Behavioral training enhances cortical temporal processing in neonatally deafened juvenile cats.

نویسندگان

  • Ralph E Beitel
  • Maike Vollmer
  • Marcia W Raggio
  • Christoph E Schreiner
چکیده

Deaf humans implanted with a cochlear prosthesis depend largely on temporal cues for speech recognition because spectral information processing is severely impaired. Training with a cochlear prosthesis is typically required before speech perception shows improvement, suggesting that relevant experience modifies temporal processing in the central auditory system. We tested this hypothesis in neonatally deafened cats by comparing temporal processing in the primary auditory cortex (AI) of cats that received only chronic passive intracochlear electric stimulation (ICES) with cats that were also trained with ICES to detect temporally challenging trains of electric pulses. After months of chronic passive stimulation and several weeks of detection training in behaviorally trained cats, multineuronal AI responses evoked by temporally modulated ICES were recorded in anesthetized animals. The stimulus repetition rates that produced the maximum number of phase-locked spikes (best repetition rate) and 50% cutoff rate were significantly higher in behaviorally trained cats than the corresponding rates in cats that received only chronic passive ICES. Behavioral training restored neuronal temporal following ability to levels comparable with those recorded in naïve prior normal-hearing adult deafened animals. Importantly, best repetitition rates and cutoff rates were highest for neuronal clusters activated by the electrode configuration used in behavioral training. These results suggest that neuroplasticity in the AI is induced by behavioral training and perceptual learning in animals deprived of ordinary auditory experience during development and indicate that behavioral training can ameliorate or restore temporal processing in the AI of profoundly deaf animals.

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منابع مشابه

1 1 Behavioral Training Enhances Cortical Temporal Processing in

1 Behavioral Training Enhances Cortical Temporal Processing in Neonatally 2 Deafened Juvenile Cats 3 4 5 Ralph E. Beitel, Maike Vollmer , Marcia W. Raggio , Christoph E. Schreiner 1 6 7 1 Epstein Laboratory, Department of Otolaryngology-Head and Neck Surgery, 8 University of California, San Francisco, California, USA 9 2 Comprehensive Hearing Center, Department of Otolaryngology, Head and Neck ...

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Behavioral training restores temporal processing in auditory cortex of long-deaf cats.

Temporal auditory processing is poor in prelingually hearing-impaired patients fitted with cochlear prostheses as adults. In an animal model of prelingual long-term deafness, we investigated the effects of behavioral training on temporal processing in the adult primary auditory cortex (AI). Neuronal responses to pulse trains of increasing frequencies were recorded in three groups of neonatally ...

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Passive stimulation and behavioral training differentially transform temporal processing in the inferior colliculus and primary auditory cortex.

In profoundly deaf cats, behavioral training with intracochlear electric stimulation (ICES) can improve temporal processing in the primary auditory cortex (AI). To investigate whether similar effects are manifest in the auditory midbrain, ICES was initiated in neonatally deafened cats either during development after short durations of deafness (8 wk of age) or in adulthood after long durations ...

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Temporal properties of chronic cochlear electrical stimulation determine temporal resolution of neurons in cat inferior colliculus.

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Response of inferior colliculus neurons to electrical stimulation of the auditory nerve in neonatally deafened cats.

Response properties of neurons in the inferior colliculus (IC) were examined in control and profoundly deafened animals to electrical stimulation of the auditory nerve. Seven adult cats were used: two controls; four neonatally deafened (2 bilaterally, 2 unilaterally); and one long-term bilaterally deaf cat. All control cochleae were deafened immediately before recording to avoid electrophonic a...

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عنوان ژورنال:
  • Journal of neurophysiology

دوره 106 2  شماره 

صفحات  -

تاریخ انتشار 2011