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  1. A multi-dimensional learning strategy to foster research integrity.Daniel Pizzolato & Kris Dierickx - 2024 - Research Ethics 20 (2):210-218.
    Responsible research practices are critical to maintaining integrity in research and the provision of institutional trainings is an important means of promoting research integrity. However, studies show contrasting results on the efficacy of institutional training and that these approaches may not be fully effective in promoting research integrity among individuals and improving the overall climate in research integrity. Therefore, a more comprehensive multi-dimensional learning strategy seems to be needed. This includes continuous and tailored training at different institutional levels, the incorporation (...)
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  • Students as members of university-based academic research ethics boards: A natural evolution.Nancy A. Walton, Alexander G. Karabanow & Jehangir Saleh - 2008 - Journal of Academic Ethics 6 (2):117-127.
    University based academic Research Ethics Boards (REB) face the particularly difficult challenge of trying to achieve representation from a variety of disciplines, methodologies and research interests. Additionally, many are currently facing another decision – whether to have students as REB members or not. At Ryerson University, we are uniquely situated. Without a medical school in which an awareness of the research ethics review process might be grounded, our mainly social science and humanities REB must also educate and foster awareness of (...)
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  • The Need for Social Ethics in Interdisciplinary Environmental Science Graduate Programs: Results from a Nation-Wide Survey in the United States.Sean Valles, Kyle Whyte, Zach Piso, Michael O’Rourke, Jesse Engebretson & Troy E. Hall - 2017 - Science and Engineering Ethics 23 (2):565-588.
    Professionals in environmental fields engage with complex problems that involve stakeholders with different values, different forms of knowledge, and contentious decisions. There is increasing recognition of the need to train graduate students in interdisciplinary environmental science programs in these issues, which we refer to as “social ethics.” A literature review revealed topics and skills that should be included in such training, as well as potential challenges and barriers. From this review, we developed an online survey, which we administered to faculty (...)
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  • An evaluation of a data linkage training workshop for research ethics committees.Kate M. Tan, Felicity S. Flack, Natasha L. Bear & Judy A. Allen - 2015 - BMC Medical Ethics 16 (1):13.
    In Australia research projects proposing the use of linked data require approval by a Human Research Ethics Committee . A sound evaluation of the ethical issues involved requires understanding of the basic mechanics of data linkage, the associated benefits and risks, and the legal context in which it occurs. The rapidly increasing number of research projects utilising linked data in Australia has led to an urgent need for enhanced capacity of HRECs to review research applications involving this emerging research methodology. (...)
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  • Evaluating the efficacy of the education and training program of the TCPS 2.Denise Stockley, Laura Kinderman, Rylan Egan, Chi Yan Lam & Amber Hastings - 2017 - Research Ethics 13 (3-4):102-114.
    In 2011, the Secretariat on Responsible Conduct of Research launched a set of educational opportunities to facilitate and enhance the dissemination of TCPS 2, the 2nd edition of the Tri-Council Policy Statement: Ethical Conduct for Research Involving Humans, which guides Canadian research ethics. Three educational modalities were implemented to aid participants in developing or refining their ethical understanding and practice: Regional Workshops, which brought together diverse disciplinary perspectives; the CORE tutorial, which enabled individuals to discover the various aspects and applications (...)
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  • Institutional and individual responsibilities for integrity in research.Nicholas H. Steneck - 2002 - American Journal of Bioethics 2 (4):51 – 53.
  • Using Criminalization and Due Process to Reduce Scientific Misconduct.Benjamin K. Sovacool - 2005 - American Journal of Bioethics 5 (5):W1-W7.
    The issue of how to best minimize scientific misconduct remains a controversial topic among bioethicists, professors, policymakers, and attorneys. This paper suggests that harsher criminal sanctions against misconduct, better protections for whistleblowers, and the creation of due process standards for misconduct investigations are urgently needed. Although the causes of misconduct and estimates of problem remain varied, the literature suggests that scientific misconduct—fraud, fabrication, and plagiarism of scientific research—continues to damage public health and trust in science. Providing stricter criminal statutes against (...)
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  • Exploring scientific misconduct: Isolated individuals, impure institutions, or an inevitable idiom of modern science? [REVIEW]Benjamin K. Sovacool - 2008 - Journal of Bioethical Inquiry 5 (4):271-282.
    This paper identifies three distinct narratives concerning scientific misconduct: a narrative of “individual impurity” promoted by those wishing to see science self-regulated; a narrative of “institutional impropriety” promoted by those seeking greater external control of science; and a narrative of “structural crisis” among those critiquing the entire process of research itself. The paper begins by assessing contemporary definitions and estimates of scientific misconduct. It emphasizes disagreements over such definitions and estimates as a way to tease out tension and controversy over (...)
