13 found
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  1.  71
    Exploring the Illusion of Free Will and Moral Responsibility.Susan Blackmore, Thomas W. Clark, Mark Hallett, John-Dylan Haynes, Ted Honderich, Neil Levy, Thomas Nadelhoffer, Shaun Nichols, Michael Pauen, Derk Pereboom, Susan Pockett, Maureen Sie, Saul Smilansky, Galen Strawson, Daniela Goya Tocchetto, Manuel Vargas, Benjamin Vilhauer & Bruce Waller - 2013 - Lexington Books.
    Exploring the Illusion of Free Will and Moral Responsibility is an edited collection of new essays by an internationally recognized line-up of contributors. It is aimed at readers who wish to explore the philosophical and scientific arguments for free will skepticism and their implications.
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  2.  40
    Modulation of functionally localized right insular cortex activity using real-time fMRI-based neurofeedback.Brian D. Berman, Silvina G. Horovitz & Mark Hallett - 2013 - Frontiers in Human Neuroscience 7.
  3.  31
    Cerebellum and processing of negative facial emotions: Cerebellar transcranial DC stimulation specifically enhances the emotional recognition of facial anger and sadness.Roberta Ferrucci, Gaia Giannicola, Manuela Rosa, Manuela Fumagalli, Paulo Sergio Boggio, Mark Hallett, Stefano Zago & Alberto Priori - 2012 - Cognition and Emotion 26 (5):786-799.
  4.  35
    Decreased Modulation of EEG Oscillations in High-Functioning Autism during a Motor Control Task.Joshua B. Ewen, Balaji M. Lakshmanan, Ajay S. Pillai, Danielle McAuliffe, Carrie Nettles, Mark Hallett, Nathan E. Crone & Stewart H. Mostofsky - 2016 - Frontiers in Human Neuroscience 10:187244.
    Autism spectrum disorders (ASD) are thought to result in part from altered cortical excitatory-inhibitory balance; this pathophysiology may impact the generation of oscillations on EEG. We investigated premotor-parietal cortical physiology associated with praxis, which has strong theoretical and empirical associations with ASD symptomatology. 25 children with high-functioning ASD (HFA) and 33 controls performed a praxis task involving the pantomiming of tool use, while EEG was recorded. We assessed task-related modulation of signal power in alpha and beta frequency bands. Compared with (...)
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  5.  20
    Volition: How Physiology Speaks to the Issue of Responsibility.Mark Hallett - 2010 - In Walter Sinnott-Armstrong & Lynn Nadel (eds.), Conscious Will and Responsibility: A Tribute to Benjamin Libet. New York: Oup Usa. pp. 61.
  6.  35
    Involvement of primary motor cortex in motor imagery and mental practice.Mark Hallett, Jordan Fieldman, Leonardo G. Cohen, Norihiro Sadato & Alvaro Pascual-Leone - 1994 - Behavioral and Brain Sciences 17 (2):210-210.
  7.  34
    Practicing Novel, Praxis-Like Movements: Physiological Effects of Repetition.Joshua B. Ewen, Ajay S. Pillai, Danielle McAuliffe, Balaji M. Lakshmanan, Katarina Ament, Mark Hallett, Nathan E. Crone & Stewart H. Mostofsky - 2016 - Frontiers in Human Neuroscience 10:171622.
    Our primary goal was to develop and validate a task that could provide evidence about how humans learn praxis gestures, such as those involving the use of tools. To that end, we created a video-based task in which subjects view a model performing novel, meaningless one-handed actions with kinematics similar to praxis gestures. Subjects then imitated the movements with their right hand. Trials were repeated 6 times to examine practice effects. EEG was recorded during the task. As a control, subjects (...)
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  8.  20
    Experiment and reality.Mark Hallett - 1989 - Behavioral and Brain Sciences 12 (2):219-219.
  9.  14
    Physiology of Volition.Mark Hallett - 2009 - In Nancey Murphy, George Ellis & Timothy O'Connor (eds.), Downward Causation and the Neurobiology of Free Will. Springer Verlag. pp. 127--143.
  10.  24
    The role of the cerebellum in motor learning is limited.Mark Hallett - 1996 - Behavioral and Brain Sciences 19 (3):453.
  11.  13
    What Does the Brain Know and When Does It Know It?Mark Hallett - 2013 - In Gregg D. Caruso (ed.), Exploring the Illusion of Free Will and Moral Responsibility. Lanham, MD: Lexington Books. pp. 255.
  12.  58
    Amodal imagery in rostral premotor areas.Takashi Hanakawa, Manabu Honda & Mark Hallett - 2004 - Behavioral and Brain Sciences 27 (3):406-407.
    Inspired by Rick Grush's emulation theory, we reinterpreted a series of our neuroimaging experiments which were intended to examine the representations of complex movement, modality-specific imagery, and supramodal imagery. The emulation theory can explain motor and cognitive activities observed in cortical motor areas, through the speculation that caudal areas relate to motor-specific imagery and rostral areas embrace an emulator for amodal imagery.
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  13.  25
    Parkinson’s Disease Motor Subtypes Show Different Responses to Long-Term Subthalamic Nucleus Stimulation.Cuiping Xu, Ping Zhuang, Mark Hallett, Yuqing Zhang, Jianyu Li & Yongjie Li - 2018 - Frontiers in Human Neuroscience 12.