Results for 'Tissue culture'

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  1.  23
    Tissue Culture and Tissue Culture Technologies at the Rockefeller Institute for Medical Research: Roots of Regenerative Medicine, 1910–1950. [REVIEW]Darwin H. Stapleton - 2009 - Medicine Studies 1 (1):77-81.
    Alexis Carrel’s and Keith Porter’s accomplishments at the Rockefeller Institute for Medical Research, 1910–1950, were fundamental to the creation of the field of tissue culture.
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  2.  19
    Tissue Culture in Science and Society: The Public Life of a Biological Technique in Twentieth Century Britain - by Duncan Wilson.Ayesha Nathoo - 2012 - Centaurus 54 (3):259-261.
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  3.  14
    What have tissue culture studies told us about the development of oligodendrocytes?Brenda P. Williams & Jack Price - 1992 - Bioessays 14 (10):693-698.
    One major success of studying neural cell development in tissue culture has been the discovery of the O‐2A cell. This bipotential cell generates oligodendrocytes or, under certain conditions, a type of astrocyte. This essay considers the evidence that the characteristic properties demonstrated by the O‐2A cells in vitro are an accurate reflection of oligodendrocyte development in vivo.
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  4.  6
    Tissue Culture in Science and Society: The Public Life of a Biological Technique in Twentieth Century Britain. [REVIEW]Karin Tybjerg & Adam Bencard - 2013 - Isis 104:187-188.
  5.  28
    A Troubled Past? Reassessing Ethics in the History of Tissue Culture.Duncan Wilson - 2016 - Health Care Analysis 24 (3):246-259.
    Recent books, articles and plays about the ‘immortal’ HeLa cell line have prompted renewed interest in the history of tissue culture methods that were first employed in 1907 and became common experimental tools during the twentieth century. Many of these sources claim tissue cultures like HeLa had a “troubled past” because medical researchers did not seek informed consent before using tissues in research, contravening a long held desire for self-determination on the part of patients and the public. (...)
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  6.  23
    Between Simians and Cell Lines: Rhesus Monkeys, Polio Research, and the Geopolitics of Tissue Culture.Tara Suri - 2022 - Journal of the History of Biology 55 (1):115-146.
    This essay argues that the racialized geopolitics of the rhesus monkey trade conditioned the trajectory of tissue culture in polio research. Rhesus monkeys from north India were important experimental organisms in the American “war against polio” between the 1930s and 1950s. During this period, the National Foundation for Infantile Paralysis expended considerable effort to secure the nonhuman primate for researchers’ changing experimental agendas. The NFIP drew on transnational networks to export hundreds of thousands of rhesus monkeys from colonial (...)
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  7.  9
    The contestations of diversity, culture and commercialization: why tissue culture technology alone cannot solve the banana Xanthomonas wilt problem in central Uganda.Lucy Mulugo, Paul Kibwika, Florence Birungi Kyazze, Aman Omondi Bonaventure & Enoch Kikulwe - 2022 - Agriculture and Human Values 39 (3):1141-1158.
    Several initiatives by the Government of Uganda, Research Institutes and CGIAR centers have promoted the use of tissue culture banana technology as an effective means of providing clean planting material to reduce the spread of Banana Xanthomonas wilt but its uptake is still low. We examine factors that constrain uptake of tissue culture banana planting materials in central Uganda by considering the cultural context of banana cultivation. Data were collected using eight focus group discussions involving 64 (...)
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  8.  26
    Constructing Failure: Leonard Hayflick, Biomedicine, and the Problems with Tissue Culture.Hyung Wook Park - 2016 - Annals of Science 73 (3):303-327.
    SUMMARYBy examining the use of tissue culture in post-war American biomedicine, this paper investigates how scientists experience and manage failure. I study how Leonard Hayflick forged his new definition of failure and ways of managing it by refuting Alexis Carrel's definition of failure alongside his theory of the immortality of cultured cells. Unlike Carrel, Hayflick claimed that every vertebrate somatic cell should eventually die, unless it transformed into a tumour cell. This claim defined cell death, which had been (...)