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  • Teaching old dogs new tricks: Continuing education in research ethics.Richard R. Sharp - 2002 - American Journal of Bioethics 2 (4):55 – 56.
  • Cultural Synthesis: Science and Ethics.Jeanne M. Sears - 2002 - American Journal of Bioethics 2 (4):67-68.
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  • The professor is excused.Rob Schwartz - 2002 - American Journal of Bioethics 2 (4):59 – 60.
  • Teaching Ethics to Basic Scientists: Suggestions for Greater Curricular Clarity.Paul Root Wolpe - 2002 - American Journal of Bioethics 2 (4):62-63.
  • Responsible Conduct of Research Is All Well and Good.Kenneth A. Richman - 2002 - American Journal of Bioethics 2 (4):61-62.
  • Why Should Nanoscience Students be Taught to be Ethically Competent?Anna Julie Rasmussen & Mette Ebbesen - 2014 - Science and Engineering Ethics 20 (4):1065-1077.
    During the education of scientists at the university level the students become more and more specialized. The specialization of the students is a consequence of the scientific research becoming specialized as well. In the interdisciplinary field of nanoscience the importance of specialization is also emphasized throughout the education. Being an interdisciplinary field of study the specialization in this area is not focused on scientific disciplines, but on the different branches of the research. Historically ethics has not been a priority in (...)
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  • Student perceptions of the effectiveness of education in the responsible conduct of research.Dena K. Plemmons, Suzanne A. Brody & Michael W. Kalichman - 2006 - Science and Engineering Ethics 12 (3):571-582.
    Responsible conduct of research courses are widely taught, but little is known about the purposes or effectiveness of such courses. As one way to assess the purposes of these courses, students were surveyed about their perspectives after recent completion of one of eleven different research ethics courses at ten different institutions. Participants enrolled in RCR courses in spring and fall of 2003 received a voluntary, anonymous survey from their instructors at the completion of the course. Responses were received from 268 (...)
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  • Mentoring for Responsible Research: The Creation of a Curriculum for Faculty to Teach RCR in the Research Environment.Dena K. Plemmons & Michael W. Kalichman - 2018 - Science and Engineering Ethics 24 (1):207-226.
    Despite more than 25 years of a requirement for training in the responsible conduct of research, there is still little consensus about what such training should include, how it should be delivered, nor what constitutes “effectiveness” of such training. This lack of consensus on content, approaches and outcomes is evident in recent data showing high variability in the development and implementation of RCR instruction across universities and programs. If we accept that one of the primary aims of instruction in RCR/research (...)
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  • The Mentor’s Role in Fostering Research Integrity Standards Among New Generations of Researchers: A Review of Empirical Studies. [REVIEW]Daniel Pizzolato & Kris Dierickx - 2023 - Science and Engineering Ethics 29 (3):1-23.
    Promoting research integrity practices among doctoral candidates and early career researchers is important for creating a stable and healthy research environment. In addition to teaching specific technical skills and knowledge, research supervisors and mentors inevitably convey research practices, both directly and indirectly. We conducted a scoping review to summarise the role of mentors in fostering research integrity practices, mentors’ responsibilities and the role that institutions have in supporting good mentorship. We searched five different databases and included studies that used an (...)
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  • Research Ethics: Researchers Consider How Best to Prevent Misconduct in Research in Malaysian Higher Learning Institutions Through Ethics Education.Angelina Patrick Olesen, Latifah Amin & Zurina Mahadi - 2019 - Science and Engineering Ethics 25 (4):1111-1124.
    The purpose of this study is to encourage and highlight discussion on how to improve the teaching of research ethics in institutions of higher education in Malaysia. Drawing on semi-structured interviews with 21 academics in a research-intensive university in Malaysia, interviewees agreed on the importance of emphasizing the subject of research ethics among students, as well as academics or researchers. This study reveals that participants felt that there is an urgent need to improve the current awareness and knowledge of issues (...)
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  • What's the Professor Got to Do with It?Karen J. Maschke - 2002 - American Journal of Bioethics 2 (4):63-64.
  • Conflict over Conflicts of Interest: An Analysis of the New NIH Rules.Jennifer L. Gold - 2006 - Journal of Law, Medicine and Ethics 34 (1):105-110.
    Concern over research integrity at the NIH led to the adoption of strict conflict of interest rules in 2005. An outcry from NIH scientists followed. This paper analyzes the legal and ethical issues raised by the new rules, and suggests potential areas for modification.
