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2Effect of age on the gap-prepulse inhibition of the cortical N1-P2 complex in humans as a step towards an objective measure of tinnitus
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[DOI]
4Tinnitus: Maladaptive auditory–somatosensory plasticity
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[DOI]
5Improving the Reliability of Tinnitus Screening in Laboratory Animals
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6Speech Comprehension and Its Relation to Other Auditory Parameters in Elderly Patients With Tinnitus
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[DOI]
7Does Tinnitus Fill in the Gap Using Electrophysiology? A Scoping Review
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8Using Extracochlear Multichannel Electrical Stimulation to Relieve Tinnitus and Reverse Tinnitus-Related Auditory-Somatosensory Plasticity in the Cochlear Nucleus
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9Objective measurement of subjective tinnitus using the acoustic change complex
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[DOI]
10The auditory cortex and tinnitus - a review of animal and human studies
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European Journal of Neuroscience.2015;41(5)665
[DOI]
11Noise-induced plasticity of KCNQ2/3 and HCN channels underlies vulnerability and resilience to tinnitus
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[DOI]
12Changes in the Response Properties of Inferior Colliculus Neurons Relating to Tinnitus
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[DOI]
13Comparison of Silent Gap in Noise Cortical Auditory Evoked Potentials in Matched Tinnitus and No-Tinnitus Control Subjects
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American Journal of Audiology.2019;28(2)260
[DOI]
14The blinking eye as a window into tinnitus: A new animal model of tinnitus in the macaque
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15Gap prepulse inhibition of the auditory late response in healthy subjects
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[DOI]
16Neural signatures of auditory hypersensitivity following acoustic trauma
Matthew McGill,Ariel E Hight,Yurika L Watanabe,Aravindakshan Parthasarathy,Dongqin Cai,Kameron Clayton,Kenneth E Hancock,Anne Takesian,Sharon G Kujawa,Daniel B Polley
eLife.2022;11(11)1511
[DOI]
17Tinnitus: animal models and findings in humans
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[DOI]
18Salicylate-Induced Changes in Hearing Thresholds in Mongolian Gerbils Are Correlated With Tinnitus Frequency but Not With Tinnitus Strength
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[DOI]
19The gap-prepulse inhibition deficit of the cortical N1-P2 complex in patients with tinnitus: The effect of gap duration
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[DOI]
20Insult-induced adaptive plasticity of the auditory system
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Frontiers in Neuroscience.2014;8(1)120
[DOI]
21Exposing Pathological Sensory Predictions in Tinnitus Using Auditory Intensity Deviant Evoked Responses
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22Objective Detection of Tinnitus Based on Electrophysiology
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23What’s the buzz? The neuroscience and the treatment of tinnitus
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[DOI]
24Behavioral Models of Tinnitus and Hyperacusis in Animals
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[DOI]
25GLAST Deficiency in Mice Exacerbates Gap Detection Deficits in a Model of Salicylate-Induced Tinnitus
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[DOI]
26Tinnitus-Related Changes in the Inferior Colliculus
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[DOI]
27Tinnitus and temporary hearing loss result in differential noise-induced spatial reorganization of brain activity
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[DOI]
28Rationale and Efficacy of Sound Therapies for Tinnitus and Hyperacusis
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[DOI]
29Small Compartment Toxicity
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[DOI]
30Animal Models of Subjective Tinnitus
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[DOI]
31Animal models of tinnitus
Thomas J. Brozoski,Carol A. Bauer
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[DOI]
32The gap-startle paradigm to assess auditory temporal processing: Bridging animal and human research
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[DOI]
33A Conditioned Behavioral Paradigm for Assessing Onset and Lasting Tinnitus in Rats
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[DOI]
34Comparison of two behavioral tests for tinnitus assessment in mice
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[DOI]
35An operant-based detection method for inferring tinnitus in mice
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[DOI]
36Gap-induced inhibition of the post-auricular muscle response in humans and guinea pigs
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[DOI]
37Changes in spontaneous movement in response to silent gaps are not robust enough to indicate the perception of tinnitus in mice
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[DOI]
38Alterations in Peripheral and Central Components of the Auditory Brainstem Response: A Neural Assay of Tinnitus
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[DOI]
39Reductions in cortical alpha activity, enhancements in neural responses and impaired gap detection caused by sodium salicylate in awake guinea pigs
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[DOI]
40The Effects of Unilateral Tinnitus on Auditory Temporal Resolution: Gaps-In-Noise Performance
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[DOI]
41Effects of Unilateral Acoustic Trauma on Tinnitus-Related Spontaneous Activity in the Inferior Colliculus
Tessa-Jonne F. Ropp,Kerrie L. Tiedemann,Eric D. Young,Bradford J. May
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[DOI]
42Open(G)PIAS: An Open-Source Solution for the Construction of a High-Precision Acoustic Startle Response Setup for Tinnitus Screening and Threshold Estimation in Rodents
Richard Gerum,Hinrich Rahlfs,Matthias Streb,Patrick Krauss,Jannik Grimm,Claus Metzner,Konstantin Tziridis,Michael Günther,Holger Schulze,Walter Kellermann,Achim Schilling
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[DOI]
43Transient Delivery of a KCNQ2/3-Specific Channel Activator 1 Week After Noise Trauma Mitigates Noise-Induced Tinnitus
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[DOI]
44Gap-induced reductions of evoked potentials in the auditory cortex: A possible objective marker for the presence of tinnitus in animals
Joel I. Berger,William Owen,Caroline A. Wilson,Adam Hockley,Ben Coomber,Alan R. Palmer,Mark N. Wallace
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[DOI]
45Using an appetitive operant conditioning paradigm to screen rats for tinnitus induced by intense sound exposure: Experimental considerations and interpretation
Sarah H. Hayes,Krystal Beh,Marei Typlt,Ashley L. Schormans,Daniel Stolzberg,Brian L. Allman
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[DOI]
46Psychophysical and neural correlates of noised-induced tinnitus in animals: Intra- and inter-auditory and non-auditory brain structure studies
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[DOI]
47Prepulse inhibition predicts subjective hearing in rats
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[DOI]
48Salicylate-Induced Hearing Loss and Gap Detection Deficits in Rats
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[DOI]
49The gap prepulse inhibition of the acoustic startle (GPIAS) paradigm to assess auditory temporal processing: Monaural versus binaural presentation
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[DOI]
50Spontaneous Behavior in Noise and Silence: A Possible New Measure to Assess Tinnitus in Guinea Pigs
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[DOI]
51Untangling the effects of tinnitus and hypersensitivity to sound (hyperacusis) in the gap detection test
R.H. Salloum,S. Sandridge,D.J. Patton,G. Stillitano,G. Dawson,J. Niforatos,L. Santiago,J.A. Kaltenbach
Hearing Research.2016;331(3)92
[DOI]
52A Novel Mouse Model of Aminoglycoside-Induced Hyperacusis and Tinnitus
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[DOI]