imagen animada PEDECIBA
Investigadores :

Página personal del Dr. Angel Caputi


http://www.rau.edu.uy/pedeciba/personas/caputi.htm

Curriculum electrónico basado en CvLac-Lattes para investigadores del PEDECIBA

El Dr. Caputi, Ph. D., es investigador Grado 4 en el Area Biología del PEDECIBA. Ingresó al Programa en 1997. Desempeña sus actividades en el Laboratorio de Neurofisiología Comparada, IIBCE.

Su línea de investigación es:

  • Procesamiento de imágenes sensoriales por el sistema nervioso
  • Dirección postal:
    Laboratorio de Neurofisiología Comparada
    Departamento de Neuroanatomía Comparada,
    Instituto de Investigaciones Biológicas Clemente Estable - IIBCE
    Av. Italia 3318
    Montevideo 11600
    Uruguay
    teléfono : (+598 2) 487 1616
    fax (+598 2) 487 5548
    e-mail :angel@iibce.edu.uy



    Publicaciones


    • Caputi A, Macadar O, Trujillo-Cenoz O
      Waveform generation of the electric organ discharge in Gymnotus carapo. III. Analysis of the fish body as an electric source
      J Comp Physiol A, 165: 361-370 (1989)

    • Barrio LC, Caputi A, Crispino L, Buño W
      Electric organ discharge frequency modulation evoked by water vibration in Gymnotus carapo
      Comp Biochem Physiol A, 100: 555-562 (1991)

    • Caputi A, Silva AC, Macadar O
      Electric organ discharge in Gymnotus carapo: spinal origin and peripheral mechanisms
      J Comp Physiol A,: 173: 227-232 (1993)

    • Caputi A, Trujillo-Cenoz O
      The spinal cord of G. carapo, the electromotor neurons and their projection patterns
      Brain Behav Evol, 44: 663-674 (1994)

    • Caputi A, Macadar O, Trujillo-Cenoz O
      Waveform generation in Rhamphyctchthys rostratus (L) (Teleostei Gymnotiformes). The electric organ and its spatiotemporal activation pattern
      J Comp Physiol A, 174: 633-642 (1994)

    • Caputi A, Budelli R
      The electric image in weakly electric fish I: a data based model of waveform generation in G. carapo
      J Comput Neurosci, 1: 147-156 (1995)

    • Caputi A, Aguilera P
      A field potential analysis of the electrogenic system of Gymnotus carapo
      J Comp Physiol A, 179: 825-835 (1996)

    • Bell CC, Caputi A, Grant K
      Physiology and plasticity of morphologically identified cells in the Mormyrid electrosensory lobe
      J Neurosci, 17: 6409-6423 (1997)

    • Caputi AA, Budelli R, Grant,K, Bell CC
      The electric image in weakly electric fish. Physical images of resistive objects in Gnathonemus petersii
      J Exp Biol, 201: 2115-2128 (1998)

    • Caputi AA, Silva AC, Macadar O
      The electric organ discharge of Brachyhypopomus pinnicaudatus. The effect of environmental variables on waveform generation
      Brain Behav Evol, 52: 148-158 (1998)

    • Castello ME, Caputi AA, Trujillo-Cenoz O
      Structural and functional aspects of the fast electrosensory pathway in the electrosensory lateral line lobe of the pulse fish Gymnotus carapo
      J Comp Neurol, 401: 549-563 (1998)

    • Caputi AA
      The electric organ discharge of pulse gymnotiforms: the transformation of a single impulse into a complex spatio-temporal electromotor pattern
      J Exp Biol, 202: 1229-1241 (1999)

    • Budelli R, Caputi AA
      The electric image in weakly electric fish: perception of objects of complex impedance
      J Exp Biol, 203: 481-492 (2000)

    • Sicardi AE, Caputi AA, Budelli R
      Physical basis of distance discrimination in weakly electric fish
      Physica A, 283: 86-93 (2000)

    • Castello ME, Aguilera P, Trujillo-Cenoz O, Caputi A
      Electrorecepcion in G. carapo: prereceptor processing and the distribution of electroreceptor types
      J Exp Biol, 203: 3279-3287 (2000)

    • Aguilera P, Castello ME, Caputi A
      Electrorecepcion in G. carapo: differences between self generated and conspecific-generated signal carriers
      J Exp Biol, 204: 185-98 (2001)