Results for ' Biomedical Research'

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  1.  71
    Biomedical research on autism in low‐ and middle‐income countries: Considerations from the South African context.Siobhan de Lange, Dee Muller & Chloe Dafkin - forthcoming - Developing World Bioethics.
    Autism Spectrum Disorder (ASD) is a neurodevelopmental condition characterized by social/communicative difficulties and perseverative behaviours. While research on autism has flourished recently, few studies have been conducted on the disorder in non‐Western contexts. In low‐ and middle‐income countries (LMICs), biomedical research on autism is required to better understand the needs of the population and to develop contextually appropriate interventions. However, autistic individuals are a vulnerable study population and LMICs present with various considerations. While the presentation of autism (...)
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  2. Biomedical Research.Magí Farré & Josep-E. Baños - 2023 - In Irene Cambra-Badii, Ester Busquets, Núria Terribas & Josep-Eladi Baños (eds.), Bioethics: foundations, applications, and future challenges. Boca Raton: CRC Press.
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  3.  40
    Biomedical Research, Neglected Diseases, and Well-Ordered Science.Julian Reiss & Philip Kitcher - 2010 - Theoria 24 (3):263-282.
    In this paper we make a proposal for reforming biomedical research that is aimed to align re-search more closely with the so-called fair-share principle according to which the proportions of global resources as-signed to different diseases should agree with the ratios of human suffering associated with those diseases.
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  4.  42
    Trust and integrity in biomedical research: the case of financial conflicts of interest.Thomas H. Murray & Josephine Johnston (eds.) - 2010 - Baltimore: Johns Hopkins University Press.
    This volume assesses the ethical, quantitative, and qualitative questions posed by the current financing of biomedical research.
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  5. Biomedical research policy : back to the future?Bartha Maria Knoppers, Ruth Chadwick & Michael Beauvais - 2022 - In G. T. Laurie, E. S. Dove & Niamh Nic Shuibhne (eds.), Law and legacy in medical jurisprudence: essays in honour of Graeme Laurie. New York, NY: Cambridge University Press.
     
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  6. Biomedical research, neglected diseases, and well-ordered science.Julian Reiss & Philip Kitcher - 2009 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 24 (3):263-282.
    In this paper we make a proposal for reforming biomedical research that is aimed to align re-search more closely with the so-called fair-share principle according to which the proportions of global resources as-signed to different diseases should agree with the ratios of human suffering associated with those diseases.
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  7.  90
    An ethical framework for biomedical research.Ezekiel J. Emanuel, David Wendler & C. Grady - 2008 - In The Oxford textbook of clinical research ethics. New York: Oxford University Press. pp. 123--135.
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  8.  10
    Ethical issues in biomedical research in Nigeria: a systematic review.Chinaza Richard Ikeagwulonu, Chigozie Jesse Uneke & Obeta Mark Uchejeso - 2021 - Bangladesh Journal of Bioethics 12 (1):35-48.
    The use of human subjects in research comes with lots of ethical challenges. The purpose of this review is to assess the various ethical issues that have been associated with biomedical research in Nigeria. This article also finds out the possible ways of improvement of this scenario. Pubmed/Medline, Google Scholar, JSTOR, and AJOL search were the possible search engine for literature from 2000 to 2020. Key words were used including, ethical issues, biomedical research and Nigeria. (...)
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  9.  29
    Biomedical Research and Corporate Interests: A Question of Academic Freedom.L. McHenry - 2008 - Mens Sana Monographs 6 (1):146.
    The current situation in medicine has been described as a crisis of credibility, as the profit motive of industry has taken control of clinical trials and the dissemination of data. Pharmaceutical companies maintain a stranglehold over the content of medical journals in three ways: (1) by ghostwriting articles that bias the results of clinical trials, (2) by the sheer economic power they exert on journals due to the purchase of drug advertisements and journal reprints, and (3) by the threat of (...)
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  10.  7
    Research as development: biomedical research, ethics, and collaboration in Sri Lanka.Salla Sariola - 2019 - Ithaca: Cornell University Press. Edited by Bob Simpson.
    Shows how international biomedical researchers in Sri Lanka work across cultural, epistemic, economic, and power differences to accomplish clinical trials.
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  11. Biomedical Research, Neglected Diseases, and Well-Ordered Science.Philip Kitcher - 2009 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 24 (3):263-282.
    In this paper we make a proposal for reforming biomedical research that is aimed to align research more closely with the so-called fair-share principle according to which the proportions of global resources assigned to different diseases should agree with the ratios of human suffering associated with those diseases.
