L Maler, E Sas, S Johnston, W Ellis. J Chem Neuroanat 1991
Times Cited: 195
Times Cited: 195
Times Cited
Times Co-cited
Similarity
Plastic and nonplastic pyramidal cells perform unique roles in a network capable of adaptive redundancy reduction.
Joseph Bastian, Maurice J Chacron, Leonard Maler. Neuron 2004
Joseph Bastian, Maurice J Chacron, Leonard Maler. Neuron 2004
29
Temporal processing across multiple topographic maps in the electrosensory system.
Rüdiger Krahe, Joseph Bastian, Maurice J Chacron. J Neurophysiol 2008
Rüdiger Krahe, Joseph Bastian, Maurice J Chacron. J Neurophysiol 2008
32
Non-classical receptive field mediates switch in a sensory neuron's frequency tuning.
Maurice J Chacron, Brent Doiron, Leonard Maler, André Longtin, Joseph Bastian. Nature 2003
Maurice J Chacron, Brent Doiron, Leonard Maler, André Longtin, Joseph Bastian. Nature 2003
25
The posterior lateral line lobe of certain gymnotoid fish: quantitative light microscopy.
L Maler. J Comp Neurol 1979
L Maler. J Comp Neurol 1979
24
Dendritic modulation of burst-like firing in sensory neurons.
J Bastian, J Nguyenkim. J Neurophysiol 2001
J Bastian, J Nguyenkim. J Neurophysiol 2001
22
EOD modulations of brown ghost electric fish: JARs, chirps, rises, and dips.
Harold Zakon, Joerg Oestreich, Sara Tallarovic, Frank Triefenbach. J Physiol Paris 2002
Harold Zakon, Joerg Oestreich, Sara Tallarovic, Frank Triefenbach. J Physiol Paris 2002
26
Receptive field organization determines pyramidal cell stimulus-encoding capability and spatial stimulus selectivity.
Joseph Bastian, Maurice J Chacron, Leonard Maler. J Neurosci 2002
Joseph Bastian, Maurice J Chacron, Leonard Maler. J Neurosci 2002
22
Spike-frequency adaptation separates transient communication signals from background oscillations.
Jan Benda, André Longtin, Len Maler. J Neurosci 2005
Jan Benda, André Longtin, Len Maler. J Neurosci 2005
21
Transient signals trigger synchronous bursts in an identified population of neurons.
Gary Marsat, Rémi D Proville, Leonard Maler. J Neurophysiol 2009
Gary Marsat, Rémi D Proville, Leonard Maler. J Neurophysiol 2009
33
Neural architecture of the electrosensory lateral line lobe: adaptations for coincidence detection, a sensory searchlight and frequency-dependent adaptive filtering
Berman, Maler. J Exp Biol 1999
Berman, Maler. J Exp Biol 1999
20
Receptive field organization across multiple electrosensory maps. I. Columnar organization and estimation of receptive field size.
Leonard Maler. J Comp Neurol 2009
Leonard Maler. J Comp Neurol 2009
28
Laminar organization of the afferent and efferent systems of the torus semicircularis of gymnotiform fish: morphological substrates for parallel processing in the electrosensory system.
C E Carr, L Maler, W Heiligenberg, E Sas. J Comp Neurol 1981
C E Carr, L Maler, W Heiligenberg, E Sas. J Comp Neurol 1981
19
Prey capture in the weakly electric fish Apteronotus albifrons: sensory acquisition strategies and electrosensory consequences.
M E Nelson, M A Maciver. J Exp Biol 1999
M E Nelson, M A Maciver. J Exp Biol 1999
19
Electrocommunication signals in free swimming brown ghost knifefish, Apteronotus leptorhynchus.
Ginette J Hupé, John E Lewis. J Exp Biol 2008
Ginette J Hupé, John E Lewis. J Exp Biol 2008
25
Population coding by electrosensory neurons.
Maurice J Chacron, Joseph Bastian. J Neurophysiol 2008
Maurice J Chacron, Joseph Bastian. J Neurophysiol 2008
33
Efficient computation via sparse coding in electrosensory neural networks.
Maurice J Chacron, André Longtin, Leonard Maler. Curr Opin Neurobiol 2011
Maurice J Chacron, André Longtin, Leonard Maler. Curr Opin Neurobiol 2011
27
Proliferation zones in the brain of adult gymnotiform fish: a quantitative mapping study.
G K Zupanc, I Horschke. J Comp Neurol 1995
G K Zupanc, I Horschke. J Comp Neurol 1995
18
Anatomical and functional organization of the prepacemaker nucleus in gymnotiform electric fish: the accommodation of two behaviors in one nucleus.
M Kawasaki, L Maler, G J Rose, W Heiligenberg. J Comp Neurol 1988
M Kawasaki, L Maler, G J Rose, W Heiligenberg. J Comp Neurol 1988
17
Feedback and feedforward control of frequency tuning to naturalistic stimuli.
