Results for 'Maureen A. Flannery'

969 found
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  1.  36
    Simple Living and Hard Choices.Maureen A. Flannery - 1982 - Hastings Center Report 12 (4):9-12.
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  2.  90
    Holmes, H. B., B. B. Hoskins and M. Gross (eds.): 1980, Birth Control and Controlling Birth: Women-Centered Perspectives, Humana Press, Clifton, N.J.; Holmes, H. B., B. B. Hoskins and M. Gross (eds.): 1981, The Custom-Made Child? Women-Centered Perspectives Humana Press, Clifton, N.J. [REVIEW]Maureen A. Flannery - 1982 - Journal of Medicine and Philosophy 7 (2):229-232.
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  3. A Contemporary Aristotelian Embryology.Maureen L. Condic & Kevin L. Flannery - 2014 - Nova et Vetera 12 (2).
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  4.  21
    The Problem of Silence in Feminist Psychology.Maureen A. Mahoney - 1996 - Feminist Studies 22 (3):603.
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  5.  23
    Polydactyly in the Southwest: art or anatomy—a photo essay.Maureen A. Hirthler & Richard L. Hutchison - 2012 - In Zdravko Radman (ed.), The Hand. MIT Press. pp. 7--4.
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  6.  25
    Mesodermal determination genes: Evidence from DNA methylation studies.Maureen A. Harrington & Peter A. Jones - 1988 - Bioessays 8 (4):100-103.
    Mouse embryo cells, primed to differentiate with the hypomethylating agent 5‐azacytidine (5‐aza‐CR), provide an excellent model system in which cellular differentiation can be studied at the molecular level. An inherent advantage of this system is the availability of clonal populations of cells representative of the non‐differentiated precursor, those whose determinative state is that of a specific lineage, and the end stage, phenotypically mature cell. Analysis of these cultures at the cellular and molecular level will advance our understanding of requirements for (...)
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  7.  14
    Spatial reversal learning in rats and gerbils.Maureen A. Carey & Gloria J. Fischer - 1973 - Bulletin of the Psychonomic Society 2 (3):173-174.
  8.  6
    Agustín ¿interpretó mal a Ticonio?Maureen A. Tilley & José Anoz - 1995 - Augustinus 40 (156-159):297-301.
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  9.  57
    Redefining Donatism.Maureen A. Tilley - 2011 - Augustinian Studies 42 (1):21-32.
  10.  41
    Letters To the Editor.Maureen A. Eby - 1994 - Nursing Ethics 1 (1):63-63.
  11.  26
    Family and Financial Conflict in the Donatist Controversy.Maureen A. Tilley - 2012 - Augustinian Studies 43 (1-2):49-64.
  12.  35
    Looking at me, appreciating you: Self-focused attention distinguishes between gratitude and indebtedness.Maureen A. Mathews & Jeffrey D. Green - 2010 - Cognition and Emotion 24 (4):710-718.
  13. In Pursuit of Piety: A Translation and Interpretation of Plato's "Euthyphro".Maureen A. Eckert - 2004 - Dissertation, City University of New York
    This dissertation presents a new translation of Plato's Euthyphro that emphasizes the literary qualities of the dialogue and also clarifies controversial philosophical passages. The translation assists a holistic interpretation of the dialogue. Main features of the commentary include attention to Euthyphro's case at the start of the dialogue. Its significance is intertwined with the whole of the work, as Euthyphro's case exemplifies a dilemma already present in Athenian religious thinking. This case intensifies the need to discover a standard notion of (...)
     
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  14.  15
    Nueva definición del Donatismo: Nuevos caminos de investigación.Maureen A. Tilley - 2022 - Augustinus 67 (2):203-215.
    El artículo propone cuatro líneas de investigación para los futuros estudios sobre el donatismo, particularmente en las ramas de la eclesiología y teología sacramental. En primer lugar, considera que el donatismo ha de ser analizado no solo como un complemento de los escritos de Agustín, sino como un movimiento con entidad propia. En segundo lugar, el donatismo fue un movimiento que implicó otras muchas cosas más de lo que el mismo Agustín condenó en sus escritos como errores del propio movimiento (...)
