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Vestibular Consequences of Noise Exposure in Humans
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In: ETSU Faculty Works (2018)
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The Video Head Impulse Test: Background and Clinical Application
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In: ETSU Faculty Works (2017)
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Contemporary Issues in Vestibular Assessment
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In: ETSU Faculty Works (2017)
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Reliability and Validity of Bertec Computerized Dynamic Posturography
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In: ETSU Faculty Works (2017)
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Contemporary Issues in Vestibular Assessment
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In: ETSU Faculty Works (2016)
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Novel Video Head Impulse Findings in an Asymptomatic Individual with Unilateral Vestibular Loss
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In: ETSU Faculty Works (2016)
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8 |
Reliability of Regression Gain Versus Instantaneous Gain During Video Head Impulse Testing
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In: ETSU Faculty Works (2016)
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Intra- and Inter-Examiner Reliability of the Binocular Video Head Impulse Test
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In: ETSU Faculty Works (2016)
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Intra- and Inter-Examiner Reliability of the Video Head Impulse Test
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In: ETSU Faculty Works (2015)
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Clinical Assessment of Otolith Organ Function
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In: ETSU Faculty Works (2015)
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Inter-ocular Gain Differences of The Horizontal Vestibulo-ocular Reflex During the Video Head Impulse Test
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In: ETSU Faculty Works (2015)
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The Video Head Impulse Test: Normal Reference Intervals & Test-Retest Reliability
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In: ETSU Faculty Works (2014)
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Intra- and Inter-Examiner Reliability of the Video Head Impulse Test
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In: ETSU Faculty Works (2014)
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Vestibular Evoked Myogenic Potentials
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In: ETSU Faculty Works (2013)
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18 |
Vestibular-Related Traumatic Brain Injury: A Preliminary Voxel-Based Morphometry Analysis
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In: ETSU Faculty Works (2013)
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Abstract:
Vestibular-related problems (dizziness, vertigo, and imbalance) are common sequelae following concussion and blast exposures that result in mild traumatic brain injury (mTBI). However, the anatomical substrate connected to these dysfunctions is not well understood. To provide a better understanding of this area, we used voxel-based morphometry (VBM) as a platform for studying vestibular-related mTBI in the human brain. Briefly, VBM is a group comparison study which evaluates structural differences in magnetic resonance (MR) images between agematched groups of individuals (11 vestibular TBI patients and 10 controls). Using the VBM-8 Toolbox and statistical probability mapping (SPM), MRI images were segmented into gray matter, white matter, and cerebrospinal fluid, normalized into a standardized anatomical space, and then analyzed statistically for significant anatomical differences between groups. Based on the VBM analysis, most notable differences in brain anatomy were characterized by reductions in gray matter volume observed in the middle frontal gyrus, mesial frontal lobe, and in the insular area in the left mesial temporal lobe. These findings provide a preliminary analysis of distributed gray matter changes in key frontal and temporal areas of the brain associated with mTBI related vestibular dysfunction.
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Keyword:
audiology; Audiology and Speech-Language Pathology; binocular; preliminary; Speech and Hearing Science; Speech Pathology and Audiology; traumatic brain injury: a preliminary voxel-brain injury; vestibular-related traumatic brain injury; video head impulse test; vnalysisibular studies; voxel-based injury
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URL: https://dc.etsu.edu/etsu-works/1882
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The Ocular Vestibular Evoked Myogenic Potential
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In: ETSU Faculty Works (2011)
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