Results for 'ocular microbiome'

330 found
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  1.  28
    Visions of Eye Commensals: The Known and the Unknown About How the Microbiome Affects Eye Disease.Anthony J. St Leger & Rachel R. Caspi - 2018 - Bioessays 40 (11):1800046.
    Until recently, the ocular surface is thought by many to be sterile and devoid of living microbes. It is now becoming clear that this may not be the case. Recent and sophisticated PCR analyses have shown that microbial DNA‐based “signatures” are present within various ethnic, geographic, and contact lens wearing communities. Furthermore, using a mouse model of ocular surface disease, we have shown that the microbe, Corynebacterium mastitidis (C. mast), can stably colonize the ocular mucosa and that (...)
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  2.  43
    Ocular dominance demonstrated by unconscious sighting.W. R. Miles - 1929 - Journal of Experimental Psychology 12 (2):113.
  3.  22
    Microbiome Structure and Function: A New Framework for Interpreting Data.Gregor P. Greslehner - 2020 - Bioessays 42 (7):1900255.
    A distinction between different notions of “structure” and “function” is suggested for interpreting the overwhelming amount of data on microbiome structure and function. Sequence data, biochemical agents, interaction networks, taxonomic communities, and their dynamics can be linked to potential or actual biochemical activities, causal roles, and selected effects, respectively. This conceptual clarification has important methodological consequences for how to interpret existing data and approach open questions in contemporary microbiome research practice. In particular, the field will have to start (...)
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  4.  25
    The Microbiome Mediates Environmental Effects on Aging.Brett B. Finlay, Sven Pettersson, Melissa K. Melby & Thomas C. G. Bosch - 2019 - Bioessays 41 (10):1800257.
    Humans’ indigenous microbes strongly influence organ functions in an age‐ and diet‐dependent manner, adding an important dimension to aging biology that remains poorly understood. Although age‐related differences in the gut microbiota composition correlate with age‐related loss of organ function and diseases, including inflammation and frailty, variation exists among the elderly, especially centenarians and people living in areas of extreme longevity. Studies using short‐lived as well as nonsenescent model organisms provide surprising functional insights into factors affecting aging and implicate attenuating effects (...)
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  5.  17
    Microbiome in Precision Psychiatry: An Overview of the Ethical Challenges Regarding Microbiome Big Data and Microbiome-Based Interventions.Eman Ahmed & Kristien Hens - 2022 - American Journal of Bioethics Neuroscience 13 (4):270-286.
    There has been a spurt in both fundamental and translational research that examines the underlying mechanisms of the human microbiome in psychiatric disorders. The personalized and dynamic features of the human microbiome suggest the potential of its manipulation for precision psychiatry in ways to improve mental health and avoid disease. However, findings in the field of microbiome also raise philosophical and ethical questions. From a philosophical point of view, they may yet be another attempt at providing a (...)
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  6.  25
    Ocular gene transfer in the spotlight: implications of newspaper content for clinical communications.Shelly Benjaminy & Tania Bubela - 2014 - BMC Medical Ethics 15 (1):58.
    Ocular gene transfer clinical trials are raising hopes for blindness treatments and attracting media attention. News media provide an accessible health information source for patients and the public, but are often criticized for overemphasizing benefits and underplaying risks of novel biomedical interventions. Overly optimistic portrayals of unproven interventions may influence public and patient expectations; the latter may cause patients to downplay risks and over-emphasize benefits, with implications for informed consent for clinical trials. We analyze the news media communications landscape (...)
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  7. Methodology and ontology in microbiome research.John Huss - 2014 - Biological Theory 9 (4):392-400.
    Research on the human microbiome has gen- erated a staggering amount of sequence data, revealing variation in microbial diversity at the community, species (or phylotype), and genomic levels. In order to make this complexity more manageable and easier to interpret, new units—the metagenome, core microbiome, and entero- type—have been introduced in the scientific literature. Here, I argue that analytical tools and exploratory statisti- cal methods, coupled with a translational imperative, are the primary drivers of this new ontology. By (...)
