University of Maryland
College Park, Maryland, 20742, United States
NCT Number: NCT03475043
Millions of elderly adults in the USA have age related hearing loss (ARHL), a malady that affects half of adults 60-69 years, and the majority of older adults. This hearing loss not only impacts communication and functional ability, but also is strongly associated with cognitive decline and decreased quality of life. This project aims to develop effective strategies to compensate and reverse this process through a deeper understanding of plasticity and adaptive auditory function, and how to engage it and harness it to remedy ARHL.
Looking for future studies?
Notify Me18 year–85 year
All sexes
Interventional
Not applicable
College Park, Maryland, 20742, United States
The detrimental effects of aging on auditory temporal processing have been well documented in humans and animal models. At present, there are gaps in knowledge of the extent to which these auditory temporal processing deficits can be mitigated in older adults with or without hearing loss through auditory training and neuroplasticity, to improve precision of neural timing and speech understanding. The long-term goal is to determine the extent to which hearing deficits in older adults can be ameliorated with auditory training. The investigators propose an innovative approach to the investigation of aging, hearing, and neuroplasticity by marrying perceptual training experiments with electrophysiological measurements. The objectives are to compare young normal-hearing (YNH), older normal-hearing (ONH), and older hearing-impaired (OHI) adult listeners, and evaluate the improvements in perceptual and electrophysiological measures of temporal processing after explicit training on auditory temporal processing tasks. The central hypothesis is that training of auditory temporal processing will produce concomitant improvements in both perceptual performance and neural encoding, which will close the gap in the age-related differences between groups. The central hypothesis will be tested by pursuing two specific aims: (Aim 1) Determine the extent to which perceptual training on temporal rate discrimination using simple non-speech stimuli improves perceptual and neural encoding in YNH, ONH, and OHI listeners; and (Aim 2) Determine the extent to which perceptual training on the processing of sentences with increasing presentation rate can improve behavioral performance and neural encoding in YNH, ONH, and OHI listeners. The expected outcomes are that the investigators will learn what perceptual training tasks lead to simultaneous improvements in perceptual and neural auditory temporal processing and the findings will produce a significant impact in older listeners who experience difficulty in communicating in daily life because they will lead directly to focused and novel forms of rehabilitation. This research is innovative because the investigators will have established techniques that are proven to provide significant improvements in auditory temporal processing and speech perception, combined with evidence of improvements to neural encoding. These studies will serve the larger goals of the program project grant because they will help identify the neuroplastic mechanisms in the brain of humans that correspond to successful behavioral outcomes in younger and older adults.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Behavioral training for 6-9 hours in listening to specific characteristics of acoustic signals. Listeners receive correct-answer feedback on each trial.
Other names: Auditory training: non-temporal cues
Time frame: completion of study, approximately 30 months
Decrease in threshold (in msec) for discriminating a comparison pulse train to a standard, decrease in cross-over points (in msec) for trained word contrasts, and increase in rate of speech for 50% correct recognition
Time frame: completion of study, approximately 24 months
Increase in speech rate at which listener maintains 50% and 80% correct recognition
Time frame: completion of study, approximately 30 months
Increase in spectral energy for pulse trains, cessation of neural phase locking for trained words during silent intervals of the word, and increase in phase-locking factor following training of time-compressed speech, as measured on the Auditory Steady-State Response
Time frame: completion of study in approximately 24 months
Increase in phase-locking factor following training of time-compressed speech, as measured in the frequency-following response
Time frame: completion of study in approximately 24 months
Increase in reconstruction accuracy following training of time-compressed speech, as measured with envelope tracking to five-minute speech samples
University of Maryland, College Park
Other
Neuroplasticity in Auditory Aging_Auditory Temporal processing_Project 2
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT03468660
Aging Problems, Auditory Diseases, Central
College Park, Maryland, United States
View Trial DetailsNCT02680730
Auditory Diseases, Central, Auditory Perceptual Disorders
Mississauga, Ontario, Canada
View Trial DetailsNCT02398422
Auditory Diseases, Central, Auditory Perceptual Disorders
Los Angeles, California, United States
View Trial DetailsNCT02064257
Auditory Diseases, Central, Auditory Perceptual Disorders
Ringwood, Victoria, Australia
View Trial Details