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Общее количество найденных документов : 43
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1.
A comparison of the electrosensory morphology of a euryhaline and a marine stingray // Zoology, 2013. Vol. 116, N 5.-С.270-276

2.
Kashimori A neural mechanism of adaptive suppression of background signals arising from tail movements in the Gymnotid electrosensory system // Neurocomputing, 1999. Vol. 26-27.-С.761-767

3.
Kashimori A neural mechanism of adaptive suppression of background signals arising from tail movements in the Gymnotid electrosensory system // Neurocomputing, 1999. Vol. 26-27.-С.761-767

4.
A neural model of electrosensory system making electrolocation of weakly electric fish // Neurocomputing, 2001. Vol. 38-40.-С.1349-1357

5.
A neural model of electrosensory system making electrolocation of weakly electric fish // Neurocomputing, 2001. Vol. 38-40.-С.1349-1357

6.
A neural model of electrosensory system making electrolocation of weakly electric fish // Neurocomputing, 2001. Vol. 38-40.-С.1349-1357

7.
Kashimori A role of synchronous firing of sensory-motor interface induced by noise sign selective process generating jamming avoidance response // Neurocomputing, 2001. Vol. 38-40.-С.1341-1348

8.
Kashimori A role of synchronous firing of sensory-motor interface induced by noise sign selective process generating jamming avoidance response // Neurocomputing, 2001. Vol. 38-40.-С.1341-1348

9.
Schuster Behavioral evidence for post-pause reduced responsiveness in the electrosensory system of Gymnotus carapo // J. Exp. Biol., 2002. Vol. 205, N 16.-С.2525-2533

10.
Bedore Christine N. Behavioral responses of batoid elasmobranchs to prey-simulating electric fields are correlated to peripheral sensory morphology and ecology // Zoology, 2014. Vol. 117, N 2.-С.95-103

11.
Catfish Ictalurus nebulosus (Le Sueur, 1819] electrosensory temperature reference curves for aquatic biomonitoring // Publ. espec., 1996, N 21.-С.297-300

12.
Hofmann Michael H. Central organization of the electrosensory system in the paddlefish (Polyodon spathula) // J. Compar. Neurol., 2002. Vol. 446, N 1.-С.25-36

13.
Hofmann Michael H. Central organization of the electrosensory system in the paddlefish (Polyodon spathula) // J. Compar. Neurol., 2002. Vol. 446, N 1.-С.25-36

14.
Lannoo Michael J. Development of the electrosensory nervous system of Eigenmannia (Gymnotiformes): II: The electrosensory lateral line lobe, midbrain, and cerebellum // J. Comp. Neurol., 1990. Vol. 294, N 1.-С.37-58

15.
Hofmann Michael H. Electrosensory brain stem neurons compute the time derivative of electric fields in the paddlefish // Fluctuat. and Noise Lett., 2004. Vol. 4, N 1.-С.L129-L138

16.
Hofmann Michael H. Electrosensory brain stem neurons compute the time derivative of electric fields in the paddlefish // Fluctuat. and Noise Lett., 2004. Vol. 4, N 1.-С.L129-L138

17.
Carr C.E. Evolution of time coding systems // Neural Comput., 1999. Vol. 11, N 1.-С.1-20

18.
Carr C.E. Evolution of time coding systems // Neural Comput., 1999. Vol. 11, N 1.-С.1-20

19.
Berman Neil J. Inhibition evoked from primary afferents in the electrosensory lateral line lobe of the weakly electric fish (Apteronotus leptorhynchus) // J. Neurophysiol., 1998. Vol. 80, N 6.-С.3173-3196

20.
Berman Neil J. Inhibition evoked from primary afferents in the electrosensory lateral line lobe of the weakly electric fish (Apteronotus leptorhynchus) // J. Neurophysiol., 1998. Vol. 80, N 6.-С.3173-3196

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