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  8.  19
    Microbiome‐Germline Interactions and Their Transgenerational Implications.Michael Elgart & Yoav Soen - 2018 - Bioessays 40 (4):1700018.
    It is becoming increasingly clear that most, if not all, animals and plants are associated with a diverse array of resident gut microbiota. This symbiosis is regulated by host-microbiome interactions which influence the development, homeostasis, adaptation and evolution of the host. Recent evidence indicated that these interactions can also affect the host germline and have a potential of supporting transgenerational effects, including inheritance of acquired characteristics. Taken together, the influence of gut bacteria on the host soma and germline could (...)
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  9.  19
    Methodology and Ontology in Microbiome Research.John Huss - 2014 - Biological Theory 9 (4):1-11.
    Research on the human microbiome has generated a staggering amount of sequence data, revealing variation in microbial diversity at the community, species (or phylotype), and genomic levels. In order to make this complexity more manageable and easier to interpret, new units—the metagenome, core microbiome, and enterotype—have been introduced in the scientific literature. Here, I argue that analytical tools and exploratory statistical methods, coupled with a translational imperative, are the primary drivers of this new ontology. By reducing the dimensionality (...)
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  10.  18
    Race in the Microbiome.Amber Benezra - 2020 - Science, Technology, and Human Values 45 (5):877-902.
    Microbiome science asserts humans are made up of more microbial cells and genes than human ones, and that each person harbors their own unique microbial population. Human microbiome studies gesture toward the post-racial aspirations of personalized medicine—characterizing states of human health and illness microbially. By viewing humans as “supraorganisms” made up of millions of microbial partners, some microbiome science seems to disrupt binding historical categories often grounded in racist biology, allowing interspeciality to supersede race. But inevitably, unexamined (...)
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  11.  9
    Scrutinizing microbiome determinism: why deterministic hypotheses about the microbiome are conceptually ungrounded.Javier Suárez - 2024 - History and Philosophy of the Life Sciences 46 (1):1-26.
    This paper addresses the topic of determinism in contemporary microbiome research. I distinguish two types of deterministic claims about the microbiome, and I show evidence that both types of claims are present in the contemporary literature. First, the idea that the host genetics determines the composition of the microbiome which I call “host-microbiome determinism”. Second, the idea that the genetics of the holobiont (the individual unit composed by a host plus its microbiome) determines the expression (...)
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  12.  12
    Do seasonal microbiome changes affect infection susceptibility, contributing to seasonal disease outbreaks?Adrian Stencel - 2021 - Bioessays 43 (1):2000148.
    The aim of the present paper is to explore whether seasonal outbreaks of infectious diseases may be linked to changes in host microbiomes. This is a very important issue, because one way to have more control over seasonal outbreaks is to understand the factors that underlie them. In this paper, I will evaluate the relevance of the microbiome as one of such factors. The paper is based on two pillars of reasoning. Firstly, on the idea that microbiomes play an (...)
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  13.  58
    Microbiomes: proportional causes in context.Nuhu Osman Attah, Marina DiMarco & Anya Plutynski - 2020 - Biology and Philosophy 35 (1):1-5.
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  14. How causal are microbiomes? A comparison with the H elicobacter pylori explanation of ulcers.Kate E. Lynch, Emily C. Parke & Maureen A. O’Malley - 2019 - Biology and Philosophy 34 (6):62.
    Human microbiome research makes causal connections between entire microbial communities and a wide array of traits that range from physiological diseases to psychological states. To evaluate these causal claims, we first examine a well-known single-microbe causal explanation: of Helicobacter pylori causing ulcers. This apparently straightforward causal explanation is not so simple, however. It does not achieve a key explanatory standard in microbiology, of Koch’s postulates, which rely on manipulations of single-microorganism cultures to infer causal relationships to disease. When Koch’s (...)
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  15.  14
    Ocular dominance and the range of visual apprehension.M. Keller - 1937 - Journal of Experimental Psychology 21 (5):545.
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  16.  26
    The Microbiome Function in a Host Organism: A Medical Puzzle or an Essential Ecological Environment?Tamar Schneider - 2024 - Biological Theory 19 (1):44-55.