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  12.  15
    Is Biomedical Research Protected from Predatory Reviewers?Aceil Al-Khatib & Jaime A. Teixeira da Silva - 2019 - Science and Engineering Ethics 25 (1):293-321.
    Authors endure considerable hardship carrying out biomedical research, from generating ideas to completing their manuscripts and submitting their findings and data to a journal. When researchers submit to journals, they entrust their findings and ideas to editors and peer reviewers who are expected to respect the confidentiality of peer review. Inherent trust in peer review is built on the ethical conduct of authors, editors and reviewers, and on the respect of this confidentiality. If such confidentiality is breached by (...)
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  13.  23
    Should biomedical research with great apes be restricted? A systematic review of reasons.David DeGrazia, Javiera Perez Gomez & Bernardo Aguilera - 2021 - BMC Medical Ethics 22 (1):1-20.
    BackgroundThe use of great apes (GA) in invasive biomedical research is one of the most debated topics in animal ethics. GA are, thus far, the only animal group that has frequently been banned from invasive research; yet some believe that these bans could inaugurate a broader trend towards greater restrictions on the use of primates and other animals in research. Despite ongoing academic and policy debate on this issue, there is no comprehensive overview of the reasons (...)
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  14.  10
    Do biomedical researchers differ in their perceptions of plagiarism across Europe? Findings from an online survey among leading universities.Kris Dierickx, Benoit Nemery & Nannan Yi - 2022 - BMC Medical Ethics 23 (1):1-15.
    BackgroundExisting research on perceptions of plagiarism and cultural influences mainly focuses on comparisons between the Western World and the Eastern World. However, possible differences within the Western World have hardly been assessed, especially among biomedical academics. The authors compared perceptions of plagiarism among European biomedical researchers who participated in an online survey.MethodsThe present work is based on the data collected in a previous online survey done in 2018 among biomedical researchers working in leading European and Chinese (...)
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  15.  41
    Biomedical Research and Beyond: Expanding the Ethics of Inquiry.Christopher Tollefsen - 2007 - New York: Routledge.
    What is the relationship between scientific research and ethics? Some think that science should be free from ethical and political considerations. _Biomedical Research and Beyond_ argues that ethical guidance is essential for all forms of inquiry, including biomedical and scientific research. By addressing some of the most controversial questions of biomedical research, such as embryonic research, animal research, and genetic enhancement research, the author argues for a rich moral framework for the (...)
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  16.  36
    Biomedical research and mining of the poor: The need for their exclusion.R. R. Kishore - 2006 - Science and Engineering Ethics 12 (1):175-183.
    Almost all ethical guidelines and legislative policies concerning biomedical research involving human subjects contain provisions about relevance of research for the participating populations, informed consent, adequate care for research induced injuries and several other safeguards but the poor continue to suffer. Globalization has further aggravated poor people’s vulnerability by exposing them to international markets. Since the developing countries are abode of higher population of the poor they have become the unholy mines of this human ore for (...)
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  17.  27
    Setting Biomedical Research Priorities: Justice, Science, and Public Participation.David B. Resnik - 2001 - Kennedy Institute of Ethics Journal 11 (2):181-204.
    This paper addresses the appropriate role for public input into priority setting for federal funding of biomedical research and development. The public should be involved in priority setting because researchers should be publicly accountable, because the public has a right to oversee government activities, and because public input is needed to assess normative questions related to the burden of disease and health care needs. On the other hand, political factors arising from public input can also hamper the governmentÕs (...)
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  18.  25
    Is Biomedical Research Protected from Predatory Reviewers?Jaime A. Teixeira da Silva & Aceil Al-Khatib - 2019 - Science and Engineering Ethics 25 (1):293-321.
    Authors endure considerable hardship carrying out biomedical research, from generating ideas to completing their manuscripts and submitting their findings and data (as is increasingly required) to a journal. When researchers submit to journals, they entrust their findings and ideas to editors and peer reviewers who are expected to respect the confidentiality of peer review. Inherent trust in peer review is built on the ethical conduct of authors, editors and reviewers, and on the respect of this confidentiality. If such (...)
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  19.  6
    Ethics Review of Biomedical Research in Uzbekistan: Policy and Program Gaps.Dilfuza Aniyozova & Martin A. Strosberg - forthcoming - Asian Bioethics Review:1-9.
    We describe the national health research ethics review system of Uzbekistan and identify policy and program gaps that impede the protection of human research subjects. We find that the National Ethic Committee (NEC), functioning at the national level, is solely responsible for conducting research ethics review. There is little evidence that regional ethics committees work as intended, and there is no research ethics review at medical institutes and research centers even though they conduct CDTs (clinical (...)
