Comparison of dual-time-constant and fast-acting automatic gain control (AGC) systems in cochlear implants.

Cochlear implants usually employ an automatic gain control (AGC) system as a first stage of processing. AGC1 was a fast-acting (syllabic) compressor. AGC2 was a dual-time-constant system; it usually performed as a slow-acting compressor, but incorporated an additional fast-acting system to provide p...

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Detalles Bibliográficos
Publicado en:International Journal of Audiology Vol. 48; no. 4; pp. 211 - 222
Autores principales: Boyle PJ, Büchner A, Stone MA, Lenarz T, Moore BCJ
Formato: research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Apr2009
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Cochlear implants usually employ an automatic gain control (AGC) system as a first stage of processing. AGC1 was a fast-acting (syllabic) compressor. AGC2 was a dual-time-constant system; it usually performed as a slow-acting compressor, but incorporated an additional fast-acting system to provide protection from sudden increases in sound level. Six experienced cochlear-implant users were tested in a counterbalanced order, receiving one-month of experience with a given AGC type before switching to the other type. Performance was evaluated shortly after provision of a given AGC type and after one-month of experience with that AGC type. Questionnaires, mainly relating to listening in quiet situations, did not reveal significant differences between the two AGC types. However, fixed-level and roving-level tests of sentence identification in noise both revealed significantly better performance for AGC2. It is suggested that the poorer performance for AGC1 occurred because AGC1 introduced cross-modulation between the target speech and background noise, which made perceptual separation of the target and background more difficult.