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  9.  19
    Duncan Wilson. Tissue Culture in Science and Society: The Public Life of a Biological Technique in Twentieth Century Britain. x + 183 pp., illus., bibl., index. New York: Palgrave Macmillan, 2011. $80. [REVIEW]Karin Tybjerg & Adam Bencard - 2013 - Isis 104 (1):187-188.
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  10.  25
    Duncan Wilson, Tissue Culture in Science and Society: The Public Life of a Biological Technique in Twentieth Century Britain. Basingstoke: Palgrave Macmillan, 2011. Pp. x+182. ISBN 978-0-230-28427-2. £50.00. [REVIEW]Dmitriy Myelnikov - 2012 - British Journal for the History of Science 45 (3):475-476.
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  11.  17
    The indigenous African cultural value of human tissues and implications for bio‐banking.David Nderitu & Claudia Emerson - 2023 - Developing World Bioethics 24 (2):66-73.
    Bio‐banking in research elicits numerous ethical issues related to informed consent, privacy and identifiability of samples, return of results, incidental findings, international data exchange, ownership of samples, and benefit sharing etc. In low and middle income (LMICs) countries the challenge of inadequate guidelines and regulations on the proper conduct of research compounds the ethical issues. In addition, failure to pay attention to underlying indigenous worldviews that ought to inform issues, practices and policies in Africa may exacerbate the situation. In this (...)
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  12.  11
    From Entomological Research to Culturing Tissues: Aron Moscona’s Investigative Pathway.Alessandra Passariello - 2021 - Journal of the History of Biology 54 (4):555-601.
    Aron Arthur Moscona was an Israeli-American developmental biologist whose name is associated with research on cell interactions during embryonic development. His appearance on the international scene dates back to a paper published in 1952, while he was working, together with his wife Haya Sobel Moscona, at the Strangeways Research Laboratory of Cambridge. Together they demonstrated that cells from previously dissociated chick tissues undergo histiotypical and organotypical aggregation in vitro. From 1952 to 1997, Moscona focused his research on cell recognition mechanisms, (...)
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  13.  4
    Microperformativity: Performance with Tissue-Engineered Cell Culture.Polona Tratnik - 2023 - In María Antonia González Valerio & Polona Tratnik (eds.), Through the Scope of Life: Art and (Bio)Technologies Philosophically Revisited. Springer Verlag. pp. 55113-68125.
    Within the biotech era, art that addresses life issues and brings biological life into the artistic context cannot avoid using biotechnology as the technology that facilitates interventions into living matter. Art not only intervenes in the living matter in laboratories but aims to show and cultivate tissues and various living cultures in the gallery space. Galleries have turned from spaces for showing artifacts into event spaces, performances and workshops. In this context, the idea of growing living entities within the artistic (...)
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  14. Fetal Tissue Research.Mary Carrington Coutts - 1993 - Kennedy Institute of Ethics Journal 3 (1):81-101.
