• DocumentCode
    739195
  • Title

    Predicting Successful Tactile Mapping of Virtual Objects

  • Author

    Brayda, L. ; Campus, C. ; Gori, Marco

  • Author_Institution
    Dept. of Robot., Brain & Cognitive Sci., Fondazione Ist. Italiano di Tecnol., Genoa, Italy
  • Volume
    6
  • Issue
    4
  • fYear
    2013
  • Firstpage
    473
  • Lastpage
    483
  • Abstract
    Improving spatial ability of blind and visually impaired people is the main target of orientation and mobility (O&M) programs. In this study, we use a minimalistic mouse-shaped haptic device to show a new approach aimed at evaluating devices providing tactile representations of virtual objects. We consider psychophysical, behavioral, and subjective parameters to clarify under which circumstances mental representations of spaces (cognitive maps) can be efficiently constructed with touch by blindfolded sighted subjects. We study two complementary processes that determine map construction: low-level perception (in a passive stimulation task) and high-level information integration (in an active exploration task). We show that jointly considering a behavioral measure of information acquisition and a subjective measure of cognitive load can give an accurate prediction and a practical interpretation of mapping performance. Our simple TActile MOuse (TAMO) uses haptics to assess spatial ability: this may help individuals who are blind or visually impaired to be better evaluated by O&M practitioners or to evaluate their own performance.
  • Keywords
    handicapped aids; haptic interfaces; O&M; TAMO; behavioral parameters; blind people; blindfolded sighted subjects; high-level information integration; information acquisition; low-level perception; map construction; mental space representations; minimalistic mouse-shaped haptic device; orientation and mobility programs; psychophysical parameters; spatial ability; subjective parameters; successful tactile mapping prediction; tactile mouse; tactile representations; virtual objects; visually impaired people; Analysis of variance; Complexity theory; Haptic interfaces; Linear regression; Performance evaluation; Tactile sensors; Virtual systems; Cognition; assistive technologies for persons with disabilities; evaluation/methodology; human performance;
  • fLanguage
    English
  • Journal_Title
    Haptics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1939-1412
  • Type

    jour

  • DOI
    10.1109/TOH.2013.49
  • Filename
    6612618