Results for ' neuroimaging research'

980 found
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  1.  59
    Recommendations for sex/gender neuroimaging research: key principles and implications for research design, analysis, and interpretation.Gina Rippon, Rebecca Jordan-Young, Anelis Kaiser & Cordelia Fine - 2014 - Frontiers in Human Neuroscience 8.
  2. An update on ADHD neuroimaging research.David Cohen & Jonathan Leo - 2004 - Journal of Mind and Behavior 25 (2):161-166.
    Since the publication of a critical review on ADHD neuroimaging in a past issue of this journal , several relevant studies have appeared, including one study that had a subgroup of unmedicated ADHD children . In this update to our earlier review we comment on this last study’s failure to report on the crucial comparison between unmedicated and medicated ADHD subjects. The issue of prior medication exposure in ADHD subjects constitutes a serious confound in this body of research, (...)
     
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  3.  12
    Behavioral and Neuroimaging Research on Developmental Coordination Disorder (DCD): A Combined Systematic Review and Meta-Analysis of Recent Findings.Emily Subara-Zukic, Michael H. Cole, Thomas B. McGuckian, Bert Steenbergen, Dido Green, Bouwien C. M. Smits-Engelsman, Jessica M. Lust, Reza Abdollahipour, Erik Domellöf, Frederik J. A. Deconinck, Rainer Blank & Peter H. Wilson - 2022 - Frontiers in Psychology 13.
    AimThe neurocognitive basis of Developmental Coordination Disorder remains an issue of continued debate. This combined systematic review and meta-analysis provides a synthesis of recent experimental studies on the motor control, cognitive, and neural underpinnings of DCD.MethodsThe review included all published work conducted since September 2016 and up to April 2021. One-hundred papers with a DCD-Control comparison were included, with 1,374 effect sizes entered into a multi-level meta-analysis.ResultsThe most profound deficits were shown in: voluntary gaze control during movement; cognitive-motor integration; practice-/context-dependent (...)
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  4. Iconicity in the lab: a review of behavioral, developmental, and neuroimaging research into sound-symbolism.Gwilym Lockwood & Mark Dingemanse - 2015 - Frontiers in Psychology 6:1-14.
    This review covers experimental approaches to sound-symbolism—from infants to adults, and from Sapir’s foundational studies to twenty-first century product naming. It synthesizes recent behavioral, developmental, and neuroimaging work into a systematic overview of the cross-modal correspondences that underpin iconic links between form and meaning. It also identifies open questions and opportunities, showing how the future course of experimental iconicity research can benefit from an integrated interdisciplinary perspective. Combining insights from psychology and neuroscience with evidence from natural languages provides (...)
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  5. The entropic brain: a theory of conscious states informed by neuroimaging research with psychedelic drugs.Robin L. Carhart-Harris, Robert Leech, Peter J. Hellyer, Murray Shanahan, Amanda Feilding, Enzo Tagliazucchi, Dante R. Chialvo & David Nutt - 2014 - Frontiers in Human Neuroscience 8.
  6. Self‐Fulfilling Prophecies: The Influence of Gender Stereotypes on Functional Neuroimaging Research on Emotion.Robyn Bluhm - 2013 - Hypatia 28 (4):870-886.
    Feminist scholars have shown that research on sex/gender differences in the brain is often used to support gender stereotypes. Scientists use a variety of methodological and interpretive strategies to make their results consistent with these stereotypes. In this paper, I analyze functional magnetic resonance imaging (fMRI) research that examines differences between women and men in brain activity associated with emotion and show that these researchers go to great lengths to make their results consistent with the view that women (...)
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  7.  10
    MetaNIRS: A Relational Database for the Categorization, Organization and Meta-Analysis of Optical Functional Neuroimaging Research.Jan Watson, Adrian Curtin & Hasan Ayaz - 2018 - Frontiers in Human Neuroscience 12.
  8.  7
    Grey Matter – The Problems of Incidental Findings in Neuroimaging Research.Nicholas Murphy & Charles Weijer - 2021 - Journal of Law, Medicine and Ethics 49 (2):282-284.
