Finding studies
Finding studies
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Lead
Amy Wagner
With
The team's research reflects an integrated clinical and research team who will characterize and implement an aggressive and innovative approach using brain-computer interface (BCI) technology for Disorders of Consciousness (DoC) evaluation, prognostication, and rehabilitation care. The work proposed strives for equity in accessing healthcare systems and technology effectively, even among vulnerable individuals with profound levels of disability due to their DoC state. The "gold-standard" for assessing cognitive capacity among patients with DoC relies on behavioral response observations and neuroimaging modalities. However, these approaches underestimate patients' capabilities. The current problem is that without other clinical data, rehabilitation teams rely solely on observable behavioral changes in patients' awareness of their environment in order to treat and improve communication. The project's challenge rests with implementing BCI focused assistive technology that identifies a unique and specific electrophysiological biomarker of cognitive and communication capacities that cannot be tapped using current clinical tools. If successful, this approach will allow clinical teams to initiate treatment and communication, avoiding therapeutic delays arising from traditional methods that require behavioral indicators needed to participate in functional communication. The P300 wave is a positive deflection in the human event-related potential. It is most commonly elicited in an "oddball" paradigm when a subject detects an occasional "target" stimulus in a regular train of standard stimuli. This project will compare standard awareness training methods used at the UPMC RI Brain Injury program with novel BCI research by using mindBEAGLE, a suite of P300 paradigms (vibrations, sound tones, and mental visualization) used for cognitive and communication assessment and treatment. European studies using the mindBEAGLE system with DoC patients reveal patients' cognitive and communication capabilities that impact current functional assessment and influence prognostication and recovery. The mindBEAGLE gives additional diagnostic data to enhance clinical neuroscience practice by showing reactions to stimuli that benefit from electroencephalogram (EEG) P300 use. However, clinical neuroscience implementation studies have not been conducted. Armed with more detailed and accurate assessments from this study, the investigators are confident that the clinical teams will be able to offer exciting rehabilitation treatments designed by UPMC RI treatment teams, patients, and families that leverage the mindBEAGLE interface for functional communication. Specifically, the EEG-based mindBEAGLE BCI suite will provide a practical platform for cognitive assessment of command following and a communication system for patients with DoC that will allow the research teams to offer more intensive, multidimensional rehabilitation treatments that meet the UPMC ideal of Life Changing Medicine.
Age
16–65
Sex
ALL
Healthy volunteers
Not accepted