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  15.  26
    UKCC's new procedures for handling complaints about misconduct.Maureen A. Eby - 1994 - Nursing Ethics 1 (3):182-183.
  16.  57
    Major problems in evolutionary transitions: how a metabolic perspective can enrich our understanding of macroevolution.Maureen A. O’Malley & Russell Powell - 2016 - Biology and Philosophy 31 (2):159-189.
    The model of major transitions in evolution devised by Maynard Smith and Szathmáry has exerted tremendous influence over evolutionary theorists. Although MTE has been criticized for inconsistently combining different types of event, its ongoing appeal lies in depicting hierarchical increases in complexity by means of evolutionary transitions in individuality. In this paper, we consider the implications of major evolutionary events overlooked by MTE and its ETI-oriented successors, specifically the biological oxygenation of Earth, and the acquisitions of mitochondria and plastids. By (...)
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  17.  7
    Conceptual Parallels: Microbiome Research and Ancient Medicine.Laura Sumrall & Maureen A. O'Malley - 2024 - Perspectives in Biology and Medicine 67 (3):406-423.
    The concepts currently operating in much medical microbiome research bear a curious resemblance to an ancient tradition of Western medicine. This tradition, humoral medicine, is concerned with the four humors: yellow and black bile, phlegm, blood. Both humoral medicine and medical microbiome research use notions of imbalance and balance for broad explanations of disease and health. Both traditions also hold that the composition of humors or microbiomes determines bodily as well as mental states. Causality in each system is often conceived (...)
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  18. Metagenomics and biological ontology.John Dupré & Maureen A. O’Malley - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):834-846.
    Metagenomics is an emerging microbial systems science that is based on the large-scale analysis of the DNA of microbial communities in their natural environments. Studies of metagenomes are revealing the vast scope of biodiversity in a wide range of environments, as well as new functional capacities of individual cells and communities, and the complex evolutionary relationships between them. Our examination of this science focuses on the ontological implications of these studies of metagenomes and metaorganisms, and what they mean for common (...)
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  19.  68
    The Study of Socioethical Issues in Systems Biology.Maureen A. O'Malley, Jane Calvert & John Dupré - 2007 - American Journal of Bioethics 7 (4):67-78.
    Systems biology is the rapidly growing and heavily funded successor science to genomics. Its mission is to integrate extensive bodies of molecular data into a detailed mathematical understanding of all life processes, with an ultimate view to their prediction and control. Despite its high profile and widespread practice, there has so far been almost no bioethical attention paid to systems biology and its potential social consequences. We outline some of systems biology's most important socioethical issues by contrasting the concept of (...)
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  20. Disciplinary baptisms: a comparison of the naming stories of genetics, molecular biology, genomics, and systems biology.Alexander Powell, Maureen A. O. Malley, Staffan Muller-Wille, Jane Calvert & John Dupré - 2007 - History and Philosophy of the Life Sciences 29 (1):5.
     
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  21.  70
    Making Knowledge in Synthetic Biology: Design Meets Kludge.Maureen A. O’Malley - 2009 - Biological Theory 4 (4):378-389.
    Synthetic biology is an umbrella term that covers a range of aims, approaches, and techniques. They are all brought together by common practices of analogizing, synthesizing, mechanicizing, and kludging. With a focus on kludging as the connection point between biology, engineering, and evolution, I show how synthetic biology’s successes depend on custom-built kludges and a creative, “make-it-work” attitude to the construction of biological systems. Such practices do not fit neatly, however, into synthetic biology’s celebration of rational design. Nor do they (...)
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  22.  62
    Methodological Strategies in Microbiome Research and their Explanatory Implications.Maureen A. O’Malley & Derek J. Skillings - 2018 - Perspectives on Science 26 (2):239-265.