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  • The Contribution of Moral Case Deliberation to Teaching RCR to PhD Students.Giulia Inguaggiato, Krishma Labib, Natalie Evans, Fenneke Blom, Lex Bouter & Guy Widdershoven - 2023 - Science and Engineering Ethics 29 (2):1-18.
    Teaching responsible conduct of research (RCR) to PhD students is crucial for fostering responsible research practice. In this paper, we show how the use of Moral Case Deliberation—a case reflection method used in the Amsterdam UMC RCR PhD course—is particularity valuable to address three goals of RCR education: (1) making students aware of, and internalize, RCR principles and values, (2) supporting reflection on good conduct in personal daily practice, and (3) developing students’ dialogical attitude and skills so that they can (...)
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  • Reflecting on Responsible Conduct of Research: A Self Study of a Research-Oriented University Community.Rebecca L. Hite, Sungwon Shin & Mellinee Lesley - 2022 - Journal of Academic Ethics 20 (3):399-419.
    Research-oriented universities are known for prolific research activity that is often supported by students in faculty-guided research. To maintain ethical standards, universities require on-going training of both faculty and students to ensure Responsible Conduct of Research (RCR). However, previous research has indicated RCR-based training is insufficient to address the ethical dilemmas that are prevalent within academic settings: navigating issues of authorship, modeling relationships between faculty and students, minimization of risk, and adequate informed consent. U.S. universities must explore ways to identify (...)
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  • Forschungsethik als integrativer Bestandteil der medizinisch-naturwissenschaftlichen Ausbildung. Zur interdisziplinären Entwicklung eines „Curriculums Forschungsethik“.Bert Heinrichs - 2005 - Ethik in der Medizin 17 (1):39-43.
  • It's Alive! Giving Birth to Research Ethics Education.Elisa J. Gordon & Kayhan P. Parsi - 2002 - American Journal of Bioethics 2 (4):65-66.
  • Measures of Mentoring, Department Climate, and Graduate Student Preparedness in the Responsible Conduct of Psychological Research.Sabrina J. Goodman, Kaori Kubo Germano, Adam L. Fried & Celia B. Fisher - 2009 - Ethics and Behavior 19 (3):227-252.
    Drawing upon two independent national samples of 201 and 241 psychology graduate students, this article describes the development and psychometric evaluation of 4 Web-based student self-report scales tapping student socialization in the responsible conduct of research (RCR) with human participants. The Mentoring the Responsible Conduct of Research Scale (MRCR) is composed of 2 subscales assessing RCR instruction and modeling by research mentors. The 2 subscales of the RCR Department Climate Scale (RCR-DC) assess RCR department policies and faculty and student RCR (...)
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  • Conflict over Conflicts of Interest: An Analysis of the New NIH Rules.Jennifer L. Gold - 2006 - Journal of Law, Medicine and Ethics 34 (1):105-110.
    Increasing reports of financial entanglements involving scientist and industry have led some to question the neutrality of research results. In December 2003, a story in the Los Angeles Times shocked readers by exposing several cases of NIH scientists embroiled in serious financial conflicts of interest.1 It was revealed, for example, that senior NIH official Stephen Katz was a paid consultant to Schering AG, a German pharmaceutical company with which he was involved in conducting clinical trials. In a similar case, John (...)
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  • Addressing the hidden curriculum in scientific research.Kelly Fryer-Edwards - 2002 - American Journal of Bioethics 2 (4):58 – 59.
  • Graduate Socialization in the Responsible Conduct of Research: A National Survey on the Research Ethics Training Experiences of Psychology Doctoral Students.Lindsay G. Feldman, Adam L. Fried & Celia B. Fisher - 2009 - Ethics and Behavior 19 (6):496-518.
    Little is known about the mechanisms by which psychology graduate programs transmit responsible conduct of research (RCR) values. A national sample of 968 current students and recent graduates of mission-diverse doctoral psychology programs completed a Web-based survey on their research ethics challenges, perceptions of RCR mentoring and department climate, whether they were prepared to conduct research responsibly, and whether they believed psychology as a discipline promotes scientific integrity. Research experience, mentor RCR instruction and modeling, and department RCR policies predicted student (...)
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  • On the importance of research ethics and mentoring.Ruth R. Faden, Michael J. Klag, Nancy E. Kass & Sharon S. Krag - 2002 - American Journal of Bioethics 2 (4):50 – 51.