    The dual role of microbial communities as either beneficial/functional or harmful/pathogenic involves two issues concerning causality in physiology and medicine, etiology of disease, and the notion of function in biology. Causal explanation formulated by the germ theory of disease and the Koch postulates connects the existence of a specifically identified microbe to disease by the isolation and identification of a pathogen from an organism with the disease and the successful infection of a healthy individual. Similarly, microbiome research in medicine (...)
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  17.  10
    Epistemic misalignments in microbiome research.Federico Boem & Javier Suárez - 2024 - Bioessays 46 (4):2300220.
    We argue that microbiome research should be more reflective on the methods that it relies on to build its datasets due to the danger of facing a methodological problem which we call “epistemic misalignment.” An epistemic misalignment occurs when the method used to answer specific scientific questions does not track justified answers, due to the material constraints imposed by the very method. For example, relying on 16S rRNA to answer questions about the function of the microbiome generates epistemic (...)
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  18.  51
    How causal are microbiomes? A comparison with the Helicobacter pylori explanation of ulcers.Kate E. Lynch, Emily C. Parke & Maureen A. O’Malley - 2019 - Biology and Philosophy 34 (6):62.
    Human microbiome research makes causal connections between entire microbial communities and a wide array of traits that range from physiological diseases to psychological states. To evaluate these causal claims, we first examine a well-known single-microbe causal explanation: of Helicobacter pylori causing ulcers. This apparently straightforward causal explanation is not so simple, however. It does not achieve a key explanatory standard in microbiology, of Koch’s postulates, which rely on manipulations of single-microorganism cultures to infer causal relationships to disease. When Koch’s (...)
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  19.  41
    How causal are microbiomes? A comparison with the Helicobacter pylori explanation of ulcers.Kate E. Lynch, Emily C. Parke & Maureen A. O’Malley - 2019 - Biology and Philosophy 34 (6):62.
    Human microbiome research makes causal connections between entire microbial communities and a wide array of traits that range from physiological diseases to psychological states. To evaluate these causal claims, we first examine a well-known single-microbe causal explanation: of Helicobacter pylori causing ulcers. This apparently straightforward causal explanation is not so simple, however. It does not achieve a key explanatory standard in microbiology, of Koch’s postulates, which rely on manipulations of single-microorganism cultures to infer causal relationships to disease. When Koch’s (...)
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  20.  14
    Ocular movements and the perception of time.J. P. Guilford - 1929 - Journal of Experimental Psychology 12 (4):259.
  21.  17
    Primary ocular nystagmus as a function of intensity and duration of acceleration.G. T. Hauty - 1953 - Journal of Experimental Psychology 46 (3):162.
  22.  14
    The microbiome biosphere as an artistic resource.Patrícia R. Moreira - 2019 - Technoetic Arts 17 (1):71-77.
    The microbiome has become one of the most recognizable research subjects and presences in the headlines of news and scientific articles published in almost every biological science area in the last few years. The steady decline in the price of DNA sequencing has enabled metagenomics, community analysis and genome sequencing to enter routine research in microbiology and biotechnology laboratories all around the world. The already open access to national and international databases that include nucleotide (including full genomes) and protein (...)
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  23.  10
    Ocular pursuit of objects which temporarily disappear.R. C. Travis & R. Dodge - 1930 - Journal of Experimental Psychology 13 (1):98.
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  24.  6
    Ocular dominance in young children.R. Updegraff - 1932 - Journal of Experimental Psychology 15 (6):758.
  25.  19
    Ocular pursuit in normal and psychopathological subjects.H. R. White - 1938 - Journal of Experimental Psychology 22 (1):17.
  26.  36
    Multidisciplinarity in Microbiome Research: A Challenge and Opportunity to Rethink Causation, Variability, and Scale.Katherine R. Amato, Corinne F. Maurice, Karen Guillemin & Tamara Giles-Vernick - 2019 - Bioessays 41 (10):1900007.
