Functional Connections Between Auditory Cortex on Heschl's Gyrus and on the Lateral Superior Temporal Gyrus in Humans

1 Department of Neurosurgery, University of Iowa College of Medicine, Iowa City, Iowa 52242; and 2 Department of Physiology and 3 Waisman Center, University of Wisconsin, Madison, Wisconsin 53705 Submitted 23 May 2003; accepted in final form 22 August 2003 Functional connections between auditory fie...

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Veröffentlicht in:Journal of neurophysiology 2003-12, Vol.90 (6), p.3750-3763
Hauptverfasser: Brugge, John F, Volkov, Igor O, Garell, P. Charles, Reale, Richard A, Howard, Matthew A., III
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container_end_page 3763
container_issue 6
container_start_page 3750
container_title Journal of neurophysiology
container_volume 90
creator Brugge, John F
Volkov, Igor O
Garell, P. Charles
Reale, Richard A
Howard, Matthew A., III
description 1 Department of Neurosurgery, University of Iowa College of Medicine, Iowa City, Iowa 52242; and 2 Department of Physiology and 3 Waisman Center, University of Wisconsin, Madison, Wisconsin 53705 Submitted 23 May 2003; accepted in final form 22 August 2003 Functional connections between auditory fields on Heschl's gyrus (HG) and the acoustically responsive posterior lateral superior temporal gyrus (field PLST) were studied using electrical stimulation and recording methods in patients undergoing diagnosis and treatment of intractable epilepsy. Averaged auditory (click-train) evoked potentials were recorded from multicontact subdural recording arrays chronically implanted over the lateral surface of the superior temporal gyrus (STG) and from modified depth electrodes inserted into HG. Biphasic electrical pulses (bipolar, constant current, 0.2 ms) were delivered to HG sites while recording from the electrode array over acoustically responsive STG cortex. Stimulation of sites along the mediolateral extent of HG resulted in complex waveforms distributed over posterolateral STG. These areas overlapped each other and field PLST. For any given HG stimulus site, the morphology of the electrically evoked waveform varied across the STG map. A characteristic waveform was recorded at the site of maximal amplitude of response to stimulation of mesial HG [presumed primary auditory field (AI)]. Latency measurements suggest that the earliest evoked wave resulted from activation of connections within the cortex. Waveforms changed with changes in rate of electrical HG stimulation or with shifts in the HG stimulus site. Data suggest widespread convergence and divergence of input from HG to posterior STG. Evidence is presented for a reciprocal functional projection, from posterolateral STG to HG. Results indicate that in humans there is a processing stream from AI on mesial HG to an associational auditory field (PLST) on the lateral surface of the superior temporal gyrus. Address for reprint requests and other correspondence: J. F. Brugge, 627 Waisman Center, University of Wisconsin, Madison, WI 53705 (E-mail: brugge{at}waisman.wisc.edu ).
doi_str_mv 10.1152/jn.00500.2003
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Averaged auditory (click-train) evoked potentials were recorded from multicontact subdural recording arrays chronically implanted over the lateral surface of the superior temporal gyrus (STG) and from modified depth electrodes inserted into HG. Biphasic electrical pulses (bipolar, constant current, 0.2 ms) were delivered to HG sites while recording from the electrode array over acoustically responsive STG cortex. Stimulation of sites along the mediolateral extent of HG resulted in complex waveforms distributed over posterolateral STG. These areas overlapped each other and field PLST. For any given HG stimulus site, the morphology of the electrically evoked waveform varied across the STG map. A characteristic waveform was recorded at the site of maximal amplitude of response to stimulation of mesial HG [presumed primary auditory field (AI)]. Latency measurements suggest that the earliest evoked wave resulted from activation of connections within the cortex. 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source MEDLINE; American Physiological Society; Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals
subjects Acoustic Stimulation
Adult
Auditory Cortex - physiology
Auditory Pathways - physiology
Auditory Perception - physiology
Electric Stimulation
Electrodes
Electroencephalography
Electrophysiology
Epilepsy - surgery
Evoked Potentials, Auditory - physiology
Female
Humans
Male
Middle Aged
Neurosurgical Procedures
Prosencephalon - physiology
Temporal Lobe - physiology
title Functional Connections Between Auditory Cortex on Heschl's Gyrus and on the Lateral Superior Temporal Gyrus in Humans
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