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Cortical representation of species-specific vocalizations in Guinea pig

. 2013 ; 8 (6) : e65432. [epub] 20130613

Language English Country United States Media electronic-print

Document type Journal Article, Research Support, Non-U.S. Gov't

We investigated the representation of four typical guinea pig vocalizations in the auditory cortex (AI) in anesthetized guinea pigs with the aim to compare cortical data to the data already published for identical calls in subcortical structures - the inferior colliculus (IC) and medial geniculate body (MGB). Like the subcortical neurons also cortical neurons typically responded to many calls with a time-locked response to one or more temporal elements of the calls. The neuronal response patterns in the AI correlated well with the sound temporal envelope of chirp (an isolated short phrase), but correlated less well in the case of chutter and whistle (longer calls) or purr (a call with a fast repetition rate of phrases). Neuronal rate vs. characteristic frequency profiles provided only a coarse representation of the calls' frequency spectra. A comparison between the activity in the AI and those of subcortical structures showed a different transformation of the neuronal response patterns from the IC to the AI for individual calls: i) while the temporal representation of chirp remained unchanged, the representations of whistle and chutter were transformed at the thalamic level and the response to purr at the cortical level; ii) for the wideband calls (whistle, chirp) the rate representation of the call spectra was preserved in the AI and MGB at the level present in the IC, while in the case of low-frequency calls (chutter, purr), the representation was less precise in the AI and MGB than in the IC; iii) the difference in the response strength to natural and time-reversed whistle was found to be smaller in the AI than in the IC or MGB.

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Syka J, Popelář J, Kvašňák E, Šuta D, Jilek M (1997) Processing of species-specific vocalizations in the inferior colliculus and medial geniculate body of the guinea pig. In: Syka J, editor. Acoustical signal processing in the central auditory system. New York: Plenum, 431–441.

Šuta D, Kvašňák E, Popelář J, Syka J (2003) Representation of species-specific vocalizations in the inferior colliculus of the guinea pig. J Neurophysiol 90: 3794–3808. PubMed

Creutzfeldt O, Hellweg FC, Schreiner C (1980) Thalamocortical transformation of responses to complex auditory stimuli. Exp Brain Res 39: 87–104. PubMed

Wallace MN, Shackleton TM, Anderson LA, Palmer AR (2005) Representation of the purr call in the guinea pig primary auditory cortex. Hear Res 204: 115–126. PubMed

Wallace MN, Shackleton TM, Palmer AR (2002) Phase-locked responses to pure tones in the primary auditory cortex. Hear Res 172, 160–171. PubMed

Wallace MN, Rutkowski RG, Palmer AR (2005) Responses to the purr call in three areas of the guinea pig auditory cortex. Neuroreport 16: 2001–2005. PubMed

Wallace MN, Anderson LA, Palmer AR (2007) Phase-locked responses to pure tones in the auditory thalamus. J Neurophysiol 98: 1941–1952. PubMed

Wallace MN, Palmer AR (2008) Laminar differences in the response properties of cells in the primary auditory cortex. Exp Brain Res 184: 179–191. PubMed

Wallace MN, Palmer AR (2009) Functional subdivisions in low-frequency primary auditory cortex (AI). Exp Brain Res 194: 395–408. PubMed

Syka J, Šuta D, Popelář J (2005) Responses to species-specific vocalizations in the auditory cortex of awake and anesthetized guinea pigs. Hear Res 206: 177–184. PubMed

Wang X, Merzenich MM, Beitel R, Schreiner CE (1995) Representation of a species-specific vocalization in the primary auditory cortex of the common marmoset: temporal and spectral characteristics. J Neurophysiol 74: 2685–2706. PubMed

Gehr DD, Komiya H, Eggermont JJ (2000) Neuronal responses in cat primary auditory cortex to natural and altered species-specific calls. Hear Res 150: 27–42. PubMed

Nagarajan SS, Cheung SW, Bedenbaugh P, Beitel RE, Schreiner CE, et al. (2002) Representation of spectral and temporal envelope of twitter vocalizations in common marmoset primary auditory cortex. J Neurophysiol 87: 1723–1737. PubMed

Pasley BN, David SV, Mesgarani N, Flinker A, Shammam SA, et al. (2012) Reconstructing speech from human auditory cortex. PLoS Biol 10: e1001251. PubMed PMC

