Publications of Alexander Borst
All genres
Journal Article (208)
1999
Journal Article
2 (1), pp. 7 - 8 (1999)
Seeing smells: Imaging olfactory learning in bees. Nature Neuroscience
Journal Article
2 (11), pp. 947 - 957 (1999)
Information theory and neural coding. Nature Neuroscience
Journal Article
406 (1), pp. 51 - 71 (1999)
Spatial response properties of contralateral inhibited lobula plate tangential cells in the fly visual system. The Journal of Comparative Neurology
Journal Article
7 (3), pp. 213 - 234 (1999)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells: III. Visual response properties. Journal of Computational Neuroscience
Journal Article
274 (2), pp. 95 - 98 (1999)
Separation of voltage- and ligand-gated calcium influx in locust neurons by optical imaging. Neuroscience Letters 1998
Journal Article
18 (19), pp. 7972 - 7986 (1998)
Active membrane properties and signal encoding in graded potential neurons. The Journal of Neuroscience
Journal Article
281 (5384), pp. 1848 - 1850 (1998)
Dendritic integration and its role in computing image velocity. Science 1997
Journal Article
Wie rechnen Nervenzellen? Verarbeitung synaptischer Signale in visuellen Interneuronen der Fliege. Werkstätten der Zukunft, MPG-Sonderheft, pp. 61 - 67 (1997)
Journal Article
238 (1-2), pp. 29 - 32 (1997)
Voltage signals of individual Purkinje cell dendrites in rat cerebellar slices. Neuroscience Letters
Journal Article
383 (1), pp. 42 - 48 (1997)
γ-aminobutyric acid receptor distribution in the mushroom bodies of a fly (Calliphora erythrocephala): A functional subdivision of Kenyon cells? The Journal of Comparative Neurology
Journal Article
381 (4), pp. 489 - 499 (1997)
Synapse distribution on VCH, an inhibitory, motion-sensitive interneuron in the fly visual system. The Journal of Comparative Neurology
Journal Article
17 (12), pp. 4809 - 4819 (1997)
Encoding of visual motion information and reliability in spiking and graded potential neurons. The Journal of Neuroscience
Journal Article
4 (4), pp. 349 - 369 (1997)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells. 2. Active membrane properties. Journal of Computational Neuroscience
Journal Article
17 (16), pp. 6023 - 6030 (1997)
Dendritic computation of direction selectivity and gain control in visual interneurons. The Journal of Neuroscience 1996
Journal Article
157 (3), pp. 403 - 407 (1996)
How do nerve cells compute? Dendritic integration in fly visual interneurones. Acta Physiologica Scandinavica
Journal Article
89, pp. 109 - 122 (1996)
Dendritic processing of synaptic signals in motion-sensitive interneurons of the fly. Verhandlungen der Deutschen Zoologischen Gesellschaft
Journal Article
3 (4), pp. 313 - 336 (1996)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells. 1. Passive membrane properties. Journal of Computational Neuroscience
Journal Article
76 (3), pp. 1786 - 1799 (1996)
Cholinergic and GABAergic receptors on fly tangential cells and their role in visual motion detection. Journal of Neurophysiology
Journal Article
379 (6566), pp. 639 - 641 (1996)
Amplification of high-frequency synaptic inputs by active dendritic membrane processes. Nature 1995
Journal Article
50 (5-6), pp. 435 - 438 (1995)
Periodic Current Injection (PCI) -A new method to image steady-state membrane potential of single neurons in situ using extracellular voltage-sensitive dyes. Zeitschrift für Naturforschung, C: Journal of Biosciences
Journal Article
2 (1), pp. 5 - 18 (1995)
Mechanisms of dendritic integration underlying gain control in fly motion-sensitive interneurons. Journal of Computational Neuroscience
Journal Article
57 (1), pp. 37 - 46 (1995)
A preparation of the blowfly (Calliphora erythrocephala) brain for in vitro electrophysiological and pharmacological studies. Journal of Neuroscience Methods
Journal Article
73 (6), pp. 2540 - 2552 (1995)
Calcium accumulation in visual interneurons of the fly: Stimulus dependence and relationship to membrane potential. Journal of Neurophysiology 1994
Journal Article
17 (6), pp. 257 - 263 (1994)
Dendritic processing of synaptic information by sensory interneurons. Trends in Neurosciences
Journal Article
6 (1), pp. 205 - 208 (1994)
