understood to be any organism that is the product of two (or more) organisms where each parent belongs to a different kind. For example; the offspring from two or more parent organisms, each belonging to a separate species (or genera), is called a “hybrid”. “Hybridity” refers to the phenomenal character of being a hybrid. And “hybridization ” refers to both natural and artificial processes of generating hybrids. These processes include mechanisms of selective (...)
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  49.  39
    The Theory Of Social–Cultural Genetic Gene (S- c Dna).Jiayin Min - 2013 - World Futures 69 (2):89 - 101.
    It took a long time for humanity to know about biogenetics. And yet its role as a determinant in the living system was not proven until the twentieth century when DNA was discovered. Similarly, it took a long time for humanity to know about culture and civilization. And yet until now there is neither definite standards for differentiating them nor a definition that is commonly acceptable. By taking an evolutionary pluralism as ontology framework and the transdisciplinary research method of (...)
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  50. Between holism and reductionism: a philosophical primer on emergence.Massimo Pigliucci - 2013 - Biological Journal of the Linnean Society 112 (2):261-267.
    Ever since Darwin a great deal of the conceptual history of biology may be read as a struggle between two philosophical positions: reductionism and holism. On the one hand, we have the reductionist claim that evolution has to be understood in terms of changes at the fundamental causal level of the gene. As Richard Dawkins famously put it, organisms are just ‘lumbering robots’ in the service of their genetic masters. On the other hand, there is a long holistic tradition that (...)
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