Τετάρτη 19 Οκτωβρίου 2016

Spatial and temporal disparity in signals and maskers affects signal detection in non-human primates

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Francesca Rocchi, Margit E. Dylla, Peter A. Bohlen, Ramnarayan Ramachandran
Detection thresholds for auditory stimuli (signals) increase in the presence of maskers. Natural environments contain maskers/distractors that can have a wide range of spatiotemporal properties relative to the signal. While these parameters have been well explored psychophysically in humans, they have not been well explored in animal models, and their neuronal underpinnings are not well understood. As a precursor to the neuronal measurements, we report the effects of systematically varying the spatial and temporal relationship between signals and noise in macaque monkeys (Macaca mulatta and Macaca radiata). Macaques detected tones masked by noise in a Go/No-Go task in which the spatiotemporal relationships between the tone and noise were systematically varied. Masked thresholds were higher when the masker was continuous or gated on and off simultaneously with the signal, and lower when the continuous masker was turned off during the signal. A burst of noise caused higher masked thresholds if it completely temporally overlapped with the signal, whereas partial overlap resulted in lower thresholds. Noise durations needed to be at least 100 ms before significant masking could be observed. Thresholds for short duration tones were significantly higher when the onsets of signal and masker coincided compared to when the signal was presented during the steady state portion of the noise (overshoot). When signal and masker were separated in space, masked signal detection thresholds decreased relative to when the masker and signal were co-located (spatial release from masking). Masking release was larger for azimuthal separations than for elevation separations. These results in macaques are similar to those observed in humans, suggesting that the specific spatiotemporal relationship between signal and masker determine threshold in natural environments for macaques in a manner similar to humans. These results form the basis for future investigations of neuronal correlates and mechanisms of masking.



from #Audiology via xlomafota13 on Inoreader http://ift.tt/2eTJGRi
via IFTTT

The influence of memory and attention on the ear advantage in dichotic listening

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Anita D’Anselmo, Daniele Marzoli, Alfredo Brancucci
The role of memory retention and attentional control on hemispheric asymmetry was investigated using a verbal dichotic listening paradigm, with the consonant–vowel syllables (/ba/,/da/,/ga/,/ka/,/pa/and/ta/), while manipulating the focus of attention and the time interval between stimulus and response. Attention was manipulated using three conditions: non-forced (NF), forced left (FL) and forced right (FR) attention. Memory involvement was varied using four delays (0, 1, 3 and 4 s) between stimulus presentation and response. Results showed a significant right ear advantage (REA) in the NF condition and an increased REA in the FR condition. A left ear advantage (LEA) was found in FL condition. The REA increased significantly in the NF attention condition at the 3-s compared to the 0-s delay and in the FR condition at the 1-s compared to the 0-s delay. No modulation of the left ear advantage was observed in the FL condition. These results are discussed in terms of an interaction between attentional processes and memory retention.



from #Audiology via xlomafota13 on Inoreader http://ift.tt/2enET7R
via IFTTT

Performance in Noise: Impact of Reduced Speech Intelligibility on Sailor Performance in a Navy Command and Control Environment

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): M. David Keller, John M. Ziriax, William Barns, Benjamin Sheffield, Douglas Brungart, Tony Thomas, Bobby Jaeger, Kurt Yankaskas
Noise, hearing loss, and electronic signal distortion, which are common problems in military environments, can impair speech intelligibility and thereby jeopardize mission success. The current study investigated the impact that impaired communication has on operational performance in a command and control environment by parametrically degrading speech intelligibility in a simulated shipborne Combat Information Center. Experienced U.S. Navy personnel served as the study participants and were required to monitor information from multiple sources and respond appropriately to communications initiated by investigators playing the roles of other personnel involved in a realistic Naval scenario. In each block of the scenario, an adaptive intelligibility modification system employing automatic gain control was used to adjust the signal-to-noise ratio to achieve one of four speech intelligibility levels on a Modified Rhyme Test: No Loss, 80%, 60%, or 40%. Objective and subjective measures of operational performance suggested that performance systematically degraded with decreasing speech intelligibility, with the largest drop occurring between 80% and 60%. These results confirm the importance of noise reduction, good communication design, and effective hearing conservation programs to maximize the operational effectiveness of military personnel.



