Biomedical Engineering Reference
In-Depth Information
detectability of moving spatial white noise. Brain Res., 45: 179-188.
[88] van Doorn A.J., and Koenderink J.J. (1982b) Spatial properties of the visual
detectability of moving spatial white noise. Brain Res., 45: 189-195.
[89] van Santen J.P.H., and Sperling G. (1984) Temporal covariance model of hu-
man motion perception. J. Opt. Soc. Am. A, 1: 451-473.
[90] van Santen J.P.H., and Sperling G. (1985) Elaborated Reichardt detectors. J.
Opt. Soc. Am. A, 2: 300-320.
[91] Wagner H. (1986a) Flight performance and visual control of flight of the free-
flying housefly ( Musca domestica ). I: Organization of the flight motor. Phil.
Trans. R. Soc. Lond. B, 312: 527-551.
[92] Wagner H. (1986b) Flight performance and visual control of flight of the free-
flying housefly (Musca domestica) . II: Pursuit of targets. Phil. Trans. R. Soc.
Lond. B., 312: 553-579.
[93] Wagner H. (1986c) Flight performance and visual control of flight of the free-
flying housefly (Musca domestica) . III: Interactions between angular move-
ment induced by wide-and smallfield stimuli. Phil. Trans. R. Soc. Lond. B,
312: 581-595.
[94] Warzecha K., and Egelhaaf M. (1996) Intrinsic properties of biological motion
detectors prevent the optomotor control system from getting unstable. Phil.
Trans. R. Soc. Lond. B, 351: 1579-1591.
[95] Warzecha A.K., Egelhaaf M., and Borst A. (1993) Neural circuit tuning fly
visual interneurons to motion of small objects. I. Dissection of the circuit by
pharmacological and photo-inactivation techniques. J. Neurophysiol., 69: 329-
339.
[96] Wilson H.R. (1985) A model for direction selectivity in threshold motion per-
ception. Biol. Cybern., 51: 213-222.
[97] Zanker J.M. (1990) On the directional sensitivity of motion detectors. Biol.
Cybern., 62: 177-183.
Search WWH ::




Custom Search