DocumentCode :
1453034
Title :
Accessing the tonotopic organization of the ventral cochlear nucleus by intranuclear microstimulation
Author :
McCreery, Douglas B. ; Shannon, Robert V. ; Moore, Jean K. ; Chatterjee, Monita
Author_Institution :
Neurological Res. Lab., Huntington Med. Res. Inst., Pasadena, CA, USA
Volume :
6
Issue :
4
fYear :
1998
fDate :
12/1/1998 12:00:00 AM
Firstpage :
391
Lastpage :
399
Abstract :
This study is part of a program to develop an auditory prosthesis for the profoundly deaf, based on multichannel microstimulation in the cochlear nucleus. The functionality of such a device is dependent on its ability to access the tonotopic axis of the human ventral cochlear nucleus in an orderly fashion. In these studies, the authors utilized the homologies between the human and feline ventral cochlear nuclei and the known tonotopic organization of the central nucleus of the inferior colliculus (IC). In anesthetized cats, stimuli were delivered to three or four locations along the dorsal-to-ventral axis of the posteroventral cochlear nucleus (PVCN), and for each stimulus location, the authors recorded the multiunit neuronal activity and the field potentials at 20 or more locations along the dorsolateral-ventromedial (tonotopic) axis of the IC. The current source-sink density (CSD), which delimits regions of neuronal activity, was computed from the sequence of field potentials recorded along this axis. The multiunit activity and the CSD analysis both showed that the tonotopic organization of the PVCN can be accessed in an orderly manner by intranuclear microstimulation in several regions of the PVCN, using the range of stimulus pulse amplitudes that have been shown in previous studies to be noninjurious during prolonged intranuclear microstimulation via chronically implanted microelectrodes. The authors discuss the applicability of these findings to the design of clinical auditory prostheses for implantation into the human cochlear nucleus
Keywords :
bioelectric phenomena; ear; hearing aids; prosthetics; auditory prosthesis development; clinical auditory prosthesis implantation; current source-sink density; dorsolateral-ventromedial axis; field potentials; human cochlear nucleus; intranuclear microstimulation; multiunit neuronal activity; neuronal activity regions delimitation; profoundly deaf; stimulus pulse amplitude; tonotopic axis; tonotopic organization accessing; ventral cochlear nucleus; Acoustic arrays; Auditory system; Cats; Cochlear implants; Deafness; Electrodes; Humans; Microelectrodes; Neurons; Prosthetics;
fLanguage :
English
Journal_Title :
Rehabilitation Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6528
Type :
jour
DOI :
10.1109/86.736153
Filename :
736153
Link To Document :
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