    In lieu of an abstract, here is a brief excerpt of the content:Fetal Tissue ResearchMary Carrington Coutts (bio)I. IntroductionThe use of tissue from fetal remains for transplantation and biomedical research has become a controversial issue in recent years, involving scientists, doctors, patients, and the federal government. Fetal tissue is potentially useful in a wide range of treatments for a number of serious diseases, some of them affecting millions of people. Despite the promise, transplantation research using fetal (...) from induced abortion slowed dramatically in the U.S. in 1988, when a moratorium was declared on federal funding for such research involving humans. That moratorium was lifted by President Clinton on January 21, 1993. Though the future of fetal tissue transplantation research is brighter, public debate on the issue is likely to continue, exacerbated by the "acrimonious abortion debate" (VI, Post 1991, p. 14).Using fetal tissue in biomedical research and in transplantation is not a new practice. As early as 1928 unsuccessful attempts were made to transplant fetal pancreas cells into diabetics (VII, Fichera 1928). Fetal tissue was used effectively in biomedical research during the 1950s, and was instrumental in the culture of the polio virus, which led to the development of the polio vaccine. Fetal tissue cultures were also essential in the development of the rubella vaccine, and continue to be used in virology research. Transplantation of fetal thymus cells into patients with DiGeorge Syndrome has been recognized as effective therapy since the late 1960s.Many of the therapeutic applications involving fetal tissue are still experimental, so it is difficult to pinpoint fetal tissue transplantation's therapeutic potential. One promising application is the transplantation of human fetal brain cells into the substantia nigra of patients with Parkinson's disease to restore motor function. Fetal neural transplants have also shown promise for patients suffering from Alzheimer's disease, spinal cord and other neural tissue injuries, and possibly some forms of cortical blindness. Fetal liver cells may be useful for treatment of some kinds of bone marrow disease seen in leukemia and aplastic anemia patients. [End Page 81] Fetal tissue transplantation may also help those suffering from blood clotting disorders, such as sickle cell anemia, thalassemia, and hemophilia. Fetal pancreatic tissue has potential applications in the treatment of diabetes, especially juvenile onset diabetes. Human gene therapy may also employ embryonic and early fetal cells.The Center for Biomedical Ethics at the University of Minnesota reports that more than 1,000 patients have received transplanted fetal tissue worldwide. Countries where fetal tissue transplantation has occurred include: Australia, Canada, China, the Commonwealth of Independent States (formerly the U.S.S.R.), Cuba, Czechoslovakia, Finland, France, Germany, Great Britain, Hungary, India, Italy, Mexico, Norway, Spain, Sweden, and Yugoslavia (IV, Vawter 1992, p. 2; I, Spain 1988; VII, Reinikainen 1989).Fetal tissue has unique characteristics that make it especially valuable in some treatments. Fetal cells develop much faster than adult cells, hastening the therapeutic effect—a potentially significant benefit for gravely ill patients. They are also less likely to be rejected by transplant recipients because they are less antigenic than adult cells. This reduces the need for the exact tissue matches that can be so difficult to obtain. Fetal tissue is also easier to culture and proliferates more readily than comparable adult tissue. Furthermore, fetal tissue is in greater supply, due to the number of elective abortions.Questions about the use of fetuses and fetal tissue in biomedical research were raised in the United States in the early 1970s. Between 1969 and 1973, all 50 states enacted the Uniform Anatomical Gift Act, allowing for the donation of all or part of the body of a dead fetus for research or therapeutic research. Prospects for the use of fetal tissue increased after the Supreme Court decision in Roe v. Wade legalized abortion. As the availability of fetal tissue increased so did the concern over the potential for controversial research on living, soon-to-be-aborted fetuses, and anxiety over maltreatment of dead abortuses. Vivid examples include Geoffrey Chamberlain's 1968 report of an experiment on a fetus of 26 weeks gestational age. Delivered by hysterotomy from a 14-year-old patient, the fetus was attached to an "artificial placenta" and kept alive for more than... (shrink)
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  15.  21
    Jurisgenerative Tissues: Sociotechnical Imaginaries and the Legal Secretions of 3D Bioprinting.Joshua D. M. Shaw & Roxanne Mykitiuk - 2023 - Law and Critique 34 (1):105-125.
    Three-dimensional ‘bioprinting’ is under development, which may produce living human organs and tissues to be surgically implanted in patients. Like tissue engineering and regenerative medicine generally, the process of bioprinting potentially disrupts experience of the human body by redefining understandings of, and becoming actualised in new practices and regimes in relation to, the body. The authors consider how these novel sociotechnical imaginaries may emerge, having regard to law’s contribution to, as well as its possible transformation by, the process of (...)
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  16.  37
    Human Tissue and Global Ethics.Donna Dickenson - 2005 - Genomics, Society and Policy 1 (1):1-13.
