TY - GEN
T1 - Development of an interactive teaching system based on motion synchrony between physical and virtual models
AU - Fineberg, David A.
AU - Kesavadas, T.
AU - Pape, Dave
PY - 2003
Y1 - 2003
N2 - In advancing our capabilities in the realm of virtual reality, the development of haptic technology has been a rate-limiting factor in producing tactile sensations directly onto the human hands. The Living Anatomy Program seeks to obviate the need for such technology by designing physical objects based on anatomic components that feel realistic to the touch. Furthermore, synchronizing motion between physical and related virtual objects infinitely expands visual design options and provides a profound level of immersion into content.
AB - In advancing our capabilities in the realm of virtual reality, the development of haptic technology has been a rate-limiting factor in producing tactile sensations directly onto the human hands. The Living Anatomy Program seeks to obviate the need for such technology by designing physical objects based on anatomic components that feel realistic to the touch. Furthermore, synchronizing motion between physical and related virtual objects infinitely expands visual design options and provides a profound level of immersion into content.
UR - https://www.scopus.com/pages/publications/6344238795
U2 - 10.3233/978-1-60750-938-7-79
DO - 10.3233/978-1-60750-938-7-79
M3 - Conference contribution
C2 - 2004166356
AN - SCOPUS:6344238795
SN - 1586033204
SN - 9781586033200
T3 - Studies in Health Technology and Informatics
SP - 79
EP - 85
BT - Medicine Meets Virtual Reality 11 - NextMed
PB - IOS Press
T2 - 11th Annual Medicine Meets Virtual Reality Conference, MMVR 2003
Y2 - 22 January 2003 through 25 January 2003
ER -