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Original Article

Optical Imaging of Neural Activity in Auditory Cortex Induced by Intracochlear Electrical Stimulation

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Pages 83-88 | Published online: 08 Jul 2009

References

  • Taniguchi I, Horikawa J, Moriyama T, Nasu M. Spatio‐temporal pattern of frequency representation in the auditory cortex of guinea pigs. Neurosci Lett 1992; 146: 37–40
  • Taniguchi I, Nasu M. Spatio‐temporal representation of sound intensity in the guinea pig auditory cortex observed by optical recording. Neurosci Lett 1993; 151: 178–81
  • Redies H, Sieben U, Creutzfeldt O D. Functional subdivisions in the auditory cortex of the guinea pig. J Comp Neurol 1989; 282: 473–88
  • Hellweg F C., Koch R, Vollath M. Representation of the cochlea in the neocortex of guinea pigs. Exp Brain Res 1977; 29: 464–74
  • Robertson D, Irvine D R F. Plasticity of frequency organization in auditory cortex of guinea pigs with partial unilateral deafness. J Comp Neurol 1989; 282: 456–71
  • Tanaka H, Komatsuzaki A, Taniguchi I. Spatial distribution of response latency in the anterior field of the auditory cortex of the auditory cortex of the guinea pig (in Japanese). Audiology Jpn 1994; 37: 222–8
  • Cohen L B., Lesher S. Optical monitoring of membrane potential: methods of multisite optical measurement. Optical methods in cell physiology, P DeWeer, B M. Salzberg. Wiley, New York 1986; 71–99
  • Grinvald A. Real‐time optical mapping of neuronal activity: from single growth cones to the intact mammalian brain. Annu Rev Neurosci 1985; 8: 263–305
  • Grinvald A, Anglister L, Freeman J A., Hildesheim R, Manker A. Real‐time optical imaging of naturally evoked electrical activity in intact frog brain. Nature 1984; 308: 848–50
  • Glinvald A, Lieke E, Frostig R D., Gilbert C, Wiesel T N. Functional architecture of cortex revealed by optical imaging of intrinsic signals. Nature 1986; 324: 361–4
  • Kauer J S., Senseman D M., Cohen L B. Order‐elicited activity monitored simultaneously from 124 regions of the salamander olfactory bulb using a voltage‐sensitive dye. Brain Res 1987; 418: 255–62
  • Kamino K, Katoh Y, Komuro H, Sato K. Multiple‐site optical monitoring of neuronal activity evoked by vagus nerve stimulation in the embryonic chick brainstem. J Physiol 1989; 409: 263–83
  • Salzberg B M. Optical recording of electrical activity in neurons using molecular probes. Optical methods in cell physiology, P DeWeer, B M. Salzberg. Wiley, New York 1983; 139–87
  • Salzberg B M., Davila H V., Cohen L B. Optical recording of impulses in individual neurons of an invertebrate central nervous system. Nature 1973; 246: 508–9
  • Raggio M W., Schreiner C E. Neural responses in cat primary auditory cortex to electrical cochlear stimulation. I. Intensity dependence of firing rate and response latency. J Neurophysiol 1994; 72: 2334–59
  • Tasaki I, Davis H, Legouix J P. The space‐time pattern of the cochlear microphonics (guinea pig), as recorded by differential electrodes. J Acoust Soc Am 1952; 24: 502–19

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