  9.  49
    ‘Ethical responsibility’ or ‘a whole can of worms’: differences in opinion on incidental finding review and disclosure in neuroimaging research from focus group discussions with participants, parents, IRB members, investigators, physicians and community members.Caitlin Cole, Linda E. Petree, John P. Phillips, Jody M. Shoemaker, Mark Holdsworth & Deborah L. Helitzer - 2015 - Journal of Medical Ethics 41 (10):841-847.
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  10.  20
    Editorial: Learning a non-native language in a naturalistic environment: insights from behavioral and neuroimaging research.Christos Pliatsikas & Vicky Chondrogianni - 2015 - Frontiers in Psychology 6.
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  11.  17
    A Social Constructivism Decision-Making Approach to Managing Incidental Findings in Neuroimaging Research.Marcie L. King - 2018 - Ethics and Behavior 28 (5):393-410.
    Functional magnetic resonance imaging is a powerful tool used in cognitive neuroscientific research. fMRI is noninvasive, safe, and relatively accessible, making it an ideal method to draw inferences about the brain–behavior relationship. When conducting fMRI research, scientists must consider risks associated with brain imaging. In particular, the risk of potentially identifying an abnormal brain finding in an fMRI research scan poses a complex problem that researchers should be prepared to address. This article illustrates how a social constructivism (...)
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  12.  28
    Clinical and public translation of neuroimaging research in disorders of consciousness challenges current diagnostic and public understanding paradigms.Eric Racine & Emily Bell - 2008 - American Journal of Bioethics 8 (9):13 – 15.
  13.  6
    Visual Fidelity in Simulation-Based Training for Aviation: Behavioral and Neuroimaging Research.Nina Rothstein - 2018 - Frontiers in Human Neuroscience 12.
  14.  17
    Neural Underpinnings of the Perception of Emotional States Derived From Biological Human Motion: A Review of Neuroimaging Research[REVIEW]Julia Bachmann, Jörn Munzert & Britta Krüger - 2018 - Frontiers in Psychology 9.
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  15. Broken brains or flawed studies? A critical review of ADHD neuroimaging research.John R. Leo & D. Cohen - 2003 - Journal of Mind and Behavior 24 (1):29-55.
  16.  7
    Corrigendum: Iconicity in the lab: a review of behavioral, developmental, and neuroimaging research into sound-symbolism. [REVIEW]Gwilym Lockwood & Mark Dingemanse - 2015 - Frontiers in Psychology 6.
  17.  25
    Responsible Reporting: Neuroimaging News in the Age of Responsible Research and Innovation.Irja Marije de Jong, Frank Kupper, Marlous Arentshorst & Jacqueline Broerse - 2016 - Science and Engineering Ethics 22 (4):1107-1130.
    Besides offering opportunities in both clinical and non-clinical domains, the application of novel neuroimaging technologies raises pressing dilemmas. ‘Responsible Research and Innovation’ (RRI) aims to stimulate research and innovation activities that take ethical and social considerations into account from the outset. We previously identified that Dutch neuroscientists interpret “responsible innovation” as educating the public on neuroimaging technologies via the popular press. Their aim is to mitigate (neuro)hype, an aim shared with the wider emerging RRI community. Here, (...)
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  18. Neuroimaging and disorders of consciousness: Envisioning an ethical research agenda.Joseph J. Fins, Judy Illes, James L. Bernat, Joy Hirsch, Steven Laureys & Emily Murphy - 2008 - American Journal of Bioethics 8 (9):3 – 12.
    The application of neuroimaging technology to the study of the injured brain has transformed how neuroscientists understand disorders of consciousness, such as the vegetative and minimally conscious states, and deepened our understanding of mechanisms of recovery. This scientific progress, and its potential clinical translation, provides an opportunity for ethical reflection. It was against this scientific backdrop that we convened a conference of leading investigators in neuroimaging, disorders of consciousness and neuroethics. Our goal was to develop an ethical frame (...)
