table of contents 
The authors presented a novel technique to disambiguate single processing steps within …
|
- Hudspeth AJ, Logothetis NK (2000) Sensory systems. Curr Opin Neurobiol 10:631–641.
- Robeles L, Ruggero MA (2001) Mechanics of the mammalian cochlea. Physiol Rev 81:1305–1352.
- Schiolten P, Larsen ON, Michelsen A (1981) Mechanical time resolution in some insect ears. J Comp Physiol 143:289–295.
- French AS (1988) Transduction mechanisms of mechanosensilla. Annu Rev Entomol 33:39–58.
- Robert D, Göpfert MC (2002) Novel schemes for hearing and orientation in insects. Curr Opin Neurobiol 12:715–720.
- Hudspeth AJ (1985) The cellular basis of hearing: The biophysics of hair cells. Science 230:745–752.
- Hill KG (1983) The physiology of locust auditory receptors. I. Discrete depolarizations of receptor cells. J Comp Physiol A 152:475–482.
- Gillespie PG, Walker RG (2001) Molecular basis of mechanosensory transduction. Nature 413:194–202.
- Ricci A (2003) Active hair bundle movements and the cochlear amplifier. J Am Acad Audiol 14:325–338.
- Evans EF (1975) Cochlear nerve and cochlear nucleus. In: Keidel WD, Neff WD, editors. Auditory system. Volume 5.2, Handbook of sensory physiology Berlin: Springer. pp 1–108.
- Jameson D, Hurvich LM, editors (1972) Visual psychophysics. Volume 7.4, Handbook of sensory physiology. Berlin: Springer-Verlag. 812 p.
- Lord Rayleigh (1876) On our perception of the direction of a sound source. Nature 14:32–33.
- Carr CE (1993) Processing of temporal information in the brain. Annu Rev Neurosci 16:223–243.
- Grothe B, Klump GM (2000) Temporal processing in sensory systems. Curr Opin Neurobiol 10:467–473.
- Machens CK, Schütze H, Franz A, Kolesnikova O, Stemmler MB, et al. (2003) Single auditory neurons rapidly discriminate conspecific communication signals. Nat Neurosci 6:341–342.
- Köppl C (1997) Phase locking to high frequencies in the auditory nerve and cochlear nucleus magnocellularis of the barn owl, Tyto alba J Neurosci 17:3312–3321.
- Mason AC, Oshinsky ML, Hoy RR (2001) Hyperacute directional hearing in a microscale auditory system. Nature 410:686–690.
- Gray EG (1960) The fine structure of the insect ear. Philos Trans R Soc London B Biol Sci 243:75–94.
- Breckow J, Sippel M (1985) Mechanics of the transduction of sound in the tympanal organ of adults and larvae of locusts. J Comp Physiol A 157:619–629.
- Gollisch T, Schütze H, Benda J, Herz AVM (2002) Energy integration describes sound-intensity coding in an insect auditory system. J Neurosci 22:10434–10448.
- Machens CK, Stemmler MB, Prinz P, Krahe R, Ronacher B, et al. (2001) Representation of acoustic communication signals by insect auditory receptor neurons. J Neurosci 21:3215–3227.
- Dallos P (1985) Response characteristics of mammalian cochlear hair cells. J Neurosci 5:1591–1608.
- Garner WR (1947) The effect of frequency spectrum on temporal integration of energy in the ear. J Acoust Soc Am 19:808–814.
- Plomp R, Bouman MA (1959) Relation between hearing threshold and duration for tone pulses. J Acoust Soc Am 31:749–758.
- Zwislocki J (1960) Theory of temporal auditory summation. J Acoust Soc Am 32:1046–1060.
- Florentine M, Fastl H, Buus S (1988) Temporal integration in normal hearing, cochlear impairment, and impairment simulated by masking. J Acoust Soc Am 84:195–203.
- Heil P, Neubauer H (2003) A unifying basis of auditory thresholds based on temporal summation. Proc Natl Acad Sci U S A 100:6151–6156.
- Lewis RS, Hudspeth AJ (1983) Voltage- and ion-dependent conductances in solitary vertebrate hair cells. Nature 304:538–541.
- Kössl M, Boyan GS (1998) Acoustic distortion products from the ear of a grasshopper. J Acoust Soc Am 104:326–335.
- Gollisch T, Herz AVM (2004) Input-driven components of spike-frequency adaptation can be unmasked in vivo. J Neurosci 24:7435–7444.
- Gold T, Pumphrey RJ (1948) Hearing. I. The cochlea as a frequency analyzer. Proc R Soc Lond B Biol Sci 135:462–491.
- Korenberg MJ, Hunter IW (1986) The identification of nonlinear biological systems: LNL cascade models. Biol Cybern 55:125–134.
- van Dijk P, Wit HP, Segenhout JM (1997) Dissecting the frog inner ear with Gaussian noise. I. Application of high-order Wiener-kernel analysis. Hear Res 114:229–242.
- Korenberg MJ, French AS, Voo SK (1988) White-noise analysis of nonlinear behavior in an insect sensory neuron: Kernel and cascade approaches. Biol Cybern 58:313–320.
- Spekreijse H (1969) Rectification in the goldfish retina: Analysis by sinusoidal and auxiliary stimulation. Vision Res 9:1461–1472.
- Marmarelis PZ, Naka K (1972) White-noise analysis of a neuron chain: An application of the Wiener theory. Science 175:1276–1278.
- Benardete EA, Kaplan E (1997) The receptive field of the primate P retinal ganglion cell, II: Nonlinear dynamics. Vis Neurosci 14:187–205.
- Emerson RC, Korenberg MJ, Citron MC (1992) Identification of complex-cell intensive nonlinearities in a cascade model of cat visual cortex. Biol Cybern 66:291–300.
- Touryan J, Lau B, Dan Y (2002) Isolation of relevant visual features from random stimuli for cortical complex cells. J Neurosci 15:10811–10818.
- Neri P (2004) Estimation of nonlinear psychophysical kernels. J Vis 4:82–91.
- Korenberg MJ (1973) Identification of biological cascades of linear and static nonlinear systems. Proc Midwest Symp Circuit Theory 18(2):1–9.
- French AS, Korenberg MJ, Järvilehto M, Kouvalainen E, Juusola M, et al. (1993) The dynamic nonlinear behavior of fly photoreceptors evoked by a wide range of light intensities. Biophys J 65:832–839.
- Markin VS, Hudspeth AJ (1995) Gating-spring models of mechanoelectrical transduction by hair cells of the internal ear. Annu Rev Biophys Struct 24:59–83.
rating: 0.00 from 0 votes | updated on: 2 Jun 2007 | views: 561 |
|