Processing of synaptic information depends on the structure of the dendritic tree. NeuroReport 1993
Journal Article
5 (6), pp. 856 - 868 (1993)
Two-dimensional motion perception in flies. Neural computation
Journal Article
13 (11), pp. 4563 - 4574 (1993)
A look into the cockpit of the fly: Visual orientation, algorithms, and identified neurons. The Journal of Neuroscience
Journal Article
104 (4), pp. 659 - 673 (1993)
Motion computation and visual orientation in flies. Comparative Biochemistry and Physiology A-Molecular & Integrative Physiology
Journal Article
69 (2), pp. 340 - 351 (1993)
Neural circuit tuning fly visual neurons to motion of small objects II: Input organization of inhibitory circuit elements revealed by electrophysiological and optical recording techniques. Journal of Neurophysiology
Journal Article
69 (2), pp. 329 - 339 (1993)
Neural circuit tuning fly visual interneurons to motion of small objects I: Dissection of the circuit by pharmacological and photoinactivation techniques. Journal of Neurophysiology 1992
Journal Article
89 (9), pp. 4139 - 4143 (1992)
In vivo imaging of calcium accumulation in fly interneurons as elicited by visual motion stimulation. Proceedings of the National Academy of Sciences of the United States of America
Journal Article
3, pp. 14 - 16 (1992)
Im Cockpit der Fliege. MPG-Spiegel
Journal Article
79 (5), pp. 221 - 223 (1992)
Is there a separate control system mediating a "centering response" in honeybees? Die Naturwissenschaften
Journal Article
8 (2), pp. 151 - 164 (1992)
Are there separate ON and OFF channels in fly motion vision? Visual Neuroscience
Journal Article
140 (2), pp. 173 - 176 (1992)
Dendritic integration of motion information in visual interneurons of the blowfly. Neuroscience Letters
Journal Article
141 (1), pp. 119 - 122 (1992)
Photo-ablation of single neurons in the fly visual system reveals neural circuit for the detection of small moving objects. Neuroscience Letters 1991
Journal Article
95 (3-4), pp. 305 - 313 (1991)
Fly visual interneurons responsive to image expansion. Zoologische Jahrbücher / Abteilung für Allgemeine Zoologie und Physiologie der Tiere 1990
Journal Article
20 (5), pp. 245 - 250 (1990)
Landen ohne Lotsen: Über den neuronalen Auslösemechanismus der Landereaktion von Fliegen. Biologie in unserer Zeit
Journal Article
40 (4), pp. 292 - 299 (1990)
How do flies land? From behavior to neuronal circuits. Bioscience
Journal Article
87 (23), pp. 9363 - 9367 (1990)
Direction selectivity of blowfly motion-sensitive neurons is computed in a two-stage process. Proceedings of the National Academy of Sciences of the United States of America
Journal Article
77 (8), pp. 366 - 377 (1990)
Bewegungswahrnehmung und visuelle Orientierung bei Fliegen. Die Naturwissenschaften
Journal Article
509 (1), pp. 156 - 160 (1990)
The role of GABA in detecting visual motion. Brain Research
Journal Article
262 (1), pp. 9 - 34 (1990)
Neuronal architecture of the antennal lobe in Drosophila melanogaster. Cell and Tissue Research 1989
Journal Article
76 (11), pp. 531 - 534 (1989)
Temporal processing of excitatory and inhibitory motion stimuli in the fly's landing system. Die Naturwissenschaften
Journal Article
12 (8), pp. 297 - 306 (1989)
Principles of visual motion detection. Trends in Neurosciences
Journal Article
6 (1), pp. 116 - 127 (1989)
Transient and steady-state response properties of movement detectors. Journal of the Optical Society of America A
Journal Article
76 (1), pp. 32 - 35 (1989)
The nonlinear mechanism of direction selectivity in the fly motion detection system. Die Naturwissenschaften
Journal Article
6 (7), pp. 1070 - 1087 (1989)
Computational structure of a biological motion-detection system as revealed by local detector analysis in the fly's nervous system. Journal of the Optical Society of America A 1988
Journal Article
163 (2), pp. 167 - 173 (1988)
Visual information processing in the fly's landing system. Journal of Comparative Physiology A: Neuroethology Sensory Neural and Behavioral Physiology
Journal Article
75 (5), pp. 265 - 267 (1988)
Spatio-temporal integration of motion: A simple strategy for safe landing in flies. Die Naturwissenschaften