    One important sense of 'global ethics' concerns the applied ethical issues arising in the context of economic globalisation. This article contends that we are beginning to witness the economic commodification and, concomitantly, the globalisation, of human tissue and the human genome. Policy-makers and local research ethics committees need to be aware that the relevant ethical questions are no longer confined to their old national or subnational context. A shift from questions of personal autonomy and identity can therefore be expected-towards (...)
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  17.  61
    The use of human tissue.Grant Gillett - 2007 - Journal of Bioethical Inquiry 4 (2):119-127.
    The use of human tissue raises ethical issues of great concern to health care professionals, biomedical researchers, ethics committees, tissue banks and policy makers because of the heightened importance given to informed consent and patient autonomy. The debate has been intensified by high profile scandals such as the “baby hearts” debacle and revelations about the retention of human brains in neuropathology laboratories worldwide. Respect for patient’s rights seems, however, to impede research and development of clinical knowledge in contemporary (...)
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  18.  15
    What keeps cells in tissues behaving normally in the face of myriad mutations?Harry Rubin - 2006 - Bioessays 28 (5):515-524.
    The use of a reporter gene in transgenic mice indicates that there are many local mutations and large genomic rearrangements per somatic cell that accumulate with age at different rates per organ and without visible effects. Dissociation of the cells for monolayer culture brings out great heterogeneity of size and loss of function among cells that presumably reflect genetic and epigenetic differences among the cells, but are masked in organized tissue. The regulatory power of a mass of contiguous (...)
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  19.  89
    The privacy of tutankhamen – utilising the genetic information in stored tissue Samples.Søren Holm - 2001 - Theoretical Medicine and Bioethics 22 (5):437-449.
    Recent technical developments in genetictesting has led to a situation where the DNA inpreviously stored tissue samples can beextracted and used for genetic analysis. Thisraises the question of how to decide whether aspecific use of such samples should be allowed.Using the genetic testing of ancient DNA ingeneral, and the DNA of the pharaoh Tutankhamenin particular as examples this paper analysesthe question. It investigates whether ethicalframeworks based on proxy consent, culturalaffiliation, ownership, or the privacy rightsof the dead are appropriate and (...)
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  20. Homo Economicus Commercialization of Body Tissue in the Age of Biotechnology.Dorothy Nelkin & Lori Andrews - 1998 - Hastings Center Report 28 (5):30-39.
    The human body is becoming hot property, a resource to be “mined,” “harvested,” patented, and traded commercially for profit as well as scientific and therapeutic advances. Under the new entrepreneurial approach to the body old tensions take on new dimensions—about consent, the fair distribution of tissues and products developed from them, the individual and cultural values represented by the body, and public policy governing the use of organs and tissues.
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  21.  25
    Cultural Challenges to Biotechnology: Native American Genetic Resources and the Concept of Cultural Harm.Rebecca Tsosie - 2007 - Journal of Law, Medicine and Ethics 35 (3):396-411.
    Our society currently faces many complex and perplexing issues related to biotechnology, including the need to define the outer boundaries of genetic research on human beings and the need to protect individual and group rights to human tissue and the knowledge gained from the study of that tissue. Scientists have increasingly become interested in studying so-called “population isolates” to discover the nature and location of genes that are unique to particular groups. Indigenous peoples are often targeted by scientists (...)
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  22.  33
    Altruism in terminal cancer patients and rapid tissue donation program: does the theory apply? [REVIEW]Gwendolyn P. Quinn, Devin Murphy, Christie Pratt, Teresita Muñoz-Antonia, Lucy Guerra, Matthew B. Schabath, Marino E. Leon & Eric Haura - 2013 - Medicine, Health Care and Philosophy 16 (4):857-864.
    Rapid tissue donation (RTD) is an advancing oncology research procedure for collecting tumors, metastases, and unaffected tissue 2–6 h after death. Researchers can better determine rates of progression, response to treatment, and polymorphic differences among patients. Cancer patients may inquire about posthumous body donation for research to offer a personal contribution to research; however, there are barriers to recruiting for an RTD program. Physicians must reassure the patient that their treatment options and quality of care will not be (...)
