| Literature DB >> 30042671 |
Elena Navarro1, Pascual González1, Víctor López-Jaquero1, Francisco Montero1, José P Molina1, Dulce Romero-Ayuso2.
Abstract
Some people require special treatments for rehabilitating physical, cognitive or even social capabilities after an accident or degenerative illness. However, the ever-increasing costs of looking after an aging population, many of whom suffer chronic diseases, is straining the finances of healthcare systems around Europe. This situation has given rise to a great deal of attention being paid to the development of telerehabilitation (TR) systems, which have been designed to take rehabilitation beyond hospitals and care centers. In this article, we propose which features should be addressed in the development of TR systems, that is, they should consider adaptive, multisensorial, physiological and social aspects. For this aim, the research project Vi-SMARt is being conducted for evaluating whether and how different technologies, such as virtual reality (VR), multi-sensorial feedback, or telemonitoring, may be exploited for the development of the next generation of TR systems. Beyond traditional aural and visual feedback, the exploitation of haptic sense by using devices such as haptic gloves or wristbands, can provide patients with additional guidance in the rehabilitation process. For telemonitoring, Electroencephalography (EEG) devices show signs of being a promising approach, not only to monitor patients' emotions, but also to obtain neuro-feedback useful for controlling his/her interaction with the system and thus to provide a better rehabilitation experience.Entities:
Keywords: adaptive; brain-computing interfaces; fuzzy-system; multisensorial; physiological; social; telerehabilitation; virtual reality
Year: 2018 PMID: 30042671 PMCID: PMC6049338 DOI: 10.3389/fninf.2018.00043
Source DB: PubMed Journal: Front Neuroinform ISSN: 1662-5196 Impact factor: 4.081
Figure 1Vi-SMARt: adaptive, multisensorial, physiological and social.