    . Early microbiome research found numerous associations between microbial community patterns and host physiological states. These findings hinted at community-level explanations. “Top-down” experiments, working with whole communities, strengthened these explanatory expectations. Now, “bottom-up” mechanism-seeking approaches are dissecting communities to focus on specific microbes carrying out particular biochemical activities. To understand the interplay between methodological and explanatory scales, we examine claims of “dysbiosis,” when host illness is proposed as the consequence of a community state. Our analysis concludes with general observations about (...)
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  23. The roles of integration in molecular systems biology.Maureen A. O’Malley & Orkun S. Soyer - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):58-68.
  24.  15
    Shared scientific thinking in everyday parent‐child activity.Kevin Crowley, Maureen A. Callanan, Jennifer L. Jipson, Jodi Galco, Karen Topping & Jeff Shrager - 2001 - Science Education 85 (6):712-732.
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  25.  58
    Towards a philosophy of microbiology.Maureen A. O’Malley & John Dupré - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):775-779.
  26.  91
    From genetic to genomic regulation: iterativity in microRNA research.Maureen A. O’Malley, Kevin C. Elliott & Richard M. Burian - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (4):407-417.
    The discovery and ongoing investigation of microRNAs suggest important conceptual and methodological lessons for philosophers and historians of biology. This paper provides an account of miRNA research and the shift from viewing these tiny regulatory entities as minor curiosities to seeing them as major players in the post-transcriptional regulation of genes. Conceptually, the study of miRNAs is part of a broader change in understandings of genetic regulation, in which simple switch-like mechanisms were reinterpreted as aspects of complex cellular and genome-wide (...)
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  27.  69
    When integration fails: Prokaryote phylogeny and the tree of life.Maureen A. O’Malley - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4a):551-562.
    Much is being written these days about integration, its desirability and even its necessity when complex research problems are to be addressed. Seldom, however, do we hear much about the failure of such efforts. Because integration is an ongoing activity rather than a final achievement, and because today’s literature about integration consists mostly of manifesto statements rather than precise descriptions, an examination of unsuccessful integration could be illuminating to understand better how it works. This paper will examine the case of (...)
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  28.  46
    The ecological virus.Maureen A. O'Malley - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 59:71-79.
    Ecology is usually described as the study of organisms interacting with one another and their environments. From this view of ecology, viruses – not usually considered to be organisms – would merely be part of the environment. Since the late 1980s, however, a growing stream of micrographic, experimental, molecular, and model-based (theoretical) research has been investigating how and why viruses should be understood as ecological actors of the most important sort. Viruses, especially phage, have been revealed as participants in the (...)
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  29.  58
    Microbes, mathematics, and models.Maureen A. O'Malley & Emily C. Parke - 2018 - Studies in History and Philosophy of Science Part A 72:1-10.
    Microbial model systems have a long history of fruitful use in fields that include evolution and ecology. In order to develop further insight into modelling practice, we examine how the competitive exclusion and coexistence of competing species have been modelled mathematically and materially over the course of a long research history. In particular, we investigate how microbial models of these dynamics interact with mathematical or computational models of the same phenomena. Our cases illuminate the ways in which microbial systems and (...)
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  30. Fundamental issues in systems biology.Maureen A. O'Malley & John Dupré - 2005 - Bioessays 27 (12):1270-1276.
    In the context of scientists' reflections on genomics, we examine some fundamental issues in the emerging postgenomic discipline of systems biology. Systems biology is best understood as consisting of two streams. One, which we shall call ‘pragmatic systems biology’, emphasises large‐scale molecular interactions; the other, which we shall refer to as ‘systems‐theoretic biology’, emphasises system principles. Both are committed to mathematical modelling, and both lack a clear account of what biological systems are. We discuss the underlying issues in identifying systems (...)
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  31.  43
    Introduction: Towards a philosophy of microbiology.Maureen A. O’Malley & John Dupré - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences.
  32. Size doesn’t matter: towards a more inclusive philosophy of biology. [REVIEW]Maureen A. O’Malley & John Dupré - 2007 - Biology and Philosophy 22 (2):155-191.
