PubMed HealthSearch

PubMed · 7417089

Auditory pattern perception in 'split brain' patients.

Abstract

Three "split brain" subjects with normal peripheral hearing were tested on identifying monaurally presented auditory intensity and frequency patterns. One subject was tested before commissurotomy, ten days later, and one year after surgery. Results indicated that sectioning the corpus callosum dramatically affects the ability to verbally report both intensity and frequency patterns. However, the ability of the subjects to correctly "hum" frequency patterns was not impaired. Thus, it appears for a correct verbal report of an auditory pattern, interhemispheric transfer of acoustic information is required, while "humming" the pattern does not. Further application of this finding implicates auditory pattern tasks as as a potentially valuable test for detecting problems of higher auditory processing, particularly those affecting interhemispheric interaction.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

F E Musiek, M L Pinheiro, D H Wilson. 1980. Auditory pattern perception in 'split brain' patients.. https://doi.org/10.1001/archotol.1980.00790340018004

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Model of discharge rate from auditory nerve fibers responding to electrical stimulation of the cochlea: identification of cues for current and time-interval coding.

A model of the response of auditory nerve fibers to electrical stimulation of the cochlea is presented. Auditory nerve fiber responses are described in terms of cochlear regions activated by the stimulus: region A, in which the discharge rate equals a value of the pulse rate plus spontaneous activity, and region B, in which the discharge rate is less than pulse rate plus spontaneous activity but greater than spontaneous activity. The cues for intensity and time-interval coding provided by regions A and B are discussed.

Auditory Pathways