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  1. Interdisciplinarity in the Making: Models and Methods in Frontier Science.Nancy J. Nersessian - 2022 - Cambridge, MA: MIT.
    A cognitive ethnography of how bioengineering scientists create innovative modeling methods. In this first full-scale, long-term cognitive ethnography by a philosopher of science, Nancy J. Nersessian offers an account of how scientists at the interdisciplinary frontiers of bioengineering create novel problem-solving methods. Bioengineering scientists model complex dynamical biological systems using concepts, methods, materials, and other resources drawn primarily from engineering. They aim to understand these systems sufficiently to control or intervene in them. What Nersessian examines here is how cutting-edge bioengineering (...)
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  • Informed consent in biobanking and genetic research.Antonio Casado da Rocha & Arantza Etxeberria Agiriano - 2008 - Arbor 184 (730).
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  • Heuristic approaches to models and modeling in systems biology.Miles MacLeod - 2016 - Biology and Philosophy 31 (3):353-372.
    Prediction and control sufficient for reliable medical and other interventions are prominent aims of modeling in systems biology. The short-term attainment of these goals has played a strong role in projecting the importance and value of the field. In this paper I identify the standard models must meet to achieve these objectives as predictive robustness—predictive reliability over large domains. Drawing on the results of an ethnographic investigation and various studies in the systems biology literature, I explore four current obstacles to (...)
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  • Validation and variability: Dual challenges on the path from systems biology to systems medicine.Annamaria Carusi - 2014 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 48:28-37.
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  • The creative industry of integrative systems biology.Miles MacLeod & Nancy J. Nersessian - 2013 - Mind and Society 12 (1):35-48.
    Integrative systems biology is among the most innovative fields of contemporary science, bringing together scientists from a range of diverse backgrounds and disciplines to tackle biological complexity through computational and mathematical modeling. The result is a plethora of problem-solving techniques, theoretical perspectives, lab-structures and organizations, and identity labels that have made it difficult for commentators to pin down precisely what systems biology is, philosophically or sociologically. In this paper, through the ethnographic investigation of two ISB laboratories, we explore the particular (...)
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  • The Relation of Ethics and Science: A Commentary on "The Study of Socioethical Issues in Systems Biology".Daniel Drell - 2007 - American Journal of Bioethics 7 (4):79-80.
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  • From Describing to Performing the Socioethical Engagement with Systems Biology.Lenny Moss - 2007 - American Journal of Bioethics 7 (4):86-87.
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  • Systems Bioethics.Jason Scott Robert - 2007 - American Journal of Bioethics 7 (4):80-82.
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  • Enough About Rawls Already: Systems Theory and Bioethics in the 21st Century.Griffin Trotter - 2007 - American Journal of Bioethics 7 (4):83-85.
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  • Everything Old is New Again, Including Systems Biology.Morris W. Foster - 2007 - American Journal of Bioethics 7 (4):85-86.
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  • Response to Open Peer Commentaries on "The Study of Socioethical Issues in Systems Biology".Maureen O'Malley, Jane Calvert & John Dupré - 2007 - American Journal of Bioethics 7 (4):7-9.
    Systems biology is the rapidly growing and heavily funded successor science to genomics. Its mission is to integrate extensive bodies of molecular data into a detailed mathematical understanding of all life processes, with an ultimate view to their prediction and control. Despite its high profile and widespread practice, there has so far been almost no bioethical attention paid to systems biology and its potential social consequences. We outline some of systems biology's most important socioethical issues by contrasting the concept of (...)
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  • Interdisciplinarities in Action: Cognitive Ethnography of Bioengineering Sciences Research Laboratories.Nancy J. Nersessian - 2019 - Perspectives on Science 27 (4):553-581.
    The paper frames interdisciplinary research as creating complex, distributed cognitive-cultural systems. It introduces and elaborates on the method of cognitive ethnography as a primary means for investigating interdisciplinary cognitive and learning practices in situ. The analysis draws from findings of nearly 20 years of investigating such practices in research laboratories in pioneering bioengineering sciences. It examines goals and challenges of two quite different kinds of integrative problem-solving practices: biomedical engineering (hybridization) and integrative systems biology (collaborative interdependence). Practical lessons for facilitating (...)
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  • Entering the Social Experiment: A Case for the Informed Consent of Graduate Engineering Students.Erik Fisher & Michael Lightner - 2009 - Social Epistemology 23 (3):283-300.
    Taking up the notion of engineering as social experimentation, this paper argues that engineering research laboratory directors have a responsibility to inform graduate engineering students who participate in their research projects of the potential broader social dimensions of those projects. Informing engineers-in-the-making of the broader social dimensions of the research they are learning to conduct would help ensure their future capacity to act as ethically responsible social experimenters. The paper also argues that graduate engineers have a right to be informed (...)
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