    Philosophers of biology, along with everyone else, generally perceive life to fall into two broad categories, the microbes and macrobes, and then pay most of their attention to the latter. ‘Macrobe’ is the word we propose for larger life forms, and we use it as part of an argument for microbial equality. We suggest that taking more notice of microbes – the dominant life form on the planet, both now and throughout evolutionary history – will transform some of the philosophy (...)
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  33.  25
    Book Review: Ethics in medical research: a handbook of good practice. [REVIEW]Maureen A. Eby - 2000 - Nursing Ethics 7 (5):457-458.
  34. Multilevel Research Strategies and Biological Systems.Maureen A. O’Malley, Ingo Brigandt, Alan C. Love, John W. Crawford, Jack A. Gilbert, Rob Knight, Sandra D. Mitchell & Forest Rohwer - 2014 - Philosophy of Science 81 (5):811-828.
    Multilevel research strategies characterize contemporary molecular inquiry into biological systems. We outline conceptual, methodological, and explanatory dimensions of these multilevel strategies in microbial ecology, systems biology, protein research, and developmental biology. This review of emerging lines of inquiry in these fields suggests that multilevel research in molecular life sciences has significant implications for philosophical understandings of explanation, modeling, and representation.
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  35. Varieties of Living Things: Life at the Intersection of Lineage and Metabolism.John Dupré & Maureen A. O'Malley - 2009 - Philosophy, Theory, and Practice in Biology 1 (20130604).
    We address three fundamental questions: What does it mean for an entity to be living? What is the role of inter-organismic collaboration in evolution? What is a biological individual? Our central argument is that life arises when lineage-forming entities collaborate in metabolism. By conceiving of metabolism as a collaborative process performed by functional wholes, which are associations of a variety of lineage-forming entities, we avoid the standard tension between reproduction and metabolism in discussions of life – a tension particularly evident (...)
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  36. Knowledge-Making Distinctions in Synthetic Biology.Maureen A. O'Malley, Alexander Powell, Jonathan F. Davies & Jane Calvert - 2008 - Bioessays 30 (1):57-65.
    Synthetic biology is an increasingly high-profile area of research that can be understood as encompassing three broad approaches towards the synthesis of living systems: DNA-based device construction, genome-driven cell engineering and protocell creation. Each approach is characterized by different aims, methods and constructs, in addition to a range of positions on intellectual property and regulatory regimes. We identify subtle but important differences between the schools in relation to their treatments of genetic determinism, cellular context and complexity. These distinctions tie into (...)
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  37.  52
    A Philosophical Perspective on Evolutionary Systems Biology.Maureen A. O’Malley, Orkun S. Soyer & Mark L. Siegal - 2015 - Biological Theory 10 (1):6-17.
    Evolutionary systems biology is an emerging hybrid approach that integrates methods, models, and data from evolutionary and systems biology. Drawing on themes that arose at a cross-disciplinary meeting on ESB in 2013, we discuss in detail some of the explanatory friction that arises in the interaction between evolutionary and systems biology. These tensions appear because of different modeling approaches, diverse explanatory aims and strategies, and divergent views about the scope of the evolutionary synthesis. We locate these discussions in the context (...)
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  38.  27
    Editorial Comment.Maureen A. Eby - 2000 - Nursing Ethics 7 (5):376-378.
  39.  44
    The Experimental Study of Bacterial Evolution and Its Implications for the Modern Synthesis of Evolutionary Biology.Maureen A. O’Malley - 2018 - Journal of the History of Biology 51 (2):319-354.
    Since the 1940s, microbiologists, biochemists and population geneticists have experimented with the genetic mechanisms of microorganisms in order to investigate evolutionary processes. These evolutionary studies of bacteria and other microorganisms gained some recognition from the standard-bearers of the modern synthesis of evolutionary biology, especially Theodosius Dobzhansky and Ledyard Stebbins. A further period of post-synthesis bacterial evolutionary research occurred between the 1950s and 1980s. These experimental analyses focused on the evolution of population and genetic structure, the adaptive gain of new functions, (...)
