Publikationen von Jürgen Haag
Alle Typen
Zeitschriftenartikel (49)
2025
Zeitschriftenartikel
Columnar cholinergic neurotransmission onto T5 cells of Drosophila. Current Biology (2025)
2023
Zeitschriftenartikel
43 (14), S. 2497 - 2514 (2023)
Voltage to calcium transformation enhances direction selectivity in Drosophila T4 neurons. The Journal of Neuroscience 2020
Zeitschriftenartikel
206, S. 109 - 124 (2020)
How fly neurons compute the direction of visual motion. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 2018
Zeitschriftenartikel
7, S. 85 - 95 (2018)
Glutamate signaling in the fly visual system. iScience 2017
Zeitschriftenartikel
6, e29044 (2017)
A common directional tuning mechanism of Drosophila motion-sensing neurons in the ON and in the OFF pathway. eLife 2016
Zeitschriftenartikel
5, e17421 (2016)
Complementary mechanisms create direction selectivity in the fly. eLife 2015
Zeitschriftenartikel
201 (4), S. 411 - 426 (2015)
Complementary motion tuning in frontal nerve motor neurons of the blowfly. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 2014
Zeitschriftenartikel
200 (5), S. 359 - 370 (2014)
Subcellular mapping of dendritic activity in optic flow processing neurons. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology
Zeitschriftenartikel
24 (4), S. 385 - 392 (2014)
Neural circuit components of the Drosophila OFF motion vision pathway. Current Biology 2013
Zeitschriftenartikel
33 (8), S. 3659 - 3667 (2013)
Dendritic end inhibition in large-field visual neurons of the fly. The Journal of Neuroscience
Zeitschriftenartikel
500 (7461), S. 212 - 216 (2013)
A directional tuning map of Drosophila elementary motion detectors. Nature 2012
Zeitschriftenartikel
198 (9), S. 655 - 668 (2012)
Integration of binocular optic flow in cervical neck motor neurons of the fly. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 2011
Zeitschriftenartikel
31 (25), S. 9231 - 9237 (2011)
Flight activity alters velocity tuning of fly motion-sensitive neurons. The Journal of Neuroscience 2010
Zeitschriftenartikel
33, S. 49 - 70 (2010)
Fly motion vision. Annual Review of Neuroscience
Zeitschriftenartikel
107 (46), S. 20104 - 20109 (2010)
Central gating of fly optomotor response. Proceedings of the National Academy of Sciences of the United States of America 2009
Zeitschriftenartikel
12 (3), S. 327 - 332 (2009)
Different receptive fields in axons and dendrites underlie robust coding in motion-sensitive neurons. Nature Neuroscience
Zeitschriftenartikel
29 (47), S. 14993 - 15000 (2009)
Robust coding of ego-motion in descending neurons of the fly. The Journal of Neuroscience
Zeitschriftenartikel
195 (12), S. 1107 - 1120 (2009)
Local and global motion preferences in descending neurons of the fly. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 2008
Zeitschriftenartikel
4 (12), e1000251 (2008)
The morphological identity of insect dendrites. PLoS Computational Biology
Zeitschriftenartikel
28 (53), S. 14435 - 14442 (2008)
Electrical coupling of lobula plate tangential cells to a heterolateral motion-sensitive neuron in the fly. The Journal of Neuroscience
Zeitschriftenartikel
28 (12), S. 3131 - 3140 (2008)
Nonlinear integration of binocular optic flow by DNOVS2, a descending neuron of the fly. The Journal of Neuroscience 2007
Zeitschriftenartikel
104 (24), S. 10229 - 10233 (2007)
Robust coding of flow-field parameters by axo-axonal gap junctions between fly visual interneurons. Proceedings of the National Academy of Sciences of the United States of America
Zeitschriftenartikel
1, S. 111 - 121 (2007)
Reciprocal inhibitory connections within a neural network for rotational optic-flow processing. Frontiers in Neuroscience
Zeitschriftenartikel
27 (8), S. 1992 - 2000 (2007)
Integration of lobula plate output signals by DNOVS1, an identified premotor descending neuron. The Journal of Neuroscience 2006
Zeitschriftenartikel
9 (10), S. 1312 - 1320 (2006)
Nonlinear, binocular interactions underlying flow field selectivity of a motion-sensitive neuron. Nature Neuroscience 2005
Zeitschriftenartikel
25, 15, S. 3985 - 3993 (2005)
Sharing receptive fields with your neighbors: Tuning the vertical system cells to wide field motion. The Journal of Neuroscience
