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      Spatial release from masking based on binaural processing for up to six maskers

      research-article
      The Journal of the Acoustical Society of America
      Acoustical Society of America

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          Abstract

          Spatial Release from Masking (SRM) was measured for identification of a female target word spoken in the presence of male masker words. Target words from a single loudspeaker located at midline were presented when two, four, or six masker words were presented either from the same source as the target or from spatially separated masker sources. All masker words were presented from loudspeakers located symmetrically around the centered target source in the front azimuth hemifield. Three masking conditions were employed: speech-in-speech masking (involving both informational and energetic masking), speech-in-noise masking (involving energetic masking), and filtered speech-in-filtered speech masking (involving informational masking). Psychophysical results were summarized as three-point psychometric functions relating proportion of correct word identification to target-to-masker ratio (in decibels) for both the co-located and spatially separated target and masker sources cases. SRM was then calculated by comparing the slopes and intercepts of these functions. SRM decreased as the number of symmetrically placed masker sources increased from two to six. This decrease was independent of the type of masking, with almost no SRM measured for six masker sources. These results suggest that when SRM is dependent primarily on binaural processing, SRM is effectively limited to fewer than six sound sources.

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          Author and article information

          Journal
          J Acoust Soc Am
          J. Acoust. Soc. Am
          JASMAN
          The Journal of the Acoustical Society of America
          Acoustical Society of America
          0001-4966
          1520-8524
          March 2017
          23 March 2017
          : 141
          : 3
          : 2093-2106
          Affiliations
          Speech and Hearing Science, Arizona State University , P.O. Box 870102, Tempe, Arizona 85287, USA
          Author notes
          [a)]

          Electronic mail: william.yost@ 123456asu.edu

          Article
          PMC5848840 PMC5848840 5848840 1.4978614 052703JAS JASA-01168
          10.1121/1.4978614
          5848840
          28372135
          7f68148d-7ea3-4cb8-8f5c-7200ced59b5e
          © 2017 Acoustical Society of America.

          0001-4966/2017/141(3)/2093/14/ $30.00

          History
          : 09 September 2016
          : 24 February 2017
          : 28 February 2017
          Page count
          Pages: 14
          Categories
          Psychological and Physiological Acoustics
          Custom metadata

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