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  19.  20
    Neuroimaging and Disorders of Consciousness: Envisioning an Ethical Research Agenda.Emily Murphy**, Steven Laureys**, Joy Hirsch**, James L. Bernat**, Judy Illes* & Joseph J. Fins* - 2008 - American Journal of Bioethics 8 (9):3-12.
    The application of neuroimaging technology to the study of the injured brain has transformed how neuroscientists understand disorders of consciousness, such as the vegetative and minimally conscious states, and deepened our understanding of mechanisms of recovery. This scientific progress, and its potential clinical translation, provides an opportunity for ethical reflection. It was against this scientific backdrop that we convened a conference of leading investigators in neuroimaging, disorders of consciousness and neuroethics. Our goal was to develop an ethical frame (...)
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  20.  1
    A research program in neuroimaging for an evolutionary theory of syntax.Marco Tettamanti - forthcoming - Language and Cognition.
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  21.  97
    A New Challenge for Research Ethics: Incidental Findings in Neuroimaging.Bert Heinrichs - 2011 - Journal of Bioethical Inquiry 8 (1):59-65.
    It has become evident that neuroimaging raises new normative questions that cannot be addressed adequately within the (in this regard unspecific) frameworks of existing research ethics. Questions that are especially troubling are, among others, provoked by incidental findings. Two questions are particularly intricate in view of incidental findings: (1) How can the research subject’s right not to know be guaranteed? And (2) should a diagnostic check of scans by a neuroradiologist become an obligatory part of neuroscientific (...) protocols? The present paper examines these question against the background of two recent recommendations. The differentiation between difference position and similarity position serves as an analytic tool to further investigate the issue and to develop a distinct proposal for answering the questions. (shrink)
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  22.  13
    Shining a Light also Casts a Shadow: Neuroimaging Incidental Findings in Neuromarketing Research.Owen M. Bradfield - 2021 - Neuroethics 14 (3):459-465.
    Rapid growth in structural and functional brain research has led to increasing ethical discussion of what to do about incidental findings within the brains of healthy neuroimaging research participants that have potential health importance, but which are beyond the original aims of the study. This dilemma has been widely debated with respect to general neuroimaging research but has attracted little attention in the context of neuromarketing studies. In this paper, I argue that neuromarketing researchers owe (...)
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  23.  53
    Neuroimaging: Revolutionary research tool or a post-modern phrenology?Donald Kennedy - 2005 - American Journal of Bioethics 5 (2):19.
  24.  8
    Neuroimaging.Randy L. Buckner & Steven E. Petersen - 1998 - In George Graham & William Bechtel (eds.), A Companion to Cognitive Science. Blackwell. pp. 413–424.
    A growing number of scientists have become interested in the relation between cognitive processes and their biological basis. This growth in interest has led to the creation of a subfield within psychology called cognitive neuroscience, which has now spawned its own scientific journal, a conference, and several graduate programs around the United States. One reason for recent enthusiasm is the development of several methods that allow researchers to observe brain activity in healthy, awake subjects while they perform cognitive tasks. These (...)
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  25.  30
    Review of a mock research protocol in functional neuroimaging by Canadian research ethics boards. [REVIEW]J. de Champlain - 2006 - Journal of Medical Ethics 32 (9):530-534.
    Objective: To examine how research ethics boards review research projects in emerging disciplines such as functional neuroimaging.Design: To compare the criteria applied and the decisions reached by REBs that reviewed the same mock research protocol in functional neuroimaging.Participants: 44 Canadian biomedical REBs, mostly working in public university or hospital settings.Main measurements: The mock research protocol “The Neurobiology of Social Behavior” included several ethical issues operating at all three levels: personal, institutional and social. Data consisting (...)
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  26.  94
    A Systematic Review of MRI Neuroimaging for Education Research.Ching-Lin Wu, Tzung-Jin Lin, Guo-Li Chiou, Chia-Ying Lee, Hui Luan, Meng-Jung Tsai, Patrice Potvin & Chin-Chung Tsai - 2021 - Frontiers in Psychology 12.
