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2014 | 9 | 1 | 177-182
Tytuł artykułu

Integrated IT environment for people with disabilities: a new concept

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article evaluates the authors’ own concept of integrated IT environments for people with disabilities. Increasing numbers of disabled people and elderly people are affected by shortages of medical specialists and limited funding for medical care. Integrated IT environments for people with disabilities - through integration of various technical and medical solutions into one flexible system - are one way to provide increased independence and improved quality of life for disabled, elderly and severely ill people. The aim of this paper is to assess the extent to which the available possibilities in this area are being utilized, including the authors’ own concept. The implications of technological developments are discussed to lay the groundwork for further research.
Wydawca

Czasopismo
Rocznik
Tom
9
Numer
1
Strony
177-182
Opis fizyczny
Daty
wydano
2014-02-01
online
2014-02-04
Twórcy
  • Rehabilitation Clinic, The 10th Military Clinical Hospital with Polyclinic, Bydgoszcz, Poland, e.mikolajewska@wp.pl
Bibliografia
  • [1] Vanderheiden G. C. Universal design and assistive technology in communication and information technologies: alternatives or complements? Assist. Technol., 1998, 10, 29–36 http://dx.doi.org/10.1080/10400435.1998.10131958[Crossref]
  • [2] Story M. F. Maximizing usability: the principles of universal design. Assist. Technol., 1998, 10, 4–12. http://dx.doi.org/10.1080/10400435.1998.10131955[Crossref]
  • [3] Pattison M., McQuaid H., Wilcox A. Incorporating human factors in product design and development. Med. Device Technol., 2007, 18, 32–33
  • [4] Mikołajewska E. Eclectic approach as the natural way of development in neurological rehabilitation of adults. Int J Disabil Hum Dev., 2012, doi: 10.1515/ ijdhd-2012-0103 [Crossref]
  • [5] Nisbet P. Integrating assistive technologies: current practices and future possibilities. Med. Eng. Phys., 1996, 18, 193–202 http://dx.doi.org/10.1016/1350-4533(95)00068-2[Crossref]
  • [6] Ding D., Cooper R. A., Kaminski B. A., et al. Integrated control and related technology of assistive devices. Assist. Technol., 2003, 15, 89–97 http://dx.doi.org/10.1080/10400435.2003.10131892[Crossref]
  • [7] Hammel J. Technology and the environment: supportive resource or barrier for people with developmental disabilities? Nurs. Clin. North Am., 2003, 38, 331–349 http://dx.doi.org/10.1016/S0029-6465(02)00053-1[Crossref]
  • [8] Zickler C., Riccio A., Leotta F., et al. A brain-computer interface as input channel for a standard assistive technology software. Clin. EEG Neurosci., 2011, 42, 236–244 http://dx.doi.org/10.1177/155005941104200409[Crossref]
  • [9] Lin W., Pierce A., Skalsky A. J., McDonald C. M. Mobility-assistive technology in progressive neuromuscular disease. Phys. Med. Rehabil. Clin. N. Am., 2012, 23, 885–894 http://dx.doi.org/10.1016/j.pmr.2012.08.007[Crossref]
  • [10] Dias M. S., Pires C. G., Pinto F. M., Teixeira V. D., Freitas J. Multimodal user interfaces to improve social integration of elderly and mobility impaired. Stud. Health Technol. Inform., 2012, 177, 14–25
  • [11] Wise P. H. Emerging technologies and their impact on disability. Future Child., 2012, 22, 169–191 http://dx.doi.org/10.1353/foc.2012.0002[Crossref]
  • [12] Mikołajewska E., Mikołajewski D. Wheelchairs development from the perspective of physical therapists and biomedical engineers. Adv. Clin. Exp. Med., 2010, 19, 771–776
  • [13] Mikołajewska E., Mikołajewski D. Exoskeletons in neurological diseases - current and potential future applications. Adv. Clin. Exp. Med., 2011, 20, 227–233
  • [14] Mikołajewska E., Mikołajewski D. E-learning in the education of people with disabilities. Adv. Clin. Exp. Med., 2011, 20, 103–109
  • [15] Mikołajewska E., Mikołajewski D. Neuroprostheses for increasing disabled patients’ mobility and control. Adv. Clin. Exp. Med., 2012, 21, 263–272 [PubMed]
  • [16] Warvick K. I, cyborg. Champaign: University of Illinois Press, 2004
  • [17] Liberati G., Birbaumer N. Using brain-computer interfaces to overcome the extinction of goaldirected thinking in minimally conscious state patients. Cogn. Process., 2012, 13, S239–241 http://dx.doi.org/10.1007/s10339-012-0497-1[Crossref]
  • [18] Mikołajewska, E., Mikołajewski, D. (2011c) Exoskeletons within contemporary integrated environments (article in Polish, abstract in English available). Scientific Periodicals of the Land Forces Academy, 2011, 162, 246–253
  • [19] van den Brand, R., Heutschi, J., Barraud, Q., et al. Restoring voluntary control of locomotion after paralyzing spinal cord injury. Science, 2012, 336, 1182–1185 http://dx.doi.org/10.1126/science.1217416[Crossref][WoS]
  • [20] Dominici, N., Keller, U., Vallery, H., et al. Versatile robotic interface to evaluate, enable and train locomotion and balance after neuromotor disorders. Nat. Med., 2012, 18, 1142–1147 http://dx.doi.org/10.1038/nm.2845[WoS][Crossref]
  • [21] Sacchet, M. D., Mellinger, J., Sitaram, R., Braun, C., Birbaumer, N., Fetz, E. Volitional control of neuromagnetic coherence. Front Neurosci., 2012, 6, 189 http://dx.doi.org/10.3389/fnins.2012.00189[Crossref]
  • [22] Wang, J., Zhou, L. Research on magnetoencephalography-brain computer interface based on the PCA and LDA data reduction. Sheng Wu Yi Xue Gong Cheng Xue Za Zhi., 2011, 28(6), 1069–1074 [PubMed]
  • [23] Cook, A., Hussey, S. Assistive technologies: principles and practice. St. Louis: Mosby, 1995
  • [24] Elsaesser L. J., Bauer S. Integrating medical, assistive, and universal design products and technologies: Assistive Technology Service Method (ATSM). Disabil. Rehabil. Assist. Technol., 2012, 7, 282–286 http://dx.doi.org/10.3109/17483107.2011.635331
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.-psjd-doi-10_2478_s11536-013-0254-6
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