Title :
Learning prosthetic vision: a virtual-reality study
Author :
Chen, Spencer C. ; Hallum, Luke E. ; Lovell, Nigel H. ; Suaning, Gregg J.
Author_Institution :
Graduate Sch. of Biomed. Eng., Univ. of New South Wales, Sydney, NSW, Australia
Abstract :
Acceptance of prosthetic vision will be heavily dependent on the ability of recipients to form useful information from such vision. Training strategies to accelerate learning and maximize visual comprehension would need to be designed in the light of the factors affecting human learning under prosthetic vision. Some of these potential factors were examined in a visual acuity study using the Landolt C optotype under virtual-reality simulation of prosthetic vision. Fifteen normally sighted subjects were tested for 10-20 sessions. Potential learning factors were tested at p<0.05 with regression models. Learning was most evident across-sessions, though 17% of sessions did express significant within-session trends. Learning was highly concentrated toward a critical range of optotype sizes, and subjects were less capable in identifying the closed optotype (a Landolt C with no gap, forming a closed annulus). Training for implant recipients should target these critical sizes and the closed optotype to extend the limit of visual comprehension. Although there was no evidence that image processing affected overall learning, subjects showed varying personal preferences.
Keywords :
neurophysiology; prosthetics; regression analysis; virtual reality; visual perception; Landolt C optotype; human learning; image processing; prosthetic vision; regression models; virtual reality; visual acuity; visual comprehension; Acceleration; Auditory system; Australia; Biomedical engineering; Clinical trials; Cochlear implants; Humans; Neural prosthesis; Prosthetics; Testing; Learning; prosthetic vision; virtual-reality; vision prosthesis; Adolescent; Adult; Artificial Intelligence; Computer Graphics; Data Display; Female; Humans; Learning; Male; Prostheses and Implants; Prosthesis Fitting; User-Computer Interface; Vision Disorders; Vision Tests; Visual Acuity; Visual Perception;
Journal_Title :
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
DOI :
10.1109/TNSRE.2005.851771