    This study aims to disclose how the magnetic resonance imaging neuroimaging approach has been applied in education studies, and what kind of learning themes has been investigated in the reviewed MRI neuroimaging research. Based on the keywords “brain or neuroimaging or neuroscience” and “MRI or diffusion tensor imaging or white matter or gray matter or resting-state,” a total of 25 papers were selected from the subject areas “Educational Psychology” and “Education and Educational Research” from the (...)
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  27. Neuroimaging in psychiatry: Evaluating the ethical consequences for patient care.Alison C. Boyce - 2009 - Bioethics 23 (6):349-359.
    According to many researchers, it is inevitable and obvious that psychiatric illnesses are biological in nature, and that this is the rationale behind the numerous neuroimaging studies of individuals diagnosed with mental disorders. Scholars looking at the history of psychiatry have pointed out that in the past, the origins and motivations behind the search for biological causes, correlates, and cures for mental disorders are thoroughly social and historically rooted, particularly when the diagnostic category in question is the subject of (...)
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  28.  53
    Disclosing neuroimaging incidental findings: a qualitative thematic analysis of health literacy challenges.Caitlin E. Rancher, Jody M. Shoemaker, Linda E. Petree, Mark Holdsworth, John P. Phillips & Deborah L. Helitzer - 2016 - BMC Medical Ethics 17 (1):58.
    BackgroundReturning neuroimaging incidental findings may create a challenge to research participants’ health literacy skills as they must interpret and make appropriate healthcare decisions based on complex radiology jargon. Disclosing IF can therefore present difficulties for participants, research institutions and the healthcare system. The purpose of this study was to identify the extent of the health literacy challenges encountered when returning neuroimaging IF. We report on findings from a retrospective survey and focus group sessions with major stakeholders (...)
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  29.  37
    Evidence in Neuroimaging: Towards a Philosophy of Data Analysis.Jessey Wright - 2017 - Dissertation, The University of Western Ontario
    Neuroimaging technology is the most widely used tool to study human cognition. While originally a promising tool for mapping the content of cognitive theories onto the structures of the brain, recently developed tools for the analysis, handling and sharing of data have changed the theoretical landscape of cognitive neuroscience. Even with these advancements philosophical analyses of evidence in neuroimaging remain skeptical of the promise of neuroimaging technology. These views often treat the analysis techniques used to make sense (...)
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  30.  16
    Neuroimaging Studies Illustrate the Commonalities Between Ageing and Brain Diseases.James H. Cole - 2018 - Bioessays 40 (7):1700221.
    The lack of specificity in neuroimaging studies of neurological and psychiatric diseases suggests that these different diseases have more in common than is generally considered. Potentially, features that are secondary effects of different pathological processes may share common neurobiological underpinnings. Intriguingly, many of these mechanisms are also observed in studies of normal (i.e., non‐pathological) brain ageing. Different brain diseases may be causing premature or accelerated ageing to the brain, an idea that is supported by a line of “brain ageing” (...)
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  31.  58
    Functional neuroimaging and the law: Trends and directions for future scholarship.Stacey A. Tovino - 2007 - American Journal of Bioethics 7 (9):44 – 56.
    Under the umbrella of the burgeoning neurotransdisciplines, scholars are using the principles and research methodologies of their primary and secondary fields to examine developments in neuroimaging, neuromodulation and psychopharmacology. The path for advanced scholarship at the intersection of law and neuroscience may clear if work across the disciplines is collected and reviewed and outstanding and debated issues are identified and clarified. In this article, I organize, examine and refine a narrow class of the burgeoning neurotransdiscipline scholarship; that is, (...)
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  32.  22
    Ethical and Clinical Considerations at the Intersection of Functional Neuroimaging and Disorders of Consciousness.Adrian C. Byram, Grace Lee, Adrian M. Owen, Urs Ribary, A. Jon Stoessl, Andrea Townson & Judy Illes - 2016 - Cambridge Quarterly of Healthcare Ethics 25 (4):613-622.
