Τετάρτη 27 Ιουνίου 2018

Dimension-selective attention as a possible driver of dynamic,context-dependent re-weighting in speech processing

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Publication date: Available online 26 June 2018
Source:Hearing Research
Author(s): Lori L. Holt, Adam T. Tierney, Giada Guerra, Aeron Laffere, Frederic Dick
The contribution of acoustic dimensions to an auditory percept is dynamically adjusted and reweighted based on prior experience about how informative these dimensions are across the long-term and short-term environment. This is especially evident in speech perception, where listeners differentially weight information across multiple acoustic dimensions, and use this information selectively to update expectations about future sounds. The dynamic and selective adjustment of how acoustic input dimensions contribute to perception has made it tempting to conceive of this as a form of non-spatial auditory selective attention. Here, we review several human speech perception phenomena that might be consistent with auditory selective attention although, as of yet, the literature does not definitively support a mechanistic tie. We relate these human perceptual phenomena to illustrative nonhuman animal neurobiological findings that offer informative guideposts in how to test mechanistic connections. We next present a novel empirical approach that can serve as a methodological bridge from human research to animal neurobiological studies. Finally, we describe four preliminary results that demonstrate its utility in advancing understanding of human non-spatial dimension-based auditory selective attention.



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Dimension-selective attention as a possible driver of dynamic,context-dependent re-weighting in speech processing

S03785955.gif

Publication date: Available online 26 June 2018
Source:Hearing Research
Author(s): Lori L. Holt, Adam T. Tierney, Giada Guerra, Aeron Laffere, Frederic Dick
The contribution of acoustic dimensions to an auditory percept is dynamically adjusted and reweighted based on prior experience about how informative these dimensions are across the long-term and short-term environment. This is especially evident in speech perception, where listeners differentially weight information across multiple acoustic dimensions, and use this information selectively to update expectations about future sounds. The dynamic and selective adjustment of how acoustic input dimensions contribute to perception has made it tempting to conceive of this as a form of non-spatial auditory selective attention. Here, we review several human speech perception phenomena that might be consistent with auditory selective attention although, as of yet, the literature does not definitively support a mechanistic tie. We relate these human perceptual phenomena to illustrative nonhuman animal neurobiological findings that offer informative guideposts in how to test mechanistic connections. We next present a novel empirical approach that can serve as a methodological bridge from human research to animal neurobiological studies. Finally, we describe four preliminary results that demonstrate its utility in advancing understanding of human non-spatial dimension-based auditory selective attention.



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Τρίτη 26 Ιουνίου 2018

Portable Music Players Cause Hearing Loss in Children

​Portable music players are associated with high frequency hearing loss in children, found a recent Dutch study (JAMA Otolaryngol Head Neck Surg 2018; doi:10.1001/jamaoto.2018.0646). Children, aged 9 to 11, had their hearing tested through air-conducted pure-tone audiometry (0.5 to 8kHz) and tympanometry in an audio booth. The tympanometry was used to assess middle ear function. To measure the prevalence of portable music players, the researchers asked the parents of the children to report the average frequency, volume, and length of time spent listening to music from a portable music player by their children.

The study found that 14.2 percent of the children had high-frequency hearing loss or audiometric notches, with 1.7 percent having bilateral impairment. The use of portable music players by 40 percent of the children was significantly associated with high-frequency hearing loss independent of time and volume. This hearing impairment was seen before exposure to other known noise hazards, and the researchers stressed that the damage done at this age might have lifelong consequences.

"Even if all of the study participants used devices that conformed to the regulation, output limits on PMPs are an incomplete solution. Headphones themselves are not regulated and affect output level, and sound output danger is determined both by the sound level and length of listening time," wrote Kevin H. Franck, PhD, MBA, in an editorial published with the study. 

Published: 6/26/2018 9:07:00 AM


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Portable Music Players Cause Hearing Loss in Children

​Portable music players are associated with high frequency hearing loss in children, found a recent Dutch study (JAMA Otolaryngol Head Neck Surg 2018; doi:10.1001/jamaoto.2018.0646). Children, aged 9 to 11, had their hearing tested through air-conducted pure-tone audiometry (0.5 to 8kHz) and tympanometry in an audio booth. The tympanometry was used to assess middle ear function. To measure the prevalence of portable music players, the researchers asked the parents of the children to report the average frequency, volume, and length of time spent listening to music from a portable music player by their children.

The study found that 14.2 percent of the children had high-frequency hearing loss or audiometric notches, with 1.7 percent having bilateral impairment. The use of portable music players by 40 percent of the children was significantly associated with high-frequency hearing loss independent of time and volume. This hearing impairment was seen before exposure to other known noise hazards, and the researchers stressed that the damage done at this age might have lifelong consequences.

"Even if all of the study participants used devices that conformed to the regulation, output limits on PMPs are an incomplete solution. Headphones themselves are not regulated and affect output level, and sound output danger is determined both by the sound level and length of listening time," wrote Kevin H. Franck, PhD, MBA, in an editorial published with the study. 

Published: 6/26/2018 9:07:00 AM


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Portable Music Players Cause Hearing Loss in Children

​Portable music players are associated with high frequency hearing loss in children, found a recent Dutch study (JAMA Otolaryngol Head Neck Surg 2018; doi:10.1001/jamaoto.2018.0646). Children, aged 9 to 11, had their hearing tested through air-conducted pure-tone audiometry (0.5 to 8kHz) and tympanometry in an audio booth. The tympanometry was used to assess middle ear function. To measure the prevalence of portable music players, the researchers asked the parents of the children to report the average frequency, volume, and length of time spent listening to music from a portable music player by their children.

The study found that 14.2 percent of the children had high-frequency hearing loss or audiometric notches, with 1.7 percent having bilateral impairment. The use of portable music players by 40 percent of the children was significantly associated with high-frequency hearing loss independent of time and volume. This hearing impairment was seen before exposure to other known noise hazards, and the researchers stressed that the damage done at this age might have lifelong consequences.

"Even if all of the study participants used devices that conformed to the regulation, output limits on PMPs are an incomplete solution. Headphones themselves are not regulated and affect output level, and sound output danger is determined both by the sound level and length of listening time," wrote Kevin H. Franck, PhD, MBA, in an editorial published with the study. 

Published: 6/26/2018 9:07:00 AM


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Portable Music Players Cause Hearing Loss in Children

​Portable music players are associated with high frequency hearing loss in children, found a recent Dutch study (JAMA Otolaryngol Head Neck Surg 2018; doi:10.1001/jamaoto.2018.0646). Children, aged 9 to 11, had their hearing tested through air-conducted pure-tone audiometry (0.5 to 8kHz) and tympanometry in an audio booth. The tympanometry was used to assess middle ear function. To measure the prevalence of portable music players, the researchers asked the parents of the children to report the average frequency, volume, and length of time spent listening to music from a portable music player by their children.

The study found that 14.2 percent of the children had high-frequency hearing loss or audiometric notches, with 1.7 percent having bilateral impairment. The use of portable music players by 40 percent of the children was significantly associated with high-frequency hearing loss independent of time and volume. This hearing impairment was seen before exposure to other known noise hazards, and the researchers stressed that the damage done at this age might have lifelong consequences.

"Even if all of the study participants used devices that conformed to the regulation, output limits on PMPs are an incomplete solution. Headphones themselves are not regulated and affect output level, and sound output danger is determined both by the sound level and length of listening time," wrote Kevin H. Franck, PhD, MBA, in an editorial published with the study. 

Published: 6/26/2018 9:07:00 AM


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Editorial Board

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Publication date: August 2018
Source:Hearing Research, Volume 365





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