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Quantitative Measurement of the Three-dimensional Structure of the Vocal Folds and Its Application in Identifying the Type of Cricoarytenoid Joint Dislocation
- Source :
- Journal of Voice. 33:611-619
- Publication Year :
- 2019
- Publisher :
- Elsevier BV, 2019.
-
Abstract
- The objective of this study was to quantitatively measure the three-dimensional (3D) structure of the vocal folds in normal subjects and in patients with different types of cricoarytenoid dislocation. We will analyze differences in parameters between the groups and also determine if any morphologic parameters possess utility in distinguishing the type and the degree of cricoarytenoid dislocation.This retrospective study was conducted using university hospital data.Subjects' larynges were scanned using dual-source computed tomography (CT). The normal subjects were divided into deep-inhalation and phonation groups, and patients with cricoarytenoid joint dislocation were divided into anterior-dislocation and posterior-dislocation groups. Membranous vocal fold length and width were measured directly on the thin-section CT images. Vocal fold and airway 3D models were constructed using Mimics software and used in combination to measure vocal fold thickness, subglottal convergence angle, and oblique angle of the vocal folds.The phonation group displayed a greater vocal fold width, greater oblique angle, thinner vocal folds, and a smaller subglottal convergence angle than those of the deep-inhalation group (P 0.05). The anterior-dislocation group displayed a smaller oblique angle and subglottal convergence angle than the posterior-dislocation group (P 0.05).The 3D structure of the vocal folds during deep inhalation and phonation can be accurately measured using dual-source CT and laryngeal 3D reconstruction. As the anterior-dislocation group yielded negative values for the oblique angle and the posterior-dislocation group yielded positive values, the oblique angle of the vocal folds may possess utility for distinguishing the type and for quantitatively determining the degree of cricoarytenoid dislocation.
- Subjects :
- Adult
Male
Patient-Specific Modeling
Joint Dislocations
3d model
Computed tomography
Vocal Cords
Cricoarytenoid Joint
Cricoid Cartilage
030507 speech-language pathology & audiology
03 medical and health sciences
Speech and Hearing
Imaging, Three-Dimensional
0302 clinical medicine
Phonation
Predictive Value of Tests
medicine
Humans
In patient
030223 otorhinolaryngology
Retrospective Studies
Mathematics
medicine.diagnostic_test
Fold (geology)
Anatomy
Middle Aged
LPN and LVN
University hospital
medicine.anatomical_structure
Inhalation
Otorhinolaryngology
Vocal folds
Female
Joints
Tomography, X-Ray Computed
0305 other medical science
Arytenoid Cartilage
Subjects
Details
- ISSN :
- 08921997
- Volume :
- 33
- Database :
- OpenAIRE
- Journal :
- Journal of Voice
- Accession number :
- edsair.doi.dedup.....7acfc6f11ee9e11f9c5f89ed2b74ac7d