Zeitschriftenartikel
191, 10, S. 445 - 454 (2005)
Dye-coupling visualizes networks of large-field motion-sensitive neurons in the fly. Journal of Computational Physiology 2004
Zeitschriftenartikel
7 (6), S. 628 - 634 (2004)
Neural mechanism underlying complex receptive field properties of motion-sensitive interneurons. Nature Neuroscience
Zeitschriftenartikel
101 (46), S. 16333 - 16338 (2004)
Fly motion vision is based on Reichardt detectors regardless of the signal-to-noise ratio. Proceedings of the National Academy of Sciences of the United States of America 2003
Zeitschriftenartikel
43, S. 1309 - 1322 (2003)
Adaptation of response transients in fly motion vision. II: Model studies. Vision Research
Zeitschriftenartikel
100 (19), S. 11082 - 11085 (2003)
Neural image processing by dendritic networks. Proceedings of the National Academy of Sciences of the United States of America
Zeitschriftenartikel
23 (30), S. 9805 - 9811 (2003)
Input organization of multifunctional motion-sensitive neurons in the blowfly. The Journal of Neuroscience
Zeitschriftenartikel
Orientation tuning of motion-sensitive neurons shaped by vertical-horizontal network interactions. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology (189), S. 363 - 370 (2003)
Zeitschriftenartikel
43 (11), S. 1291 - 1307 (2003)
Adaptation of response transients in fly motion vision. I: Experiments. Vision Research 2002
Zeitschriftenartikel
188 (6), S. 419 - 437 (2002)
Neural networks in the cockpit of the fly. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology
Zeitschriftenartikel
22 (8), S. 3227 - 3233 (2002)
Dendro-dendritic interactions between motion-sensitive large- field neurons in the fly. The Journal of Neuroscience 2001
Zeitschriftenartikel
10 (2), S. 213 - 221 (2001)
Effects of mean firing on neural information rate. Journal of Computational Neuroscience
Zeitschriftenartikel
21 (15), S. 5685 - 5692 (2001)
Recurrent network interactions underlying flow-field selectivity of visual interneurons. The Journal of Neuroscience 2000
Zeitschriftenartikel
83 (2), S. 1039 - 1051 (2000)
Spatial distribution and characteristics of voltage-gated calcium signals within visual interneurons. Journal of Neurophysiology 1999
Zeitschriftenartikel
7 (3), S. 213 - 234 (1999)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells: III. Visual response properties. Journal of Computational Neuroscience 1998
Zeitschriftenartikel
18 (19), S. 7972 - 7986 (1998)
Active membrane properties and signal encoding in graded potential neurons. The Journal of Neuroscience 1997
Zeitschriftenartikel
17 (12), S. 4809 - 4819 (1997)
Encoding of visual motion information and reliability in spiking and graded potential neurons. The Journal of Neuroscience
Zeitschriftenartikel
4 (4), S. 349 - 369 (1997)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells. 2. Active membrane properties. Journal of Computational Neuroscience
Zeitschriftenartikel
17 (16), S. 6023 - 6030 (1997)
Dendritic computation of direction selectivity and gain control in visual interneurons. The Journal of Neuroscience 1996
Zeitschriftenartikel
3 (4), S. 313 - 336 (1996)
The intrinsic electrophysiological characteristics of fly lobula plate tangential cells. 1. Passive membrane properties. Journal of Computational Neuroscience
Zeitschriftenartikel
379 (6566), S. 639 - 641 (1996)
Amplification of high-frequency synaptic inputs by active dendritic membrane processes. Nature 1995
Zeitschriftenartikel
2 (1), S. 5 - 18 (1995)
Mechanisms of dendritic integration underlying gain control in fly motion-sensitive interneurons. Journal of Computational Neuroscience 1994
Zeitschriftenartikel
6 (1), S. 205 - 208 (1994)
Processing of synaptic information depends on the structure of the dendritic tree. NeuroReport 1992
Zeitschriftenartikel
140 (2), S. 173 - 176 (1992)
Dendritic integration of motion information in visual interneurons of the blowfly. Neuroscience Letters Buchkapitel (4)
2014
Buchkapitel
11, S. 259 - 275 (Hg. Cuntz, H.; Remme, M. W. H.; Torben-Nielsen, B.). Springer, New York (2014)
Modelling the cellular mechanisms of fly optic flow processing. In: Springer Series in Computational Neuroscience, Bd.