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Article Addendum

Active sensing

pre-receptor mechanisms and behavior in electric fish

, &
Pages 29-31 | Received 15 Jul 2008, Accepted 15 Jul 2008, Published online: 30 Jul 2008

References

  • Pusch R, von der Emde G, Hollmann M, Bacelo J, Nöbel S, Grant K, Engelmann J. Active sensing in a mormyrid fish: electric images and peripheral modifications of the signal carrier give evidence of dual foveation. J Exp Biol 2008; 211:921 - 934
  • von der Emde G, Schwarz S, Gomez L, Budelli R, Grant K. Electric fish measure distance in the dark. Nature 1998; 395:890 - 894
  • Babineau D, Longtin A, Lewis JE. Modeling the electric field of weakly electric fish. J Exp Biol 2006; 209:3636 - 3651
  • Babineau D, Lewis JE, Longtin A. Spatial acuity and prey detection in weakly electric fish. PLoS Comp Biol 2007; 3:38
  • Migliaro A, Caputi AA, Budelli R. Theoretical analysis of pre-receptor image conditioning in weakly electric fish. PLoS Comp Biol 2005; 1:123 - 131
  • Bacelo J, Engelmann J, Hollmann M, von der Emde G, Grant K. Peripheral distribution and central representation of electroreceptors in Gnathonemus petersii indicate functional foveae. J Comp Neurol 2008; In Press
  • Gomez L, Budelli R, Grant K, Caputi AA. Pre-receptor profile of sensory images and primary afferent neuronal representation in the mormyrid electrosensory system. J Exp Biol 2004; 207:2443 - 2453
  • Engelmann J, Bacelo J, Metzen M, Pusch R, Bouton B, Migliaro A, Caputi A, Budelli R, Grant K, von der Emde G. Electric imaging through active electrolocation: implication for the analysis of complex scenes. Biol Cybern 2008; 98:519 - 539
  • Lewis JE, Maler L. Neuronal population codes and the perception of object distance in weakly electric fish. J Neurosci 2001; 21:2842 - 2850
  • Sawtell NB, Williams A. Transformations of electrosensory encoding associated with an adaptive filter. J Neurosci 2008; 28:1589 - 1612
  • Hollmann M, Engelmann J, von der Emde G. Distribution, density and morphology of electroreceptor organs in mormyrid weakly electric fish: anatomical investigations of a receptor mosaic. J Zool 2008; http://dx.doi.org/10.1111/j.1469-7998.2008.00465.x
  • Castelló ME, Aguilera PA, Trujillo-Cenoz O, Caputi AA. Electroreception in Gymnotus carapo: pre-receptor processing and the distribution of electroreceptor types. J Exp Biol 2000; 203:3279 - 3287
  • Shumway CA. Multiple electrosensory maps in the medulla of weakly electric gymnotiform fish II. Anatomical differences. J Neurosci 1989; 9:4400 - 4415
  • von der Emde G, Schwarz S. How the electric fish brain controls the production and analysis of electric signals during active electrolocation. Zoology 2001; 103:112 - 114
  • Wagner HJ. Bipolar cells in the “grouped retina” of the elephantnose fish (Gnathonemus petersii). Vis Neurosci 2007; 24:355 - 362
  • von der Emde G, Fetz S. Distance, shape and more: recognition of object features during active electrolocation in a weakly electric fish. J Exp Biol 2007; 210:3082 - 3095
  • Metzten M, Engelmann J, von der Emde G. Receptive field properties of neurones in the electrosensory lateral line lobe of the weakly electric fish, Gnathonemus petersii. J Comp Physiol A accepted
  • Bell C, Bodznick D, Montgomery J, Bastian J. The generation and subtraction of sensory expectations within cerebellum-like structures. Brain Behav Evol 1997; 50:17 - 31
  • Oertel D, Young ED. What's a cerebellar circuit doing in the auditory system?. Trends Neurosci 2004; 27:104 - 110
  • Kern R, van Hateren JH, Egelhaaf M. Representation of behaviorally relevant information by blowfly motion-sensitive visual interneurons requires precise compensatory head movements. J Exp Biol 2006; 209:1251 - 1260
  • Bastian J. Plasticity of feedback inputs in the apteronotid electrosensory system. J Exp Biol 1999; 202:1327 - 1337
  • Sawtell NB, Williams A, Bell CC. From sparks to spikes: information processing in the electrosensory systems of fish. Curr Opin Neurobiol 2005; 15:437 - 443
  • Egelhaaf M, Boddeker N, Kern R, Kretzberg J, Lindemann JP, Warzecha AK. Visually guided orientation in flies: case studies in computational neuroethology. J Comp Physiol A 2003; 189:401 - 409
  • Karmeier K, van Hateren JH, Kern R, Egelhaaf M. Encoding of naturalistic optic flow by a population of blowfly motion-sensitive neurons. J Neurophysiol 2006; 96:1602 - 1614
  • Caputi AA, Aguilera PA, Castellø ME. Probability and amplitude of novelty responses as a function of the change in contrast of the reafferent image in G carapo. J Exp Biol 2003; 206:999 - 1010
  • Sicardi EA, Caputi AA, Budelli R. Physical basis of distance discrimination in weakly electric fish. Physica A 2000; 86 - 93