DocumentCode :
52427
Title :
Improving Brain Injury Cognitive Rehabilitation by Personalized Telerehabilitation Services: Guttmann Neuropersonal Trainer
Author :
Solana, Javier ; Caceres, Cesar ; Garcia-Molina, Alberto ; Opisso, Eloy ; Roig, Teresa ; Tormos, Jose M. ; Gomez, Edwar Jacinto
Author_Institution :
Bioeng. & Telemedicine Center, Univ. Politec. de Madrid, Madrid, Spain
Volume :
19
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
124
Lastpage :
131
Abstract :
Cognitive rehabilitation aims to remediate or alleviate the cognitive deficits appearing after an episode of acquired brain injury (ABI). The purpose of this work is to describe the telerehabilitation platform called Guttmann Neuropersonal Trainer (GNPT) which provides new strategies for cognitive rehabilitation, improving efficiency and access to treatments, and to increase knowledge generation from the process. A cognitive rehabilitation process has been modeled to design and develop the system, which allows neuropsychologists to configure and schedule rehabilitation sessions, consisting of set of personalized computerized cognitive exercises grounded on neuroscience and plasticity principles. It provides remote continuous monitoring of patient´s performance, by an asynchronous communication strategy. An automatic knowledge extraction method has been used to implement a decision support system, improving treatment customization. GNPT has been implemented in 27 rehabilitation centers and in 83 patients´ homes, facilitating the access to the treatment. In total, 1660 patients have been treated. Usability and cost analysis methodologies have been applied to measure the efficiency in real clinical environments. The usability evaluation reveals a system usability score higher than 70 for all target users. The cost efficiency study results show a relation of 1-20 compared to face-to-face rehabilitation. GNPT enables brain-damaged patients to continue and further extend rehabilitation beyond the hospital, improving the efficiency of the rehabilitation process. It allows customized therapeutic plans, providing information to further development of clinical practice guidelines.
Keywords :
biomechanics; biomedical telemetry; brain; cognition; decision support systems; feature extraction; home computing; injuries; medical computing; medical disorders; neurophysiology; patient monitoring; patient rehabilitation; patient treatment; planning; plasticity; product design; psychology; scheduling; standards; telemedicine; user interfaces; ABI; GNPT; Guttmann neuropersonal trainer; acquired brain injury; asynchronous communication strategy; automatic knowledge extraction; brain injury cognitive rehabilitation; brain-damaged patient; clinical environment efficiency measurement; clinical practice guideline development; cognitive deficit alleviation; cognitive deficit remediation; cost analysis; cost efficiency study; decision support system; face-to-face rehabilitation; knowledge generation; neuropsychology; neuroscience; patient home; patient performance monitoring; personalized computerized cognitive exercise; personalized telerehabilitation service; plasticity principle; rehabilitation center; rehabilitation efficiency; rehabilitation session configuration; rehabilitation session scheduling; remote continuous monitoring; system usability score; telerehabilitation platform; therapeutic plan customization; treatment access; treatment customization; treatment efficiency; usability analysis; Brain injuries; Data mining; Informatics; Monitoring; Schedules; Telemedicine; Usability; Cognitive science; rehabilitation; telemedicine;
fLanguage :
English
Journal_Title :
Biomedical and Health Informatics, IEEE Journal of
Publisher :
ieee
ISSN :
2168-2194
Type :
jour
DOI :
10.1109/JBHI.2014.2354537
Filename :
6891104
Link To Document :
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