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  20. Intertwining Biomedical Research and Public Health in HIV Microbicide Research.R. Macklin - 2010 - Public Health Ethics 3 (3):199-209.
    Finding an effective microbicide that could substantially lower women’s risk of acquiring HIV infection is an ethical imperative. Women and girls continue to be disproportionally affected by HIV in sub-Saharan Africa. Ethics guidelines for conducting preventive HIV microbicide trials call for steps that intertwine biomedical research and public health. Ethical considerations include adequate studies of the safety of microbicides, the use of placebo controls in future trials once a microbicide is shown to be effective, whether leftover microbicide from (...)
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  21.  7
    Publishing Biomedical Research: Roles and Responsibilities.Arnold S. Relman - 1990 - Hastings Center Report 20 (3):23-27.
    Authors, reviewers, and editors have critical responsibilities to ensure the validity and utility of published biomedical research.
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  22. Exploitation in biomedical research.David B. Resnik - 2003 - Theoretical Medicine and Bioethics 24 (3):233--259.
    This essay analyzesexploitation in biomedical research in terms ofthree basic elements: harm, disrespect, orinjustice. There are also degrees ofexploitation, ranging from highly exploitationto minimally exploitation. Althoughexploitation is prima facie wrongful,some exploitative research studies are morallyjustified, all things considered. The reasonan exploitative study can still be ethical isthat other moral considerations, such as theautonomy of the research subject or the socialbenefits of research, may sometimes justifystudies that are minimally exploitative. Calling a research project exploitative doesnot (...)
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  23.  6
    Publishing Biomedical Research: a rapidly evolving ecosystem.Jeffrey S. Flier - 2023 - Perspectives in Biology and Medicine 66 (3):358-382.
    The advancement of science requires the publication of research results so other scientists may examine, confirm, and build upon them, and the publishing ecosystem that mediates this process has undergone dramatic change over recent decades. This article takes a broad view of the biomedical research publishing system from its origins in the 17th century to the present day. It begins with a story from the author’s lab that illustrates a scientist’s complex interactions with the publishing system and (...)
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  24.  15
    Biomedical research ethics: updating international guidelines: a consultation: Geneva, Switzerland, 15-17 March 2000.Robert J. Levine, Samuel Gorovitz & James Gallagher (eds.) - 2000 - Geneva: CIOMS.
    Records the papers and commentaries, with an edited discussion, presented at an international consultation convened by the Council for International Organizations of Medical Sciences (CIOMS) to guide revision of the CIOMS International Ethical Guidelines for Biomedical Research Involving Human Subjects. The Guidelines, first issued in 1982 and then revised in 1993, are being updated and expanded to address a number of new and especially challenging ethical issues. These include issues raised by international collaborative trials of drugs in developing (...)
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  25.  22
    Biomedical research funding: when the game gets tough, winners start to play.Giorgio A. Ascoli - 2007 - Bioessays 29 (9):933-936.
    Extramural funding provides major support for biomedical research in academia, and National Institutes of Health (NIH) grants often constitute direct evaluation criteria for promotions and tenure. Therefore, NIH budget trends influence long‐term scientific strategies and career decisions, as well as the progress of science itself. Our analysis of the last 37 years of NIH awards, however, reveals that the success rate of grant applications submitted for funding is negatively related to the total yearly amount of (inflation‐adjusted) NIH extramural (...)
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  26.  17
    Biomedical Research with Dual Use: Ethical Concerns.Simona Loana Gheorghiu - 2015 - Ethics in Biology, Engineering and Medicine 6 (1-2):105-112.
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  27.  34
    Patents, biomedical research, and treatments: Examining concerns, canvassing solutions.Josephine Johnston & Angela A. Wasunna - 2007 - Hastings Center Report 37 (1):1-36.
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  28. The ethics of biomedical research: an international perspective.Baruch A. Brody - 1998 - New York: Oxford University Press.
    A broad critical review of national policies on biomedical research - human, epidemiologic, clinical trials, genetic, reproductive, etc.
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  29.  9
    Ethical implications of blockchain technology in biomedical research.Giovanni Rubeis - forthcoming - Ethik in der Medizin:1-14.
    Definition of the problem Biomedical research based on big data offers immense benefits. Large multisite research that integrates large amounts of personal health data, especially genomic and genetic data, might contribute to a more personalized medicine. This type of research requires the transfer and storage of highly sensitive data, which raises the question of how to protect data subjects against data harm, such as privacy breach, disempowerment, disenfranchisement, and exploitation. As a result, there is a trade-off (...)
