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1
Clinical Applications of Otoacoustic Emissions: How Much Do We Really Know After 40 Years?
In: ETSU Faculty Works (2017)
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2
Diabetes Mellitus and the Effects on Auditory Processing
In: ETSU Faculty Works (2017)
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3
Musical Training Influences Auditory Temporal Processing
In: ETSU Faculty Works (2016)
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4
Preadolescent Musical Training Influences Spatial Listening and Temporal Processing
In: ETSU Faculty Works (2016)
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5
New Clinical Applications of Otoacoustic Emissions
In: ETSU Faculty Works (2016)
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6
Frequency Modulated Distortion-product Otoacoustic Emission (FMDPOAE) Tests Aimed for Improving Diagnostic Performance
In: ETSU Faculty Works (2016)
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7
Implementing Frequency Modulation of Primary Tones Decreases the Depth of Distortion Product Otoacoustic Emission Microstructures
In: ETSU Faculty Works (2015)
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8
Protocols of DPOAE Measurements Aimed at Reducing Test Time
In: ETSU Faculty Works (2015)
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9
Investigation of Auditory Processing Deficits in Patients with Diabetes Mellitus
In: ETSU Faculty Works (2015)
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10
Investigation of Auditory Processing Deficits in Patients With Type II Diabetes Mellitus (DM)
In: ETSU Faculty Works (2014)
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11
Monitoring the Recovery from a Temporary Threshold Shift Using an Adaptive Procedure and Measurements of Spontaneous and Distortion Product Otoacoustic Emissions
In: ETSU Faculty Works (2014)
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12
Hearing Loss in the Dental Office: The Effects of High Speed Dental Drills on Dentists' Hearing
In: ETSU Faculty Works (2013)
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13
Tinnitus and High Frequency Hearing: a Study of 175 Cases
In: ETSU Faculty Works (2013)
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14
Acoustic Foundations of Signal Enhancement and Room Acoustics
In: ETSU Faculty Works (2013)
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15
Tinnitus and Normal Hearing: A Study of 175 Cases
In: ETSU Faculty Works (2012)
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16
The Influence of High Frequency Hearing Loss on the Distortion Product Otoacoustic Emissions in Tinnitus Subjects with Normal Hearing Thresold (0,25-8kHz)
In: ETSU Faculty Works (2012)
Abstract: Aim of the study: To evaluate the influence of high frequency hearing loss (>8000 Hz) on distortion product otoacoustic emissions registered in the frequency range from 0,5 to 8 kHz. Material and methods: 280 ears with tinnitus and normal hearing (0.25–8 kHz) divided into 3 groups depending on the degree of high frequency hearing loss: group A – hearing threshold up to 20 dB for 10, 12.5, 14 and 16 kHz (68 ears); group B – hearing threshold 25–40 dB HLfor at least one of four EHfs (93 ears); group C – hearing threshold above 40 dB HL for at least one of four EHFs (119 ears). For each group mean audiogram and DP-gram were obtained and statistical analysis was used for comparison across these groups. Results: Mean DPOAE values in group C were significantly lower in comparison with group A for the frequency range 2–8 kHz, and in comparison with group B were significantly lower for the frequency range 4–8 kHz. Conclusions: High frequency hearing loss (above 8 kHz) has a relevant influence on distortion product otoacoustic emissions registered at frequencies below 8 kHz in tinnitus patients. The greater is hearing loss above 8 kHz, the lower is DPOAE value below 8 kHz.
Keyword: Audiology and Speech-Language Pathology; DPOAE; high frequency audiometry; Speech and Hearing Science; Speech Pathology and Audiology; tinnitus
URL: https://dc.etsu.edu/etsu-works/1993
https://doi.org/10.1016/j.otpol.2012.06.024
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17
Otoacoustic Emissions: The Influence of the Middle-ear Function, SFOAEs, and OAEs as a Diagnostic Predictor for Cochlear Impairment
In: ETSU Faculty Works (2012)
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18
The Relationship Between Distortion Product Otoacoustic Emissions and Extended High-Frequency Audiometry in Tinnitus Patients
In: ETSU Faculty Works (2012)
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19
Recent Advances in Cochlear Physiology
In: ETSU Faculty Works (2012)
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20
Auditory Temporal Processing of Speech and Non-speech Contrasts in Specialized Listeners
In: ETSU Faculty Works (2012)
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