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  23. Cultural Trauma: The Other Face of Social Change.Piotr Sztompka - 2000 - European Journal of Social Theory 3 (4):449-466.
    There is a current effort to borrow the concept of trauma from medicine and psychiatry and to introduce it into sociological theory. The author explicates the notion of cultural trauma as applicable to the theory of social change. He defines cultural trauma as the culturally defined and interpreted shock to the cultural tissue of a society, and presents a model of the traumatic sequence, describing typical conditions under which cultural trauma emerges and evolves. Drawing on the work of Robert (...)
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  24.  71
    Culturing Cells, Reproducing and Regulating the Self.Julie Kent, Alex Faulkner, Ingrid Geesink & David Fitzpatrick - 2006 - Body and Society 12 (2):1-23.
    The emergence of a new tissue economy raises issues for the governance of risk and concepts of the body and self. This article explores the development of autologous cell therapies as a form of tissue engineering and considers how and why autologous applications are seen as less risky and more socially and politically acceptable. In a careful analysis of contemporary debates around the need for new international policies to regulate these technologies, we critically assess the discursive strategies employed (...)
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  25.  95
    Better governance starts with better words: why responsible human tissue research demands a change of language.Annelien L. Bredenoord, Sarah N. Boers, Karin R. Jongsma & Michael A. Lensink - 2022 - BMC Medical Ethics 23 (1):1-10.
    The rise of precision medicine has led to an unprecedented focus on human biological material in biomedical research. In addition, rapid advances in stem cell technology, regenerative medicine and synthetic biology are leading to more complex human tissue structures and new applications with tremendous potential for medicine. While promising, these developments also raise several ethical and practical challenges which have been the subject of extensive academic debate. These debates have led to increasing calls for longitudinal governance arrangements between (...) providers and biobanks that go beyond the initial moment of obtaining consent, such as closer involvement of tissue providers in what happens to their tissue, and more active participatory approaches to the governance of biobanks. However, in spite of these calls, such measures are being adopted slowly in practice, and there remains a strong tendency to focus on the consent procedure as the tool for addressing the ethical challenges of contemporary biobanking. In this paper, we argue that one of the barriers to this transition is the dominant language pervading the field of human tissue research, in which the provision of tissue is phrased as a ‘donation’ or ‘gift’, and tissue providers are referred to as ‘donors’. Because of the performative qualities of language, the effect of using ‘donation’ and ‘donor’ shapes a professional culture in which biobank participants are perceived as passive providers of tissue free from further considerations or entitlements. This hampers the kind of participatory approaches to governance that are deemed necessary to adequately address the ethical challenges currently faced in human tissue research. Rather than reinforcing this idea through language, we need to pave the way for the kind of participatory approaches to governance that are being extensively argued for by starting with the appropriate terminology. (shrink)
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  26.  35
    Cultural Challenges to Biotechnology: Native American Genetic Resources and the Concept of Cultural Harm.Rebecca Tsosie - 2007 - Journal of Law, Medicine and Ethics 35 (3):396-411.
    This article examines the intercultural context of issues related to genetic research on Native peoples. In particular, the article probes the disconnect between Western and indigenous concepts of property, ownership, and privacy, and examines the harms to Native peoples that may arise from unauthorized uses of blood and tissue samples or the information derived from such samples. The article concludes that existing legal and ethical frameworks are inadequate to address Native peoples' rights to their genetic resources and suggests an (...)
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  27.  16
    Consent requirements for research with human tissue: Swiss ethics committee members disagree.Flora Colledge, Sophie De Massougnes & Bernice Elger - 2018 - BMC Medical Ethics 19 (1):93.
    In Switzerland, research with identifiable human tissue samples, and/or its accompanying data, must be approved by a research ethics committee before it can be allowed to take place. However, as the demand for such tissue has rapidly increased in recent years, and biobanks have been created to meet these needs, committees have had to deal with a growing number of such demands. Detailed instructions for evaluating every kind of tissue request are scarce. Committees charged with evaluating research (...)