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  30.  17
    From vulnerable subjects to research partners: a critical policy analysis of biomedical research ethics guidelines and regulations.Maria Cristina Murano - forthcoming - Research Ethics.
    Over the last three quarters of a century, international guidelines and regulations have undergone significant changes in how children are problematised as participants in biomedical research. While early guidelines enacted children as vulnerable subjects with diminished autonomy and in need of special protection, beginning in the early 2000s, international regulatory frameworks defined the paediatric population as vulnerable due to unaddressed public health needs. More recently, ethical recommendations have promoted the active engagement of minors as research partners. In (...)
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  31.  31
    Privatized Biomedical Research, Public Fears, and the Hazards of Government Regulation: Lessons from Stem Cell Research[REVIEW]David B. Resnick - 1999 - Health Care Analysis 7 (3):273-287.
    This paper discusses the hazards of regulating controversial biomedical research in light of the emergence of powerful, multi-national biotechnology corporations. Prohibitions on the use of government funds can simply force controversial research into the private sphere, and unilateral or multilateral research bans can simply encourage multi-national companies to conduct research in countries that lack restrictive laws. Thus, a net effect of government regulation is that research migrates from the public to the private sphere. Because (...)
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  32.  18
    International Biomedical Research and Research Ethics Training in Developing Countries.Fawaz Mzayek & David Resnik - 2010 - Journal of Clinical Research and Bioethics 1 (1).
  33.  28
    Integrity in Biomedical Research: A Systematic Review of Studies in China.Nannan Yi, Benoit Nemery & Kris Dierickx - 2019 - Science and Engineering Ethics 25 (4):1271-1301.
    Recent empirical evidence has demonstrated that research misconduct occurs to a substantial degree in biomedical research. It has been suggested that scientific integrity is also of concern in China, but this seems to be based largely on anecdotal evidence. We, therefore, sought to explore the Chinese situation, by making a systematic review of published empirical studies on biomedical research integrity in China. One of our purposes was also to summarize the existing body of research (...)
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  34. Causal inference in biomedical research.Tudor M. Baetu - 2020 - Biology and Philosophy 35 (4):1-19.
    Current debates surrounding the virtues and shortcomings of randomization are symptomatic of a lack of appreciation of the fact that causation can be inferred by two distinct inference methods, each requiring its own, specific experimental design. There is a non-statistical type of inference associated with controlled experiments in basic biomedical research; and a statistical variety associated with randomized controlled trials in clinical research. I argue that the main difference between the two hinges on the satisfaction of the (...)
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  35.  30
    Ethical issues in biomedical research: Perceptions and practices of postdoctoral research fellows responding to a survey.Susan Eastwood, Pamela Derish, Evangeline Leash & Stephen Ordway - 1996 - Science and Engineering Ethics 2 (1):89-114.
    We surveyed 1005 postdoctoral fellows by questionnaire about ethical matters related to biomedical research and publishing; 33% responded. About 18% of respondents said they had taken a course in research ethics, and about 31% said they had had a course that devoted some time to research ethics. A substantial majority stated willingness to grant other investigators, except competitors, access to their data before publication and to share research materials. Respondents’ opinions about contributions justifying authorship of (...)
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  36.  36
    Protecting Communities in Biomedical Research.Charles Weijer & E. J. Emanuel - unknown
    Although for the last 50 years, ethicists dealing with human experimentation have focused primarily on the need to protect individual research subjects and vulnerable groups, biomedical research, especially in genetics, now requires the establishment of standards for the protection of communities. We have developed such a strategy, based on five steps. (i) Identification of community characteristics relevant to the biomedical research setting, (ii) delineation of a typology of different types of communities using these characteristics, (iii) (...)
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  37. Biomedical research in the developing world : Ethical issues and dilemmas.David B. Resnik - 2006 - In Ana Smith Iltis (ed.), Research Ethics. Routledge.
     
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  38.  31
    Biomedical Research and the Commercial Exploitation of Human Tissue.Stephen Wilkinson - 2005 - Genomics, Society and Policy 1 (1):1-14.
    There is widespread anxiety about the commercialisation and commodification of human tissue. The aims of this paper are: (a) to analyse some of these concerns, and (b) to see whether some of the main ethical arguments that lie behind them are sound. Part 1 looks at 'inducement arguments' against paying individuals for their tissue and concludes that these are generally quite weak. Part 2 examines some ethical objections to third parties (e.g. biotechnology companies and researchers) commercially exploiting human tissue. Firstly, (...)
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  39.  11
    Biomedical Research Involving Older Human Subjects.Greg A. Sachs & Christine K. Cassel - 1990 - Journal of Law, Medicine and Ethics 18 (3):234-243.