    This essay, written by a biologist, a microbial ecologist, a biological anthropologist, and an anthropologist‐historian, examines tensions and translations in microbiome research on animals in the laboratory and field. The authors trace how research questions and findings in the laboratory are extrapolated into the field and vice versa, and the shifting evidentiary standards that these research settings require. Showing how complexities of microbiomes challenge traditional standards of causation, the authors contend that these challenges require new approaches to inferences used (...)
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  27. How Research on Microbiomes is Changing Biology: A Discussion on the Concept of the Organism.Adrian Stencel & Agnieszka M. Proszewska - 2018 - Foundations of Science 23 (4):603-620.
    Multicellular organisms contain numerous symbiotic microorganisms, collectively called microbiomes. Recently, microbiomic research has shown that these microorganisms are responsible for the proper functioning of many of the systems of multicellular organisms. This has inclined some scholars to argue that it is about time to reconceptualise the organism and to develop a concept that would place the greatest emphasis on the vital role of microorganisms in the life of plants and animals. We believe that, unfortunately, there is a problem with this (...)
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  28.  47
    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 (...)
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  29.  49
    Microbiome causality: further reflections.Kate E. Lynch, Emily C. Parke & Maureen A. O’Malley - 2020 - Biology and Philosophy 35 (2):1-16.
  30.  11
    Autoimmunity and the microbiome: T‐cell receptor mimicry of “self” and microbial antigens mediates self tolerance in holobionts.Robert Root-Bernstein - 2016 - Bioessays 38 (11):1068-1083.
    I propose a T‐cell receptor (TcR)‐based mechanism by which immunity mediates both “genetic self” and “microbial self” thereby, connecting microbiome disease with autoimmunity. The hypothesis is based on simple principles. First, TcR are selected to avoid strong cross‐reactivity with “self,” resulting in selection for a TcR repertoire mimicking “genetic self.” Second, evolution has selected for a “microbial self” that mimics “genetic self” so as to share tolerance. In consequence, our TcR repertoire also mimics microbiome antigenicity, providing a novel (...)
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  31.  36
    Biobanking for human microbiome research: promise, risks, and ethics.Yonghui Ma, Hua Chen, Ruipeng Lei & Jianlin Ren - 2017 - Asian Bioethics Review 9 (4):311-324.
    With the advancement of human microbiome research, it is inevitable that a growing number of biobanks will include a collection of microbiota specimens to characterize the microbial communities that inhabit the human body and explore the relationships between the microbiota and their human hosts. Biobanks of human microbiota and their associated genetic information may become a valuable health resource. But, this area of research also presents ethical and social problems, some of which are distinct from those faced by biobanks (...)
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  32.  12
    Dynamic changes in ocular shape during human development and its implications for retina fovea formation.Ashley M. Rasys, Andrew Wegerski, Paul A. Trainor, Robert B. Hufnagel, Douglas B. Menke & James D. Lauderdale - 2024 - Bioessays 46 (1):2300054.
    The human fovea is known for its distinctive pit‐like appearance, which results from the displacement of retinal layers superficial to the photoreceptors cells. The photoreceptors are found at high density within the foveal region but not the surrounding retina. Efforts to elucidate the mechanisms responsible for these unique features have ruled out cell death as an explanation for pit formation and changes in cell proliferation as the cause of increased photoreceptor density. These findings have led to speculation that mechanical forces (...)
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  33.  15
    the human microbiome: ethical, legal and social concerns.Rosamond Rhodes, Nada Gligorov & Abraham Paul Schwab (eds.) - 2013 - Oxford university press.
    Human microbiome research has revealed that legions of bacteria, viruses, and fungi live on our skin and within the cavities of our bodies. New knowledge from these recent studies shows that humans are superorganisms and that the microbiome is indispensible to our lives and our health. This volume explores some of the science on the human microbiome and considers the ethical, legal, and social concerns that are raised by this research.
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  34.  26
    Environmentality in biomedicine: microbiome research and the perspectival body.Joana Formosinho, Adam Bencard & Louise Whiteley - 2022 - Studies in History and Philosophy of Science Part A 91 (C):148-158.
