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  1. Critiquing the Concept of BCI Illiteracy.Margaret C. Thompson - 2019 - Science and Engineering Ethics 25 (4):1217-1233.
    Brain–computer interfaces are a form of technology that read a user’s neural signals to perform a task, often with the aim of inferring user intention. They demonstrate potential in a wide range of clinical, commercial, and personal applications. But BCIs are not always simple to operate, and even with training some BCI users do not operate their systems as intended. Many researchers have described this phenomenon as “BCI illiteracy,” and a body of research has emerged aiming to characterize, predict, and (...)
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  • Does Motor Simulation Theory Explain the Cognitive Mechanisms Underlying Motor Imagery? A Critical Review.Helen O’Shea & Aidan Moran - 2017 - Frontiers in Human Neuroscience 11.
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  • Breathing is coupled with voluntary initiation of mental imagery.Timothy J. Lane - 2022 - NeuroImage 264.
    Previous research has suggested that bodily signals from internal organs are associated with diverse cortical and subcortical processes involved in sensory-motor functions, beyond homeostatic reflexes. For instance, a recent study demonstrated that the preparation and execution of voluntary actions, as well as its underlying neural activity, are coupled with the breathing cycle. In the current study, we investigated whether such breathing-action coupling is limited to voluntary motor action or whether it is also present for mental actions not involving any overt (...)
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  • Effects of user mental state on EEG-BCI performance.Andrew Myrden & Tom Chau - 2015 - Frontiers in Human Neuroscience 9.
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  • Exploring manual asymmetries during grasping: a dynamic causal modeling approach.Chiara Begliomini, Luisa Sartori, Diego Miotto, Roberto Stramare, Raffaella Motta & Umberto Castiello - 2015 - Frontiers in Psychology 6.
    Recording of neural activity during grasping actions in macaques showed that grasp-related sensorimotor transformations are accomplished in a circuit constituted by the anterior part of the intraparietal sulcus (AIP), the ventral (F5) and the dorsal (F2) region of the premotor area. In humans, neuroimaging studies have revealed the existence of a similar circuit, involving the putative homolog of macaque areas AIP, F5, and F2. These studies have mainly considered grasping movements performed with the right dominant hand and only a few (...)
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  • User’s Self-Prediction of Performance in Motor Imagery Brain–Computer Interface.Minkyu Ahn, Hohyun Cho, Sangtae Ahn & Sung C. Jun - 2018 - Frontiers in Human Neuroscience 12.
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