    :Recent neuroimaging research on disorders of consciousness provides direct evidence of covert consciousness otherwise not detected clinically in a subset of severely brain-injured patients. These findings have motivated strategic development of binary communication paradigms, from which researchers interpret voluntary modulations in brain activity to glean information about patients’ residual cognitive functions and emotions. The discovery of such responsiveness raises ethical and legal issues concerning the exercise of autonomy and capacity for decisionmaking on matters such as healthcare, involvement in (...)
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  33. Are neuroimages like photographs of the brain?Adina L. Roskies - 2007 - Philosophy of Science 74 (5):860-872.
    Images come in many varieties, but for evidential purposes, photographs are privileged. Recent advances in neuroimaging provide us with a new type of image that is used as scientific evidence. Brain images are epistemically compelling, in part because they are liable to be viewed as akin to photographs of brain activity. Here I consider features of photography that underlie the evidential status we accord it, and argue that neuroimaging diverges from photography in ways that seriously undermine the photographic (...)
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  34.  49
    Neuroimaging techniques for memory detection: Scientific, ethical, and legal issues.Daniel V. Meegan - 2008 - American Journal of Bioethics 8 (1):9 – 20.
    There is considerable interest in the use of neuroimaging techniques for forensic purposes. Memory detection techniques, including the well-publicized Brain Fingerprinting technique (Brain Fingerprinting Laboratories, Inc., Seattle WA), exploit the fact that the brain responds differently to sensory stimuli to which it has been exposed before. When a stimulus is specifically associated with a crime, the resulting brain activity should differentiate between someone who was present at the crime and someone who was not. This article reviews the scientific literature (...)
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  35.  17
    Caregiver reactions to neuroimaging evidence of covert consciousness in patients with severe brain injury: a qualitative interview study.Charles Weijer, Adrian M. Owen, Sarah Munce, Laura Elizabeth Gonzalez-Lara, Fiona Webster & Andrew Peterson - 2021 - BMC Medical Ethics 22 (1):1-13.
    BackgroundSevere brain injury is a leading cause of death and disability. Diagnosis and prognostication are difficult, and errors occur often. Novel neuroimaging methods can improve diagnostic and prognostic accuracy, especially in patients with prolonged disorders of consciousness (PDoC). Yet it is currently unknown how family caregivers understand this information, raising ethical concerns that disclosure of neuroimaging results could result in therapeutic misconception or false hope.MethodsTo examine these ethical concerns, we conducted semi-structured interviews with caregivers of patients with PDoC (...)
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  36.  9
    Neuroimaging and Psychiatry: The Long Road from Bench to Bedside.Helen S. Mayberg - 2014 - Hastings Center Report 44 (s2):31-36.
    Advances in neuroscience have revolutionized our understanding of the central nervous system. Neuroimaging technologies, in particular, have begun to reveal the complex anatomical, physiological, biochemical, genetic, and molecular organizational structure of the organ at the center of that system: the human brain. More recently, neuroimaging technologies have enabled the investigation of normal brain function and are being used to gain important new insights into the mechanisms behind many neuropsychiatric disorders. This research has implications for psychiatric diagnosis, treatment, (...)
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  37.  50
    Ethical and Legal Implications of the Methodological Crisis in Neuroimaging.Philipp Kellmeyer - 2017 - Cambridge Quarterly of Healthcare Ethics 26 (4):530-554.
    Currently, many scientific fields such as psychology or biomedicine face a methodological crisis concerning the reproducibility, replicability, and validity of their research. In neuroimaging, similar methodological concerns have taken hold of the field, and researchers are working frantically toward finding solutions for the methodological problems specific to neuroimaging. This article examines some ethical and legal implications of this methodological crisis in neuroimaging. With respect to ethical challenges, the article discusses the impact of flawed methods in (...) research in cognitive and clinical neuroscience, particularly with respect to faulty brain-based models of human cognition, behavior, and personality. Specifically examined is whether such faulty models, when they are applied to neurological or psychiatric diseases, could put patients at risk, and whether this places special obligations on researchers using neuroimaging. In the legal domain, the actual use of neuroimaging as evidence in United States courtrooms is surveyed, followed by an examination of ways that the methodological problems may create challenges for the criminal justice system. Finally, the article reviews and promotes some promising ideas and initiatives from within the neuroimaging community for addressing the methodological problems. (shrink)
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  38.  21
    Neuroimaging: Beginning to Appreciate Its Complexities.Erik Parens & Josephine Johnston - 2014 - Hastings Center Report 44 (s2):2-7.
