Neuronal Responses in Cat Primary Auditory Cortex to Electrical Cochlear Stimulation: IV. Activation Pattern for Sinusoidal Stimulation
Open Access
- 1 June 2003
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 89 (6), 3190-3204
- https://doi.org/10.1152/jn.00341.2002
Abstract
Patterns of threshold distributions for single-cycle sinusoidal electrical stimulation and single pulse electrical stimulation were compared in primary auditory cortex of the adult cat. Furthermore, the effects of auditory deprivation on these distributions were evaluated and compared across three groups of adult cats. Threshold distributions for single and multiple unit responses from the middle cortical layers were obtained on the ectosylvian gyrus in an acutely implanted animal; 2 wk after deafening and implantation (short-term group); and neonatally deafened animals implanted following 2–5 yr of deafness (long-term group). For all three cases, we observed similar patterns of circumscribed regions of low response thresholds in the region of primary auditory cortex (AI). A dorsal and a ventral region of low response thresholds were found separated by a narrow, anterior-posterior strip of elevated thresholds. The ventral low-threshold regions in the short-term group were cochleotopically arranged. By contrast, the dorsal region in the short-term animals and both low-threshold regions in long-term deafened animals maintained only weak cochleotopicity. Analysis of the spatial extent of the low-threshold regions revealed that the activated area for sinusoidal stimulation was smaller and more circumscribed than for pulsatile stimulation for both dorsal and ventral AI. The width of the high-threshold ridge that separated the dorsal and ventral low-threshold regions was greater for sinusoidal stimulation. Sinusoidal and pulsatile threshold behavior differed significantly for electrode configurations with low and high minimum thresholds. Differences in threshold behavior and cortical response distributions between the sinusoidal and pulsatile stimulation suggest that stimulus shape plays a significant role in the activation of cortical activity. Differences in the activation pattern for short-term and long-term deafness reflect deafness-induced reorganizational changes based on factors such as differences in excitatory and inhibitory balance that are affected by the stimulation parameters.Keywords
This publication has 61 references indexed in Scilit:
- Behavioral and Neurophysiological Thresholds for Electrical Cochlear Stimulation in the Deaf CatAudiology and Neurotology, 2000
- Simultaneous Analog Stimulation (SAS)–Continuous Interleaved Sampler (CIS) Pilot Comparison Study in EuropeAnnals of Otology, Rhinology & Laryngology, 1999
- Response of the primary auditory cortex to electrical stimulation of the auditory nerve in the congenitally deaf white catHearing Research, 1997
- Temporal Integration and Duration Tuning in the Dorsal Zone of Cat Auditory CortexJournal of Neuroscience, 1997
- Factors Affecting Auditory Performance of Postlinguistically Deaf Adults Using Cochlear ImplantsAudiology and Neurotology, 1996
- Sensitivity of neurons in cat primary auditory cortex to tones and frequency-modulated stimuli. II: Organization of response properties along the ‘isofrequency’ dimensionHearing Research, 1992
- Cochlear Implants in Children, Adolescents, and Prelinguistically Deafened AdultsJournal of Speech, Language, and Hearing Research, 1992
- Chronic intracochlear electrical stimulation induces selective survival of spiral ganglion neurons in neonatally deafened catsHearing Research, 1991
- Discharge patterns of cat primary auditory fibers with electrical stimulation of the cochleaHearing Research, 1984
- Tuning characteristics of cochlear nucleus units in response to electrical stimulation of the cochleaHearing Research, 1983