    Microbiome research shows that human health is foundationally intertwined with the ecology of microbial communities living on and in our bodies. This challenges the categorical separation of organisms from environments that has been central to biomedicine, and questions the boundaries between them. Biomedicine is left with an empirical problem: how to understand causal pathways between host health, microbiota and environment? We propose a conceptual tool – environmentality – to think through this problem. Environmentality is the state or quality of (...)
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  35.  21
    Ocular motility and cognitive process.Susan L. Weiner & Howard Ehrlichman - 1976 - Cognition 4 (1):31-43.
  36.  4
    Arguments for ‘ocular donation’ as standardised terminology to reduce the ‘ick factor’ of ‘eye donation’.Katrina A. Bramstedt - 2022 - Journal of Medical Ethics 48 (11):935-936.
    This brief report presents the global problem of the shortfall of donor corneal tissue for transplantation, a potential root cause (‘ick factor’ language), and a potential solution (modification of ‘ick factor’ language). Specifically, use of the term ‘eye donation’ is a potential hurdle to ocular tissue donation as it can stimulate the ‘ick factor.’ Verbiage such as ‘ocular (eye tissue)’ could be a method of providing terminology that is less emotive than ‘eye donor’ or ‘eye donation.’ The field (...)
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  37.  5
    On ocular nystagmus and the localization of sensory data during dizziness.Edwin B. Holt - 1909 - Psychological Review 16 (6):377-398.
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  38.  19
    Ocular disengagement inhibited by target onset in periphery?Wa James Tam - 1999 - Behavioral and Brain Sciences 22 (4):698-698.
    The postulate that events in peripheral vision enhance activity in the “fixate center” is called into question. An alternative explanation is used to account for the “remote distractor effect.” It is pointed out that a critical element of the model is missing.
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  39.  16
    Adapting with Microbial Help: Microbiome Flexibility Facilitates Rapid Responses to Environmental Change.Christian R. Voolstra & Maren Ziegler - 2020 - Bioessays 42 (7):2000004.
    Animals and plants are metaorganisms and associate with microbes that affect their physiology, stress tolerance, and fitness. Here the hypothesis that alteration of the microbiome may constitute a fast‐response mechanism to environmental change is examined. This is supported by recent reciprocal transplant experiments with reef corals, which have shown that their microbiome adapts to thermally variable habitats and changes over time when transplanted into different environments. Further, inoculation of corals with beneficial bacteria increases their stress tolerance. But corals (...)
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  40.  21
    Somatic multiplicities: The microbiome-gut-brain axis and the neurobiologized educational subject.James Reveley - 2024 - Educational Philosophy and Theory 56 (1):52-62.
    Therapeutic translations of the microbiome-gut-brain (MGB) axis are reconstructing the educational subject in a manner amenable to Foucauldian analysis. Yet, at the same time, under the sway of MGB research social scientists are taking a biosocial turn that threatens the integrity of Foucault’s historicizing philosophical project. Meeting that challenge head-on, this article argues that the MGB axis augments the neurobiological constitution of the educational subject by means of a dietetic mode of subjectivation. Absent a pedagogical element, there is a (...)
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  41.  33
    The Gut Microbiome and the Imperative of Normalcy.Jane Dryden - 2023 - International Journal of Feminist Approaches to Bioethics 16 (1):131-162.
    Healthism and ableism intertwine through an imperative of normalcy and the ensuing devaluing of those who fail to meet societally dominant norms and expectations around “normal” health. This paper tracks the effect of that imperative of normalcy through current research into gut microbiome therapies, using therapies targeting fatness and autism as examples. The complexity of the gut microbiome ought to encourage us to rethink our conception of ourselves and our embeddedness in the world; instead, the microbiome is (...)
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  42.  8
    Microbiome Flexibility Provides New Perspectives in Coral Research.Helena Villela - 2020 - Bioessays 42 (7):2000088.
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  43. The Human Microbiome: Ethical, Legal, and Social Concerns.Abraham Schwab, Rosamond Rhodes & Nada Nada - unknown
    The human microbiome is the bacteria, viruses, and fungi that cover our skin, line our intestines, and flourish in our body cavities. Work on the human microbiome is new, but it is quickly becoming a leading area of biomedical research. What scientists are learning about humans and our microbiomes could change medical practice by introducing new treatment modalities. This new knowledge redefines us as superorganisms comprised of the human body and the collection of microbes that inhabit it and (...)
