TY - GEN
T1 - Biometric authentication via oculomotor plant characteristics
AU - Komogortsev, Oleg V.
AU - Karpov, Alex
AU - Price, Larry R.
AU - Aragon, Cecilia
PY - 2012
Y1 - 2012
N2 - A novel biometrics approach that performs authentication via the internal non-visible anatomical structure of an individual human eye is proposed and evaluated. To provide authentication, the proposed method estimates the anatomical characteristics of the oculomotor plant (comprising the eye globe, its muscles and the brain's control signals). The estimation of the oculomotor plant characteristics (OPC) is achieved by analyzing the recorded eye movement trajectories via a 2D linear homeomorphic mathematical representation of the oculomotor plant. The derived OPC allow authentication via various statistical methods and information fusion techniques. The proposed authentication method yielded Half Total Error Rate of 19% for a pool of 59 recorded subjects in the best case. The OPC biometric authentication has high counterfeit resistance potential, because it includes both behavioral and physiological human attributes that are hard to reproduce.
AB - A novel biometrics approach that performs authentication via the internal non-visible anatomical structure of an individual human eye is proposed and evaluated. To provide authentication, the proposed method estimates the anatomical characteristics of the oculomotor plant (comprising the eye globe, its muscles and the brain's control signals). The estimation of the oculomotor plant characteristics (OPC) is achieved by analyzing the recorded eye movement trajectories via a 2D linear homeomorphic mathematical representation of the oculomotor plant. The derived OPC allow authentication via various statistical methods and information fusion techniques. The proposed authentication method yielded Half Total Error Rate of 19% for a pool of 59 recorded subjects in the best case. The OPC biometric authentication has high counterfeit resistance potential, because it includes both behavioral and physiological human attributes that are hard to reproduce.
UR - https://www.scopus.com/pages/publications/84866782381
UR - https://www.scopus.com/pages/publications/84866782381#tab=citedBy
U2 - 10.1109/ICB.2012.6199786
DO - 10.1109/ICB.2012.6199786
M3 - Conference contribution
AN - SCOPUS:84866782381
SN - 9781467303941
T3 - Proceedings - 2012 5th IAPR International Conference on Biometrics, ICB 2012
SP - 413
EP - 420
BT - Proceedings - 2012 5th IAPR International Conference on Biometrics, ICB 2012
T2 - 2012 5th IAPR International Conference on Biometrics, ICB 2012
Y2 - 29 March 2012 through 1 April 2012
ER -