Sadagopan S, Wang XQ (2009) Nonlinear spectrotemporal interactions underlying selectivity for complex sounds in auditory cortex. J Neurosci 29: 11192–11202. PubMed PMC

Wang X, Lu T, Bendor D, Bartlett E (2008) Neural coding of temporal information in auditory thalamus and cortex. Neuroscience 154: 294–303. PubMed PMC

Berryman JC (1976) Guinea-pig vocalizations: their structure, causation and function. Z Tierpsychol 41: 80–106. PubMed

Šuta D, Popelář J, Kvašňák E, Syka J (2007) Representation of species-specific vocalizations in the medial geniculate body of the guinea pig. Exp Brain Res 183: 377–388. PubMed

Šuta D, Popelář J, Syka J (2008) Coding of communication calls in the subcortical and cortical structures of the auditory system. Physiol Res 57 (Suppl. 3)S149–S159. PubMed

Šuta D, Komárek M, Jilek M, Syka J (2004) Software for the analysis of species-specific vocalizations. Acta Medica (Hradec Králové) 47: 339–341. PubMed

Goldberg JM, Brown PB (1969) Response of binaural neurons of dog superior olivary complex to dichotic tonal stimuli: some physiological mechanisms of sound localization. J Neurophysiol 32: 613–636. PubMed

Rees A, Palmer AR (1989) Neuronal responses to amplitude-modulated and pure-tone stimuli in the guinea pig inferior colliculus, and their modification by broadband noise. J Acoust Soc Am 85: 1978–1994. PubMed

Gaese BH, Ostwald J (1995) Temporal coding of amplitude and frequency modulation in the rat auditory cortex. Eur J Neurosci 7: 438–450. PubMed

Barbour DL, Wang X (2002) Temporal coherence sensitivity in auditory cortex. J Neurophysiol 88: 2684–2699. PubMed

Young ED, Sachs MB (1979) Representation of steady state vowels in the temporal aspects of the discharge patterns of population of auditory-nerve fibers. J Acoust Soc Am 66: 1381–1403. PubMed

Astl J, Popelář J, Kvašňák E, Syka J (1996) Comparison of response properties of neurons in the inferior colliculus of guinea pigs under different anesthetics. Audiology 35: 335–45. PubMed

Joris PX, Schreiner CE, Rees A (2004) Neural processing of amplitude-modulated sounds. Physiol Rev 84: 541–577. PubMed

Holmstrom LA, Eeuwes LB, Roberts PD, Portfors CV (2010) Efficient encoding of vocalizations in the auditory midbrain. J Neurosci 30: 802–19. PubMed PMC

Syka J, Popelář J, Kvašňák E, Astl J (2000) Response properties of neurons in the central nucleus and external and dorsal cortices of the inferior colliculus in guinea pig. Exp Brain Res. 133: 254–266. PubMed

Kvašňák E, Popelář J, Syka J (2000) Discharge properties of neurons in subdivisions of the medial geniculate body of the guinea pig. Physiol Res 49: 369–78. PubMed

Doupe AJ, Konishi M (1991) Song-selective auditory circuits in the vocal control system of the zebra finch. Proc Natl Acad Sci USA 88: 11339–11343. PubMed PMC

Margoliash D (1983) Acoustic parameters underlying the responses of song-specific neurons in the white-crowned sparrow. J Neurosci 3: 1039–1057. PubMed PMC

Esser KH, Condon CJ, Suga N, Kanwal JS (1997) Syntax processing by auditory cortical neurons in the FM-FM area of the mustached bat Pteronotus parnellii. Proc Natl Acad Sci USA 94: 14019–14024. PubMed PMC

Wang X, Kadia SC (2001) Differential representation of species-specific primate vocalizations in the auditory cortices of marmoset and cat. J Neurophysiol 86: 2616–2620. PubMed

Huetz C, Philibert B, Edeline JM (2009) A spike-timing code for discriminating conspecific vocalizations in the thalamocortical system of anesthetized and awake guinea pigs. J Neurosci 29: 334–350. PubMed PMC

Philibert B, Laudanski J, Edeline JM (2005) Auditory thalamus responses to guinea-pig vocalizations: a comparison between rat and guinea-pig. Hear Res 209: 97–103. PubMed

Grimsley JMS, Shanbhag SJ, Palmer AR, Wallace MN (2012) Processing of Communication Calls in Guinea Pig Auditory Cortex. PLoS ONE 7: e51646. PubMed PMC

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