  • Assessment of the ethical review process in sudan.Dya Eldin M. Elsayed & Nancy E. Kass - 2007 - Developing World Bioethics 7 (3):143–148.
    ABSTRACT The ethical review process is an important component of contemporary health research worldwide. Sudan started an ethical review process rather late in comparison with other countries. In this study, we evaluate the structure and functions of existing ethics review committees. We also explore the knowledge and attitudes of Sudanese researchers toward the ethical review process and their experience with existing ethics review committees. There are four ethics review committees in the country; these committees have no institutional regulations to govern (...)
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  • A model for teaching research ethics.Arri Eisen & Kathy P. Parker - 2004 - Science and Engineering Ethics 10 (4):693-704.
    A model is described for implementing a program in research ethics education in the face of federal and institutional mandates and current resource, disciplinary, and infrastructure limitations. Also discussed are the historical background, content and evaluation process of the workshop at the heart of the program, which reaches a diverse group of over 250 students per year—from first-year graduate students in basic research labs to clinical fellows. The workshop addresses central issues in both everyday laboratory ethics and in larger societal (...)
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  • The Need for Social Ethics in Interdisciplinary Environmental Science Graduate Programs: Results from a Nation-Wide Survey in the United States.Troy E. Hall, Jesse Engebretson, Michael O’Rourke, Zach Piso, Kyle Whyte & Sean Valles - 2017 - Science and Engineering Ethics 23 (2):565-588.
    Professionals in environmental fields engage with complex problems that involve stakeholders with different values, different forms of knowledge, and contentious decisions. There is increasing recognition of the need to train graduate students in interdisciplinary environmental science programs in these issues, which we refer to as “social ethics.” A literature review revealed topics and skills that should be included in such training, as well as potential challenges and barriers. From this review, we developed an online survey, which we administered to faculty (...)
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  • Stakeholders' perspectives on research integrity training practices: a qualitative study.Kris Dierickx & Daniel Pizzolato - 2021 - BMC Medical Ethics 22 (1):1-13.
    BackgroundEven though research integrity (RI) training programs have been developed in the last decades, it is argued that current training practices are not always able to increase RI-related awareness within the scientific community. Defining and understanding the capacities and lacunas of existing RI training are becoming extremely important for developing up-to-date educational practices to tackle present-day challenges. Recommendations on how to implement RI education have been primarily made by selected people with specific RI-related expertise. Those recommendations were developed mainly without (...)
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  • Ethics in biomedical research: Practical considerations.A. M. Chakrabarty - 2002 - American Journal of Bioethics 2 (4):53 – 54.
  • Faultlines in "bioscience ethics": Lessons from the human genome diversity project.Paul Brodwin - 2002 - American Journal of Bioethics 2 (4):56 – 57.
  • Three stages in the lifecycle of bioethics: Observations on "bioethics as Co-PI".Roberta M. Berry - 2005 - American Journal of Bioethics 5 (6):30 – 32.
    S. Matthew Liao's paper (2005) exemplifies what I characterize as the third stage in the lifecycle of bioethics, “bioethics as co-PI,” in which bioethics asserts a role in directing the biomedical...
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  • Navigating Bioethical Waters: Two Pilot Projects in Problem-Based Learning for Future Bioscience and Biotechnology Professionals.Roberta M. Berry, Aaron D. Levine, Robert Kirkman, Laura Palucki Blake & Matthew Drake - 2016 - Science and Engineering Ethics 22 (6):1649-1667.
    We believe that the professional responsibility of bioscience and biotechnology professionals includes a social responsibility to contribute to the resolution of ethically fraught policy problems generated by their work. It follows that educators have a professional responsibility to prepare future professionals to discharge this responsibility. This essay discusses two pilot projects in ethics pedagogy focused on particularly challenging policy problems, which we call “fractious problems”. The projects aimed to advance future professionals’ acquisition of “fractious problem navigational” skills, a set of (...)
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  • Contentious Problems in Bioscience and Biotechnology: A Pilot Study of an Approach to Ethics Education.Roberta M. Berry, Jason Borenstein & Robert J. Butera - 2013 - Science and Engineering Ethics 19 (2):653-668.
    This manuscript describes a pilot study in ethics education employing a problem-based learning approach to the study of novel, complex, ethically fraught, unavoidably public, and unavoidably divisive policy problems, called “fractious problems,” in bioscience and biotechnology. Diverse graduate and professional students from four US institutions and disciplines spanning science, engineering, humanities, social science, law, and medicine analyzed fractious problems employing “navigational skills” tailored to the distinctive features of these problems. The students presented their results to policymakers, stakeholders, experts, and members (...)
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