    For over a century, scientists have sought to see through the protective shield of the human skull and into the living brain. Today, an array of technologies allows researchers and clinicians to create astonishingly detailed images of our brain's structure as well as colorful depictions of the electrical and physiological changes that occur within it when we see, hear, think and feel. These technologies—and the images they generate—are an increasingly important tool in medicine and science.Given the role that neuroimaging (...)
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  39.  5
    Neuroimaging and DNA Methylation: An Innovative Approach to Study the Effects of Early Life Stress on Developmental Plasticity.Isabella Lucia Chiara Mariani Wigley, Eleonora Mascheroni, Denis Peruzzo, Roberto Giorda, Sabrina Bonichini & Rosario Montirosso - 2021 - Frontiers in Psychology 12.
    DNA methylation plays a key role in neural cell fate and provides a molecular link between early life stress and later-life behavioral phenotypes. Here, studies that combine neuroimaging methods and DNA methylation analysis in pediatric population with a history of adverse experiences were systematically reviewed focusing on: targeted genes and neural correlates; statistical models used to examine the link between DNA methylation and neuroimaging data also considering early life stress and behavioral outcomes. We identified 8 studies that report (...)
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  40.  96
    Neuroimaging, Uncertainty, and the Problem of Dispositions.Gardar Árnason - 2010 - Cambridge Quarterly of Healthcare Ethics 19 (2):188.
    Brain research in neuroscience and related fields is changing our understanding of the brain and its relation to the mind and to human behavior, giving a new impetus to the problem of free will and moral responsibility. The reactions have covered the entire range, from claims to the effect that neuroscientific research is showing that our folkrnason, Ph.D., is Postdoctoral Research Fellow at the Department of Social and Moral Philosophy, University of Helsinki, Finland. His research interests (...)
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  41.  13
    Harnessing Neuroimaging to Reduce Socioeconomic Disparities in Chronic Disease: A Conceptual Framework for Improving Health Messaging.Samantha N. Brosso, Paschal Sheeran, Allison J. Lazard & Keely A. Muscatell - 2021 - Frontiers in Human Neuroscience 15.
    Socioeconomic status -related health disparities persist for numerous chronic diseases, with lower-SES individuals exhibiting greater risk of morbidity and mortality compared to their higher-SES counterparts. One likely contributor is disparities in health messaging efforts, which are currently less effective for motivating health behavior change among those lower in SES. Drawing on communication neuroscience and social neuroscience research, we describe a conceptual framework to improve health messaging effectiveness in lower SES communities. The framework is based on evidence that health-message-induced activity (...)
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  42.  7
    Schizophrenia: From Neuroimaging to Neuroscience.Stephen Lawrie, Eve Johnstone & Daniel Weinberger (eds.) - 2004 - Oxford University Press UK.
    Neuroimaging techniques have made a huge contribution to our understanding of schizophrenia and other neuropsychiatric disorders. Until now however, texts on both schizophrenia and neuroimaging have paid little attention to the overlap between these areas. This new volume is the first dedicated to unravelling how these techniques can help us better understand this complex disorder. Each chapter focuses on a particular research method, describing the nature of the findings, the main technological problems, and future possibilities. Though including (...)
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  43.  13
    Auf der Suche nach der verlorenen Kultur: Vom Neuroimaging über Critical Neuroscience zu Cultural Neuroscience – und zurück zur Kritik.Cornelius Borck - 2018 - Berichte Zur Wissenschaftsgeschichte 41 (3):238-257.
    In Search of Lost Culture: From Neuroimaging via Critical Neuroscience to Cultural Neuroscience – and back to Critique. The availability of new technologies for visualizing brain activity generated great expectations to identify the centers responsible for human action and behavior and to “reduce” all mental processes to neuronal states. Some scientists even called society to adapt to the new insights from brain research by giving up outdated concepts of autonomy and free will. This project spurred harsh critiques from (...)