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  40.  14
    (1 other version)Book Review: Ethical decision making in nursing, second edition. [REVIEW]Maureen A. Eby - 1997 - Nursing Ethics 4 (2):169-170.
  41.  35
    Book Review: Euthanasia: death, dying and the medical duty. [REVIEW]Maureen A. Eby - 1997 - Nursing Ethics 4 (1):88-89.
  42.  24
    Decentring humans? Imagining a microbially inspired sociology: Myra J. Hird: The origins of sociable life: Evolution after science studies. Houndsmills, Basingstoke: Palgrave Macmillan, 2009, v+202pp, £50.00 HB.Maureen A. O’Malley - 2011 - Metascience 20 (1):127-130.
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  43.  54
    Disciplinary baptisms: A comparison of the naming stories of genetics, molecular biology, genomics and systems biology.Alexander Powell, Maureen A. O'Malley, Staffan Mueller-Wille, Jane Calvert & John Dupré - 2007 - History and Philosophy of the Life Sciences 29 (1):5-32.
    Understanding how scientific activities use naming stories to achieve disciplinary status is important not only for insight into the past, but for evaluating current claims that new disciplines are emerging. In order to gain a historical understanding of how new disciplines develop in relation to these baptismal narratives, we compare two recently formed disciplines, systems biology and genomics, with two earlier related life sciences, genetics and molecular biology. These four disciplines span the twentieth century, a period in which the processes (...)
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  44.  17
    The concept of balance in microbiome research.Maureen A. O'Malley - 2024 - Bioessays 46 (8):2400050.
    Microbiome research is changing how ecosystems, including animal bodies, are understood. In the case of humans, microbiome knowledge is transforming medical approaches and applications. However, the field is still young, and many conceptual and explanatory issues need resolving. These include how microbiome causality is understood, and how to conceptualize the role microbiomes have in the health status of their hosts and other ecosystems. A key concept that crops up in the medical microbiome literature is “balance.” A balanced microbiome is thought (...)
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  45.  93
    ‘Everything is everywhere: but the environment selects’: ubiquitous distribution and ecological determinism in microbial biogeography.Maureen A. O’Malley - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (3):314-325.
    Recent discoveries of geographical patterns in microbial distribution are undermining microbiology’s exclusively ecological explanations of biogeography and their fundamental assumption that ‘everything is everywhere: but the environment selects’. This statement was generally promulgated by Dutch microbiologist Martinus Wilhelm Beijerinck early in the twentieth century and specifically articulated in 1934 by his compatriot, Lourens G. M. Baas Becking. The persistence of this precept throughout twentieth-century microbiology raises a number of issues in relation to its formulation and widespread acceptance. This paper will (...)
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  46.  15
    Family Conversations About Heat and Temperature: Implications for Children’s Learning.Megan R. Luce & Maureen A. Callanan - 2020 - Frontiers in Psychology 11:538775.
    Some science educators claim that children enter science classrooms with a conception of heat considered by physicists to be incorrect and speculate that “misconceptions” may result from the way heat is talked about in everyday language (e.g., Lautrey and Mazens, 2004 ; Slotta and Chi, 2006 ). We investigated talk about heat in naturalistic conversation to explore the claim that children often hear heat discussed as a substance rather than as a process, potentially hindering later learning of heat as energy (...)
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  47. (1 other version)Metagenomics and biological ontology.with Maureen A. O'malley - 2011 - In John Dupré (ed.), Processes of Life: Essays in the Philosophy of Biology. Oxford, GB: Oxford University Press.
     
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  48. Thomas pradeu the limits of the self: Immunology and biological identity.Maureen A. O’Malley - 2014 - British Journal for the Philosophy of Science 65 (1):179-183.
  49.  68
    Microbiome causality: further reflections.Kate E. Lynch, Emily C. Parke & Maureen A. O’Malley - 2020 - Biology and Philosophy 35 (2):1-16.
  50.  40
    Histories of molecules: Reconciling the past.Maureen A. O'Malley - 2016 - Studies in History and Philosophy of Science Part A 55 (C):69-83.
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