Biomedical Engineering Reference
In-Depth Information
[10] Borst A., and Haag J. (1996) The intrinsic electrophysiological characteristics
of fly lobula plate tangential cells. I. Passive membrane properties. J. Compu-
tat. Neurosci., 3: 313-336.
[11] Borst A., and Single S. (2000) Local current spread in electrically compact
neurons of the fly. Neuroscience Letters, 285: 123 - 126.
[12] Borst A., Reisenman C., and Haag J. (2003) Adaptation of response transients
in fly motion vision. II. model studies Vision Res. , 43 : 1303-1322.
[13] Borst A., and Haag J. (2002) Neural networks in the cockpit of the fly. J. Comp.
Physiol., 188: 419-437.
[14] Borst A. (2002) Noise, not stimulus entropy, determines neural information
rate. J. Computat. Neurosci., 14 : 23-31.
[15] Brenner N., Bialek W., and de Ruyter van Steveninck R.R. (2000) Adaptive
rescaling maximizes information transmission. Neuron, 26: 695-702.
[16] Brotz T., and Borst A. (1996) Cholinergic and GABAergic receptors on fly
tangential cells and their role in visual motion detection. J. Neurophysiol., 76:
1786-1799.
[17] Brotz T., Gundelfinger E., and Borst A. (2001) Cholinergic and GABAergic
pathways in fly motion vision. BioMedCentral Neuroscience, 2: 1.
[18] Buchner E., Buchner S., and Buelthoff I. (1984) Deoxyglucose mapping of
nervous activity induced in Drosophila brain by visual movement. J. Comp.
Physiol. A, 155: 471-483.
[19] Buchner E. (1984) Behavioural analysis of spatial vision in insects. In Pho-
toreception and Vision in Invertebrates , M.A. Ali, (Ed.) Plenum Press: New
York, London, pp. 561-621.
[20] Cuntz H. (2000) Raeumliche Verteilung von Membranparametern in Fliegen-
neuronen: eine Simulationsstudie . Diploma Thesis, Tuebingen.
[21] Duerr V., and Egelhaaf M. (1999) In vivo calcium accumulation in presynap-
tic and postsynaptic dendrites of visual interneurons. J. of Neurophysiol., 82:
3327-3338.
[22] Eckert H. (1973) Optomotorische Untersuchungen am visuellen System der
Stubenfliege Musca domestica L. Kybernetik, 14: 1-23.
[23] Eckert H. (1980) Functional properties of the H1-neurone in the third optic
ganglion of the blowfly, Phaenicia . J. Comp. Physiol., 135: 29-39.
[24] Eckert H., and Dvorak D.R. (1983) The centrifugal horizontal cells in the lob-
ula plate of the blowfly Phaenicia sericata . J. Insect. Physiol., 29: 547-560.
[25] Egelhaaf M. (1985) On the neuronal basis of figure-ground discrimination by
relative motion in the visual system of the fly. II. Figure-Detection Cells, a new
class of visual interneurons. Biol. Cybern., 52: 195-209.
Search WWH ::




Custom Search