     
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  44.  13
    Anterior eye development and ocular mesenchyme: new insights from mouse models and human diseases.Aleš Cvekl & Ernst R. Tamm - 2004 - Bioessays 26 (4):374-386.
    During development of the anterior eye segment, cells that originate from the surface epithelium or the neuroepithelium need to interact with mesenchymal cells, which predominantly originate from the neural crest. Failures of proper interaction result in a complex of developmental disorders such Peters' anomaly, Axenfeld–Rieger's syndrome or aniridia. Here we review the role of transcription factors that have been identified to be involved in the coordination of anterior eye development. Among these factors is PAX6, which is active in both epithelial (...)
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  45.  13
    The Visionary Academy of Ocular Mentality: Atlas of the Iconic Turn.Luca Del Baldo - 2020 - De Gruyter.
    Luca Del Baldo's Visionary Academy of Ocular Mentality is an extraordinary testament in the recent history of visual studies. It brings together a group of outstanding scholars who have devoted their lives to art history, philosophy, history, ethnology, focussing predominantly on questions of human perception and imagination. Working from photographs provided by the scholars, Luca del Baldo painted his series of 96 portraits reproduced in this book. The portraits are accompanied by texts written by the persons portrayed, in response (...)
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  46.  12
    The parent-offspring microbiome and neurobehavioral development.Jeffrey R. Alberts, Christopher Harshaw, Gregory E. Demas, Cara L. Wellman & Ardythe L. Morrow - 2019 - Behavioral and Brain Sciences 42.
    We identify the significance and typical requirements of developmental analyses of the microbiome-gut-brain in parents, offspring, and parent-offspring relations, which have particular importance for neurobehavioral outcomes in mammalian species, including humans. We call for a focus on behavioral measures of social-emotional function. Methodological approaches to interpreting relations between the microbiota and behavior are discussed.
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  47.  50
    Pathogen versus microbiome causation in the holobiont.Aja Watkins & Federica Bocchi - 2020 - Biology and Philosophy 35 (1):1-6.
    In their paper “How Causal are Microbiomes? A Comparison with the Helicobacter pylori Explanation of Ulcers,” Lynch, Parke, and O’Malley successfully argue that certain causal attributions made to the microbiome have not satisfied Koch’s postulates nor the interventionist framework. However, their argument involves an implicit assumption that cases such as H. pylori are sufficiently similar to cases involving the microbiome, such that causal attributions to both should be evaluated according to the same causal framework. Our commentary targets this (...)
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  48.  34
    Have Causal Claims About the Gut Microbiome Been Over‐Hyped?Pierrick Bourrat - 2018 - Bioessays 40 (12):1800178.
    Graphical AbstractMicrobiome research attributes to whole microbiomes a causal role in the occurrence of different health outcomes. I argue, following some distinctions about causal relationships and explanations made within a philosophical account of causation, the “interventionist account,” that such claims need more scrutiny.
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  49.  36
    The Placental Microbiome: A New Site for Policing Women's Bodies.Saray Ayala & Lauren Freeman - 2016 - International Journal of Feminist Approaches to Bioethics 9 (1):121-148.
    This paper brings feminist public health ethics and feminist analytic tools to bear on mainstream medical research. Specifically, it uses these approaches to call attention to several problems associated with “The Placenta Harbors a Unique Microbiome,” a recent study published in Science Translational Medicine. We point out the potential negative consequences these problems have for both women’s health and their autonomy.Our paper has two parts. We begin by discussing the study, which examines the composition of the placental microbiome, (...)
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  50. Lo que los movimientos oculares nos cuentan sobre la coactivación de idiomas en bilingües.Ciencia Cognitiva - forthcoming - Ciencia Cognitiva.
    Luis Morales Dept. de Psicología y Sociología, Universidad de Zaragoza, España Los movimientos oculares nos informan acerca del procesamiento lingüístico. … Read More →.
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