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  40. The biomedical research industry and the end of scientific revolutions.Greg Goodale - 2010 - In Greg Goodale & Jason Edward Black (eds.), Arguments About Animal Ethics. Lexington Books.
  41.  48
    Biomedical Research Involving Animals -- Proposed International Guiding Principles.C. Hollands - 1986 - Journal of Medical Ethics 12 (1):49-50.
  42.  17
    Biomedical Research Involving Older Human Subjects.Greg A. Sachs & Christine K. Cassel - 1990 - Journal of Law, Medicine and Ethics 18 (3):234-243.
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  43.  11
    Islam and Biomedical Research Ethics.Mehrunisha Suleman - 2020 - New York, NY: Routledge.
    This book is a contribution to the nascent discourse on global health and biomedical research ethics involving Muslim populations and Islamic contexts. It presents a rich sociological account about the ways in which debates and questions involving Islam within the biomedical research context are negotiated - a perspective which is currently lacking within the broader bioethics literature. The book tackles some key understudied areas including: role of faith in moral deliberations within biomedical research ethics, (...)
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  44.  28
    Setting risk thresholds in biomedical research: lessons from the debate about minimal risk.Annette Rid - 2014 - Monash Bioethics Review 32 (1-2):63-85.
    One of the fundamental ethical concerns about biomedical research is that it frequently exposes participants to risks for the benefit of others. To protect participants’ rights and interests in this context, research regulations and guidelines set out a mix of substantive and procedural requirements for research involving humans. Risk thresholds play an important role in formulating both types of requirements. First, risk thresholds serve to set upper risk limits in certain types of research. Second, risk (...)
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  45.  10
    Biomedical Research: Collaboration and Conflict of Interest.Charles Weijer - unknown
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  46.  9
    Biomedical Research: A View from the State Legislature.William D. Delahunt - 1976 - Hastings Center Report 6 (2):25-26.
  47.  10
    Biomedical Research and the Public: A Report from the Airlie House Conference.Peter Steinfels - 1976 - Hastings Center Report 6 (3):21-25.
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  48. The case for the use of animals in biomedical research.Carl Cohen - 2009 - In Steven M. Cahn (ed.), Exploring ethics: an introductory anthology. New York: Oxford University Press. pp. 206.
  49.  61
    Perceptions of plagiarism by biomedical researchers: an online survey in Europe and China.Kris Dierickx, Benoit Nemery & Nannan Yi - 2020 - BMC Medical Ethics 21 (1):1-16.
    BackgroundPlagiarism is considered as serious research misconduct, together with data fabrication and falsification. However, little is known about biomedical researchers’ views on plagiarism. Moreover, it has been argued – based on limited empirical evidence – that perceptions of plagiarism depend on cultural and other determinants. The authors explored, by means of an online survey among 46 reputable universities in Europe and China, how plagiarism is perceived by biomedical researchers in both regions.MethodsWe collected work e-mail addresses of (...) researchers identified through the websites of 13 reputable universities in Europe and 33 reputable universities in China and invited them to participate in an online anonymous survey. Our questionnaire was designed to assess respondents’ views about plagiarism by asking whether they considered specific practices as plagiarism. We analyzed if respondents in China and Europe responded differently, using logistic regression analysis with adjustments for demographic and other relevant factors.ResultsThe authors obtained valid responses from 204 researchers based in China (response rate 2.1%) and 826 researchers based in Europe (response rate 5.6%). Copying text from someone else’s publication without crediting the source, using idea(s) from someone else’s publication without crediting the source and republishing one’s own work in another language without crediting the source were considered as plagiarism by 98, 67 and 64%, respectively. About one-third of the respondents reported to have been unsure whether they had been plagiarizing.Overall, the pattern of responses was similar among respondents based in Europe and China. Nevertheless, for some items significant differences did occur in disadvantage of Chinese respondents.ConclusionsFindings indicate that nearly all biomedical researchers understand (and disapprove of) the most obvious forms of plagiarism, but uncertainties and doubts were apparent for many aspects. And the minority of researchers who did not recognize some types of plagiarism as plagiarism was larger among China-based respondents than among Europe-based respondents. The authors conclude that biomedical researchers need clearer working definitions of plagiarism in order to deal with grey zones. (shrink)
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  50. Conducting Biomedical Research in Extreme Scarcity: What Theory of Justice Should Apply when the Sponsor is an Industry or a Rich Country?Allen Andrew A. Alvarez - 2010 - Asian Bioethics Review 2 (3):182-194.
     
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