from #Audiology via xlomafota13 on Inoreader http://ift.tt/2eTIQ6W
via IFTTT

Category Selectivity of the N170 and the Role of Expertise in Deaf Signers

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Teresa V. Mitchell
Deafness is known to affect processing of visual motion and information in the visual periphery, as well as the neural substrates for these domains. This study was designed to characterize the effects of early deafness and lifelong sign language use on visual category sensitivity of the N170 event-related potential. Images from nine categories of visual forms including upright faces, inverted faces, and hands were presented to twelve typically hearing adults and twelve adult congenitally deaf signers. Classic N170 category sensitivity was observed in both participant groups, whereby faces elicited larger amplitudes than all other visual categories, and inverted faces elicited larger amplitudes and slower latencies than upright faces. In hearing adults, hands elicited a right hemispheric asymmetry while in deaf signers this category elicited a left hemispheric asymmetry. Pilot data from five hearing native signers suggests that this effect is due to lifelong use of American Sign Language rather than auditory deprivation itself.



from #Audiology via xlomafota13 on Inoreader http://ift.tt/2enDdv8
via IFTTT

Editorial Introduction: Special Issue on Plasticity Following Hearing Loss and Deafness

alertIcon.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Blake E. Butler, M. Alex Meredith, Stephen G. Lomber




from #Audiology via xlomafota13 on Inoreader http://ift.tt/2eTGQMl
via IFTTT

Musicians' edge: a comparison of auditory processing, cognitive abilities and statistical learning

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Pragati Rao Mandikal Vasuki, Mridula Sharma, Katherine Demuth, Joanne Arciuli
It has been hypothesized that musical expertise is associated with enhanced auditory processing and cognitive abilities. Recent research has examined the relationship between musicians’ advantage and implicit statistical learning skills. In the present study, we assessed a variety of auditory processing skills, cognitive processing skills, and statistical learning (auditory and visual forms) in age-matched musicians (N=17) and non-musicians (N=18). Musicians had significantly better performance than non-musicians on frequency discrimination, and backward digit span. A key finding was that musicians had better auditory, but not visual, statistical learning than non-musicians. Performance on the statistical learning tasks was not correlated with performance on auditory and cognitive measures. Musicians’ superior performance on auditory (but not visual) statistical learning suggests that musical expertise is associated with an enhanced ability to detect statistical regularities in auditory stimuli.



from #Audiology via xlomafota13 on Inoreader http://ift.tt/2em0123
via IFTTT

Spatial and temporal disparity in signals and maskers affects signal detection in non-human primates

S03785955.gif

Publication date: Available online 19 October 2016
Source:Hearing Research
Author(s): Francesca Rocchi, Margit E. Dylla, Peter A. Bohlen, Ramnarayan Ramachandran
Detection thresholds for auditory stimuli (signals) increase in the presence of maskers. Natural environments contain maskers/distractors that can have a wide range of spatiotemporal properties relative to the signal. While these parameters have been well explored psychophysically in humans, they have not been well explored in animal models, and their neuronal underpinnings are not well understood. As a precursor to the neuronal measurements, we report the effects of systematically varying the spatial and temporal relationship between signals and noise in macaque monkeys (Macaca mulatta and Macaca radiata). Macaques detected tones masked by noise in a Go/No-Go task in which the spatiotemporal relationships between the tone and noise were systematically varied. Masked thresholds were higher when the masker was continuous or gated on and off simultaneously with the signal, and lower when the continuous masker was turned off during the signal. A burst of noise caused higher masked thresholds if it completely temporally overlapped with the signal, whereas partial overlap resulted in lower thresholds. Noise durations needed to be at least 100 ms before significant masking could be observed. Thresholds for short duration tones were significantly higher when the onsets of signal and masker coincided compared to when the signal was presented during the steady state portion of the noise (overshoot). When signal and masker were separated in space, masked signal detection thresholds decreased relative to when the masker and signal were co-located (spatial release from masking). Masking release was larger for azimuthal separations than for elevation separations. These results in macaques are similar to those observed in humans, suggesting that the specific spatiotemporal relationship between signal and masker determine threshold in natural environments for macaques in a manner similar to humans. These results form the basis for future investigations of neuronal correlates and mechanisms of masking.



from #Audiology via ola Kala on Inoreader http://ift.tt/2eTJGRi
via IFTTT