Age-related Hearing Loss and Ear Morphology Affect Vertical but not Horizontal Sound-Localization Performance

被引:0
作者
Rik J. Otte
Martijn J. H. Agterberg
Marc M. Van Wanrooij
Ad F. M. Snik
A. John Van Opstal
机构
[1] Radboud University Nijmegen,Department of Biophysics, Donders Institute for Brain, Cognition and Behaviour
[2] Radboud University Nijmegen Medical Centre,Department of Otorhinolaryngology, Donders Institute for Brain, Cognition and Behaviour
来源
Journal of the Association for Research in Otolaryngology | 2013年 / 14卷
关键词
children; directional hearing; ear morphology; head movements; older adults; transfer function;
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中图分类号
学科分类号
摘要
Several studies have attributed deterioration of sound localization in the horizontal (azimuth) and vertical (elevation) planes to an age-related decline in binaural processing and high-frequency hearing loss (HFHL). The latter might underlie decreased elevation performance of older adults. However, as the pinnae keep growing throughout life, we hypothesized that larger ears might enable older adults to localize sounds in elevation on the basis of lower frequencies, thus (partially) compensating their HFHL. In addition, it is not clear whether sound localization has already matured at a very young age, when the body is still growing, and the binaural and monaural sound-localization cues change accordingly. The present study investigated sound-localization performance of children (7–11 years), young adults (20–34 years), and older adults (63–80 years) under open-loop conditions in the two-dimensional frontal hemifield. We studied the effect of age-related hearing loss and ear size on localization responses to brief broadband sound bursts with different bandwidths. We found similar localization abilities in azimuth for all listeners, including the older adults with HFHL. Sound localization in elevation for the children and young adult listeners with smaller ears improved when stimuli contained frequencies above 7 kHz. Subjects with larger ears could also judge the elevation of sound sources restricted to lower frequency content. Despite increasing ear size, sound localization in elevation deteriorated in older adults with HFHL. We conclude that the binaural localization cues are successfully used well into later stages of life, but that pinna growth cannot compensate the more profound HFHL with age.
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页码:261 / 273
页数:12
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共 87 条
  • [1] Abel SM(1996)Sound localization. The interaction of aging, hearing loss and hearing protection Scand Audiol 25 3-12
  • [2] Hay VH(2000)The effect of aging on horizontal plane sound localization J Acoust Soc Am 108 743-752
  • [3] Abel SM(2011)Improved horizontal directional hearing in bone conduction device users with acquired unilateral conductive hearing loss J Assoc Res Otolaryngol 12 1-11
  • [4] Giguère C(1987)Precision of auditory localization in human infants Dev Psychol 23 641-647
  • [5] Consoli A(1967)The role of the pinna in human sound localization Proc R Soc Lond B Biol Sci 168 158-180
  • [6] Papsin BC(1990)Age-changes in pure-tone hearing thresholds in a longitudinal-study of normal human aging J Acoust Soc Am 88 813-820
  • [7] Agterberg MJ(2010)Pinna Cues determine orienting response modes to synchronous sounds in elevation J Neurosci 30 194-204
  • [8] Snik AF(1997)Ear biometrics Springer Int Ser Eng Comput Sci 479 273-285
  • [9] Hol MK(2001)Introduction to head-related transfer functions (HRTFs): representations of HRTFs in time, frequency, and space J Audio Eng Soc 49 231-249
  • [10] van Esch TE(2011)The influence of aging on human sound localization J Neurophysiol 105 2471-2486