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  1. Embodiment Comfort Levels During Motor Imagery Training Combined With Immersive Virtual Reality in a Spinal Cord Injury Patient.Carla Pais-Vieira, Pedro Gaspar, Demétrio Matos, Leonor Palminha Alves, Bárbara Moreira da Cruz, Maria João Azevedo, Miguel Gago, Tânia Poleri, André Perrotta & Miguel Pais-Vieira - 2022 - Frontiers in Human Neuroscience 16.
    Brain–machine interfaces combining visual, auditory, and tactile feedback have been previously used to generate embodiment experiences during spinal cord injury rehabilitation. It is not known if adding temperature to these modalities can result in discomfort with embodiment experiences. Here, comfort levels with the embodiment experiences were investigated in an intervention that required a chronic pain SCI patient to generate lower limb motor imagery commands in an immersive environment combining visual, auditory, tactile, and thermal feedback. Assessments were made pre-/ post-, throughout (...)
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  • Vividness of Visual Imagery and Personality Impact Motor-Imagery Brain Computer Interfaces.Nikki Leeuwis, Alissa Paas & Maryam Alimardani - 2021 - Frontiers in Human Neuroscience 15.
    Brain-computer interfaces are communication bridges between a human brain and external world, enabling humans to interact with their environment without muscle intervention. Their functionality, therefore, depends on both the BCI system and the cognitive capacities of the user. Motor-imagery BCIs rely on the users’ mental imagination of body movements. However, not all users have the ability to sufficiently modulate their brain activity for control of a MI-BCI; a problem known as BCI illiteracy or inefficiency. The underlying mechanism of this phenomenon (...)
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