Maurice J Chacron, Leonard Maler, Joseph Bastian. J Neurosci 2005
Maurice J Chacron, Leonard Maler, Joseph Bastian. J Neurosci 2005
23
The cytology of the posterior lateral line lobe of high-frequency weakly electric fish (Gymnotidae): dendritic differentiation and synaptic specificity in a simple cortex.
L Maler, E K Sas, J Rogers. J Comp Neurol 1981
L Maler, E K Sas, J Rogers. J Comp Neurol 1981
15
Peripheral organization and central projections of the electrosensory nerves in gymnotiform fish.
C E Carr, L Maler, E Sas. J Comp Neurol 1982
C E Carr, L Maler, E Sas. J Comp Neurol 1982
15
The organization of afferent input to the caudal lobe of the cerebellum of the gymnotid fish Apteronotus leptorhynchus.
E Sas, L Maler. Anat Embryol (Berl) 1987
E Sas, L Maler. Anat Embryol (Berl) 1987
16
Electric interactions through chirping behavior in the weakly electric fish, Apteronotus leptorhynchus.
G K H Zupanc, R F Sîrbulescu, A Nichols, I Ilies. J Comp Physiol A Neuroethol Sens Neural Behav Physiol 2006
G K H Zupanc, R F Sîrbulescu, A Nichols, I Ilies. J Comp Physiol A Neuroethol Sens Neural Behav Physiol 2006
32
Inhibitory feedback required for network oscillatory responses to communication but not prey stimuli.
Brent Doiron, Maurice J Chacron, Leonard Maler, André Longtin, Joseph Bastian. Nature 2003
Brent Doiron, Maurice J Chacron, Leonard Maler, André Longtin, Joseph Bastian. Nature 2003
15
The cellular basis for parallel neural transmission of a high-frequency stimulus and its low-frequency envelope.
Jason W Middleton, André Longtin, Jan Benda, Leonard Maler. Proc Natl Acad Sci U S A 2006
Jason W Middleton, André Longtin, Jan Benda, Leonard Maler. Proc Natl Acad Sci U S A 2006
22
Connections of the lateral and medial divisions of the goldfish telencephalic pallium.
R Glenn Northcutt. J Comp Neurol 2006
R Glenn Northcutt. J Comp Neurol 2006
15
Distal versus proximal inhibitory shaping of feedback excitation in the electrosensory lateral line lobe: implications for sensory filtering.
N J Berman, L Maler. J Neurophysiol 1998
N J Berman, L Maler. J Neurophysiol 1998
31
A synchronization-desynchronization code for natural communication signals.
Jan Benda, André Longtin, Leonard Maler. Neuron 2006
Jan Benda, André Longtin, Leonard Maler. Neuron 2006
22
Regulated expression of N-methyl-D-aspartate receptors and associated proteins in teleost electrosensory system and telencephalon.
Erik Harvey-Girard, Robert J Dunn, Len Maler. J Comp Neurol 2007
Erik Harvey-Girard, Robert J Dunn, Len Maler. J Comp Neurol 2007
50
Effects of restraint and immobilization on electrosensory behaviors of weakly electric fish.
Eva M Hitschfeld, Sarah A Stamper, Katrin Vonderschen, Eric S Fortune, Maurice J Chacron. ILAR J 2009
Eva M Hitschfeld, Sarah A Stamper, Katrin Vonderschen, Eric S Fortune, Maurice J Chacron. ILAR J 2009
25
Structure and function of neurons in the complex of the nucleus electrosensorius of the gymnotiform fish Eigenmannia: detection and processing of electric signals in social communication.
W Heiligenberg, C H Keller, W Metzner, M Kawasaki. J Comp Physiol A 1991
W Heiligenberg, C H Keller, W Metzner, M Kawasaki. J Comp Physiol A 1991
31
SK channels provide a novel mechanism for the control of frequency tuning in electrosensory neurons.
Lee D Ellis, W Hamish Mehaffey, Erik Harvey-Girard, Ray W Turner, Leonard Maler, Robert J Dunn. J Neurosci 2007
Lee D Ellis, W Hamish Mehaffey, Erik Harvey-Girard, Ray W Turner, Leonard Maler, Robert J Dunn. J Neurosci 2007
28
Limits of linear rate coding of dynamic stimuli by electroreceptor afferents.
Daniel Gussin, Jan Benda, Leonard Maler. J Neurophysiol 2007
Daniel Gussin, Jan Benda, Leonard Maler. J Neurophysiol 2007
33
SK channels gate information processing in vivo by regulating an intrinsic bursting mechanism seen in vitro.