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  28.  6
    From Cultured Chats to the Chirrups of Choo-Choo-Da-Choos, or How We Found a Key to the Gate of Eden.Evangelina Uskoković, Theo Uskoković, Victoria Wu & Vuk Uskoković - 2023 - Avant: Trends in Interdisciplinary Studies 14 (3).
    Reinvention of the form of expression is a conceptual approach characteristic for the evolution of all arts. This research study provides one such step forward in the advancement of scientific paper, a standard form of expression in natural sciences, toward more progressive terrains. The paper adopts the form of a theatrical play where a scientific family of four attempts to find the way around a writer’s block (Act I). Their idealess sense of confinement is overcome through arts or, more specifically, (...)
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  29.  4
    Culture of death: the age of "do harm" medicine.Wesley J. Smith - 2016 - New York: Encounter Books.
    Harsh medicine -- Life unworthy of life -- The price of autonomy -- Creating a duty to die -- Organ donors or organ farms? -- Putting second things first -- Two legs good, four legs better.
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  30.  19
    Switching between Science and Culture in Transpecies Transplantation.Mike Michael & Nik Brown - 2001 - Science, Technology, and Human Values 26 (1):3-22.
    This article discusses xenotransplantation and examines the way its scientific promoters have defended their technology against potentially damaging public representations. The authors explore the criteria used to legitimate the selection of the pig as the best species from which to “harvest” transplant tissues in the future. The authors’ analysis shows that scientists and medical practitioners routinely switch between scientific and cultural repertoires. These repertoires enable such actors to exchange expert identities in scientific discourse for public identities in cultural discourse. These (...)
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  31.  26
    Isolation, Contamination, and Pure Culture: Monomorphism and Polymorphism of Pathogenic Micro-Organisms as Research Problem 1860–1880.Christoph Gradmann - 2001 - Perspectives on Science 9 (2):147-172.
    : This article analyzes German debates on the microbiology of infectious diseases from 1865 to 1875 and asks how and when organic pollution in tissues became noteworthy for aetiology and pathogenesis. It was with Ernst Hallier's pleomorphistic microbiology that the organic character of alien material in tissues came to be regarded as important for pathology. The process that followed saw both vigorous biological critique and a number of medical applications of Hallier's work. Around 1874 contemporaries reached the conclusion that pleomorphous (...)
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  32. Some Mechanical Properties of Collagenous Frameworks and Their Functional Significance.Structure of Connective Tissue - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship.
     
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  33. TITLE: Simmons Cancer Institute at Southern Illinois University School of Medicine Tissue Bank Protocol.Tissue Bank Director, Kathy Robinson, James Malone, Randolph Elble, John Godwin & I. N. D. Number - 2008 - IRB: Ethics & Human Research 3:12-10.
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  34.  39
    New times for biology: Nerve cultures and the advent of cellular life in vitro.H. Landecker - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (4):667-694.
    This article is about the beginnings of tissue culture-the culture of living, reproducing cells of complex organisms outside the body. It argues that Ross Harrison's experiments in nerve culture between 1907 and 1910 should be viewed as part of a larger shift in early twentieth-century laboratory practice from in vivo to in vitro experimentation. Via a focus on the temporality of experiment-contrasting the live object of Harrison's investigation with the static object of histological representations-this article details (...)
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  35.  16
    ‘Skin Portraiture’ in the Age of Bio Art: Bodily Boundaries, Technology and Difference in Contemporary Visual Culture.Heidi Kellett - 2018 - Body and Society 24 (1-2):137-165.
    In this article, I consider ‘skin portraiture’: a mode of representation that privileges quasi-anonymous, fragmented, magnified and anatomized images of skin. I argue that this mode of representation permits a heightened awareness of embodied experiences such as reflexivity, empathy and relationality. Expanding understandings of difference through its engagement with haptic imagery and visuality, skin portraiture reorients the boundaries between ‘I’/‘not I’ and subject/object – often through touch – and challenges the cultural commitment to traditional notions of bodily autonomy. By doing (...)