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  44.  6
    Limitations Using Neuroimaging to Reconstruct Mental State After a Crime.Michael J. Vitacco, Alynda M. Randolph, Rebecca J. Nelson Aguiar & Megan L. Porter Staats - 2021 - Cambridge Quarterly of Healthcare Ethics 30 (4):694-701.
    Neuroimaging offers great potential to clinicians and researchers for a host of mental and physical conditions. The use of imaging has been trumpeted for forensic psychiatric and psychological evaluations to allow greater insight into the relationship between the brain and behavior. The results of imaging certainly can be used to inform clinical diagnoses; however, there continue to be limitations in using neuroimaging for insanity cases due to limited scientific backing for how neuroimaging can inform retrospective evaluations of (...)
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  45.  12
    A Just Standard: The Ethical Management of Incidental Findings in Brain Imaging Research.Mackenzie Graham, Nina Hallowell & Julian Savulescu - 2021 - Journal of Law, Medicine and Ethics 49 (2):269-281.
    Neuroimaging research regularly yields “incidental findings”: observations of potential clinical significance in healthy volunteers or patients, but which are unrelated to the purpose or variables of the study.
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  46.  52
    The Sensitivity of Neuroimaging Data.Jan-Hendrik Heinrichs - 2012 - Neuroethics 5 (2):185-195.
    Abstract When new methods of generating information about individuals leave the confined space of research application the possibility of morally dubious application arises. The current propagation of neuroscientific diagnostics leads to new possibilities of misuse and accordingly new needs for the protection of individual privacy emerge. While most current privacy discussion focuses on sensationalist applications which aim/claim to gather information about psychological traits or even the content of thoughts, the more sober but much more realistic endeavour to gather health (...)
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  47. Neuroimaging studies of autobiographical event memory.Eleanor A. Maguire - 2002 - In Alan Baddeley, John Aggleton & Martin Conway (eds.), Episodic Memory: New Directions in Research : Originating from a Discussion Meeting of the Royal Society. Oxford University Press.
     
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  48.  33
    Diagnosing Consciousness: Neuroimaging, Law, and the Vegetative State.Carl E. Fisher & Paul S. Appelbaum - 2010 - Journal of Law, Medicine and Ethics 38 (2):374-385.
    Recent studies indicate that patients who are diagnosed with vegetative states may retain more awareness than their clinical assessments suggest. Disorders of consciousness traditionally have been diagnosed on the basis of outwardly observable behaviors alone, but new functional imaging studies have shown surprising levels of brain activity in some patients, indicating that even higher-level cognitive functions like language processing and visual imagery may be preserved. For example, one recently developed method purports to detect voluntary mental imagery solely on the basis (...)
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  49. Participants of the Working Meeting on Ethics, Neuroimaging and limited states of consciousness. Neuroimaging and disorders of consciousness: envisioning an ethical research agenda.Joseph J. Fins, Judy Illes, James L. Bernat, Joy Hirsch, Steven Laureys & Emily Murphy - 2008 - Am J Bioethics 8 (9):3-12.
     
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  50.  67
    Ethics of neuroimaging after serious brain injury.Charles Weijer, Andrew Peterson, Fiona Webster, Mackenzie Graham, Damian Cruse, Davinia Fernández-Espejo, Teneille Gofton, Laura E. Gonzalez-Lara, Andrea Lazosky, Lorina Naci, Loretta Norton, Kathy Speechley, Bryan Young & Adrian M. Owen - 2014 - BMC Medical Ethics 15 (1):41.
    Patient outcome after serious brain injury is highly variable. Following a period of coma, some patients recover while others progress into a vegetative state (unresponsive wakefulness syndrome) or minimally conscious state. In both cases, assessment is difficult and misdiagnosis may be as high as 43%. Recent advances in neuroimaging suggest a solution. Both functional magnetic resonance imaging and electroencephalography have been used to detect residual cognitive function in vegetative and minimally conscious patients. Neuroimaging may improve diagnosis and prognostication. (...)
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