Natalia Toporikova, Maurice J Chacron. J Neurophysiol 2009
Natalia Toporikova, Maurice J Chacron. J Neurophysiol 2009
30
Long-term recognition memory of individual conspecifics is associated with telencephalic expression of Egr-1 in the electric fish Apteronotus leptorhynchus.
Erik Harvey-Girard, Jessica Tweedle, Joel Ironstone, Martin Cuddy, William Ellis, Leonard Maler. J Comp Neurol 2010
Erik Harvey-Girard, Jessica Tweedle, Joel Ironstone, Martin Cuddy, William Ellis, Leonard Maler. J Comp Neurol 2010
38
Sparse and dense coding of natural stimuli by distinct midbrain neuron subpopulations in weakly electric fish.
Katrin Vonderschen, Maurice J Chacron. J Neurophysiol 2011
Katrin Vonderschen, Maurice J Chacron. J Neurophysiol 2011
26
Cellular and circuit properties supporting different sensory coding strategies in electric fish and other systems.
Gary Marsat, André Longtin, Leonard Maler. Curr Opin Neurobiol 2012
Gary Marsat, André Longtin, Leonard Maler. Curr Opin Neurobiol 2012
30
Neural maps in the electrosensory system of weakly electric fish.
Rüdiger Krahe, Leonard Maler. Curr Opin Neurobiol 2014
Rüdiger Krahe, Leonard Maler. Curr Opin Neurobiol 2014
21
Arginine vasotocin modulates a sexually dimorphic communication behavior in the weakly electric fish Apteronotus leptorhynchus.
J Bastian, S Schniederjan, J Nguyenkim. J Exp Biol 2001
J Bastian, S Schniederjan, J Nguyenkim. J Exp Biol 2001
13
Parallel processing of sensory input by bursts and isolated spikes.
Anne-Marie M Oswald, Maurice J Chacron, Brent Doiron, Joseph Bastian, Leonard Maler. J Neurosci 2004
Anne-Marie M Oswald, Maurice J Chacron, Brent Doiron, Joseph Bastian, Leonard Maler. J Neurosci 2004
13
A new interpretation on the homology of the teleostean telencephalon based on hodology and a new eversion model.
Naoyuki Yamamoto, Yuji Ishikawa, Masami Yoshimoto, Hao-Gang Xue, Nurmamat Bahaxar, Nobuhiko Sawai, Chun-Ying Yang, Hitoshi Ozawa, Hironobu Ito. Brain Behav Evol 2007
Naoyuki Yamamoto, Yuji Ishikawa, Masami Yoshimoto, Hao-Gang Xue, Nurmamat Bahaxar, Nobuhiko Sawai, Chun-Ying Yang, Hitoshi Ozawa, Hironobu Ito. Brain Behav Evol 2007
17
Inhibition evoked from primary afferents in the electrosensory lateral line lobe of the weakly electric fish (Apteronotus leptorhynchus).
N J Berman, L Maler. J Neurophysiol 1998
N J Berman, L Maler. J Neurophysiol 1998
20
Nonlinear information processing in a model sensory system.
Maurice J Chacron. J Neurophysiol 2006
Maurice J Chacron. J Neurophysiol 2006
18
Teleostean and mammalian forebrains contrasted: Evidence from genes to behavior.
Mario F Wullimann, Thomas Mueller. J Comp Neurol 2004
Mario F Wullimann, Thomas Mueller. J Comp Neurol 2004
13
Receptive field organization across multiple electrosensory maps. II. Computational analysis of the effects of receptive field size on prey localization.
Leonard Maler. J Comp Neurol 2009
Leonard Maler. J Comp Neurol 2009
29
Neural heterogeneity and efficient population codes for communication signals.
Gary Marsat, Leonard Maler. J Neurophysiol 2010
Gary Marsat, Leonard Maler. J Neurophysiol 2010
18
Structural and functional organization of a diencephalic sensory-motor interface in the gymnotiform fish, Eigenmannia.
C H Keller, L Maler, W Heiligenberg. J Comp Neurol 1990
C H Keller, L Maler, W Heiligenberg. J Comp Neurol 1990
16
From oscillators to modulators: behavioral and neural control of modulations of the electric organ discharge in the gymnotiform fish, Apteronotus leptorhynchus.
Günther K H Zupanc. J Physiol Paris 2002
Günther K H Zupanc. J Physiol Paris 2002
30
TTX-sensitive dendritic sodium channels underlie oscillatory discharge in a vertebrate sensory neuron.
R W Turner, L Maler, T Deerinck, S R Levinson, M H Ellisman. J Neurosci 1994
R W Turner, L Maler, T Deerinck, S R Levinson, M H Ellisman. J Neurosci 1994
12
A Golgi study of the cell types of the dorsal torus semicircularis of the electric fish Eigenmannia: functional and morphological diversity in the midbrain.
C E Carr, L Maler. J Comp Neurol 1985
C E Carr, L Maler. J Comp Neurol 1985
29
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.