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  36.  13
    Transforming trash to treasure Cultural ambiguity in foetal cell research.Kristofer Hansson, Håkan Widner, Åsa Mäkitalo, Susanne Lundin & Andréa Wiszmeg - 2021 - Philosophy, Ethics, and Humanities in Medicine 16 (1):1-12.
    BackgroundRich in different kind of potent cells, embryos are used in modern regenerative medicine and research. Neurobiologists today are pushing the boundaries for what can be done with embryos existing in the transitory margins of medicine. Therefore, there is a growing need to develop conceptual frameworks for interpreting the transformative cultural, biological and technical processes involving these aborted, donated and marginal embryos. This article is a contribution to this development of frameworks.MethodsThis article examines different emotional, cognitive and discursive strategies used (...)
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  37.  34
    Academic and molecular matrices: A study of the transformations of connective tissue research at the University of Manchester (1947–1996). [REVIEW]Miguel García-Sancho - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):233-245.
    This paper explores the different identities adopted by connective tissue research at the University of Manchester during the second half of the 20th century. By looking at the long-term redefinition of a research programme, it sheds new light on the interactions between different and conflicting levels in the study of biomedicine, such as the local and the global, or the medical and the biological. It also addresses the gap in the literature between the first biomedical complexes after World War (...)
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  38.  23
    Vienna–Chicago: The cultural transformation of the model system of the un‐opposed molar.Xianghong Luan & Thomas G. H. Diekwisch - 2007 - Bioessays 29 (8):819-830.
    The discussion over the roles of genes and environment on the phenotypical specification of organisms has held a central role in science philosophy since the late 19th century and has re‐emerged in today's debate over genetic determinism and developmental plasticity. In fin‐de‐siecle Vienna, this debate coincided with a philosophical debate over empiricism/materialism versus idealism/vitalism. Turn‐of‐the‐century Vienna's highly interdisciplinary environment was also the birthplace for the model system of the un‐opposed molar. The un‐opposed molar system features new tissue formation at (...)
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  39.  8
    2 5 Ethics, Public Policy.Human Fetal Tissue - forthcoming - Bioethics: Basic Writings on the Key Ethical Questions That Surround the Major, Modern Biological Possibilities and Problems.
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  40.  16
    Organ Donation in Aotearoa/new Zealand: Cultural Phenomenology and Moral Humility.Rhonda Shaw - 2010 - Body and Society 16 (3):127-147.
    In Aotearoa/new Zealand, organ donation and transplantation rates for Māori and non-Māori differ. This article outlines why this is so, and why some groups may be reticent about or object to organ donation and transplantation. In order to do this, I draw on the conceptual and methodological lens of phenomenology and apply what Van Manen calls the existential themes of lived body (corporeality), lived space (spatiality), lived time (temporality) and lived other (relationality and communality) to a discussion of the cultural (...)
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  41.  25
    What drives bio-art in the twenty-first century? Sources of innovations and cultural implications in bio-art/biodesign and biotechnology.Alexander N. Melkozernov & Vibeke Sorensen - 2021 - AI and Society 36 (4):1313-1321.
    Bio-art epitomizes a coalescence of art and sciences. It is an emerging contemporary artistic practice that uses a wide range of traditional artistic media interwoven with new artistic media that are biological in nature. This includes molecules, genes, cells, tissues, organs, living organisms, ecological niches, landscapes and ecosystems. In addition, bio-art expands into conceptual art using biological processes such as growth, cell division, photosynthesis and concepts of the origin of life and evolution, explaining them as new artistic media. In this (...)
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  42.  12
    Metaphor of the labyrinth in the musical culture of the second half of the XX century: ballet "Labyrinths" by A. Schnittke.Daria Igorevna Kalashnikova - 2022 - Философия И Культура 5:38-45.
    The metaphor of the labyrinth in the second half of the XX century becomes an iconic model of the postmodern world order. In musical culture, the phenomenon of the labyrinth has acquired the meaning of a symbol of intertextuality, a game with cultural codes and musical heritage of the past, multivariance, variability, uncertainty. The ballet "Labyrinths" by Alfred Schnittke is an example of the embodiment of the labyrinth paradigm and is the object of research. The subject of the study (...)
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  43.  7
    A Hes1‐based oscillator in cultured cells and its potential implications for the segmentation clock.J. Kim Dale & Miguel Maroto - 2003 - Bioessays 25 (3):200-203.
    During somitogenesis an oscillatory mechanism termed the “segmentation” clock generates periodic waves of gene expression, which translate into the periodic spatial pattern manifest as somites. The dynamic expression of the clock genes shares the same periodicity as somitogenesis. Notch signaling is believed to play a role in the segmentation clock mechanism. The paper by Hirata et al.(1) identifies a biological clock in cultured cells that is dependent upon the Notch target gene Hes1, and which shows a periodicity similar to that (...)
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  44.  11
    A Hes1‐based oscillator in cultured cells and its potential implications for the segmentation clock.J. Kim Dale & Miguel Maroto - 2003 - Bioessays 25 (3):200-203.
    During somitogenesis an oscillatory mechanism termed the “segmentation” clock generates periodic waves of gene expression, which translate into the periodic spatial pattern manifest as somites. The dynamic expression of the clock genes shares the same periodicity as somitogenesis. Notch signaling is believed to play a role in the segmentation clock mechanism. The paper by Hirata et al.(1) identifies a biological clock in cultured cells that is dependent upon the Notch target gene Hes1, and which shows a periodicity similar to that (...)
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    Ethical aspects of genome diversity research: genome research into cultural diversity or cultural diversity in genome research? [REVIEW]Ilhan Ilkilic & Norbert W. Paul - 2009 - Medicine, Health Care and Philosophy 12 (1):25-34.
    The goal of the Human Genome Diversity Project (HGDP) was to reconstruct the history of human evolution and the historical and geographical distribution of populations with the help of scientific research. Through this kind of research, the entire spectrum of genetic diversity to be found in the human species was to be explored with the hope of generating a better understanding of the history of humankind. An important part of this genome diversity research consists in taking blood and tissue (...)
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  46. Vegetarian meat: Could technology save animals and satisfy meat eaters?Patrick D. Hopkins & Austin Dacey - 2008 - Journal of Agricultural and Environmental Ethics 21 (6):579-596.
    Between people who unabashedly support eating meat and those who adopt moral vegetarianism, lie a number of people who are uncomfortably carnivorous and vaguely wish they could be vegetarians. Opposing animal suffering in principle, they can ignore it in practice, relying on the visual disconnect between supermarket meat and slaughterhouse practices not to trigger their moral emotions. But what if we could have the best of both worlds in reality—eat meat and not harm animals? The nascent biotechnology of tissue (...)
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  47. Gathering the godless: intentional "communities" and ritualizing ordinary life. Section Three.Cultural Production : Learning to Be Cool, or Making Due & What We Do - 2015 - In Anthony B. Pinn (ed.), Humanism: essays on race, religion and cultural production. London: Bloomsbury Academic, an imprint of Bloomsbury Publishing Plc.
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  48. Responsibility, and Affected Ignorance.Culture - 1992 - Ethics 104:291-309.
     
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  49.  5
    The philosopher and society in late antiquity : protocol of the thirty-fourth colloquy : 3 December 1978.Peter Robert Lamont Center for Hermeneutical Studies in Hellenistic and Modern Culture & Brown - 1980
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  50. Joan mciver Gibson.Conversation Across Cultures - 2000 - In Raphael Cohen-Almagor (ed.), Medical Ethics at the Dawn of the 21st Century. New York Academy of Sciences. pp. 218.
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