Literature DB >> 33850252

Investigations on the potential of optical coherence tomography as an imaging tool for eustachian tube.

Xiao-Mei Sun1, Jia-Qi Luo1, Zhi-Wen Xiao1, Qing-Yu Gu1, Lin-Chan Lan1, Hui-Qing Zhang1, Guan-Ping Zhang2.   

Abstract

The purpose of this study was to explore the feasibility of eustachian tube optical coherence tomography (ET-OCT) for imaging the pharyngeal region of the eustachian tube (ET). Ten subjects with ear complaints underwent ET-OCT guided by nasal endoscopy, and ET-OCT examination was performed on both sides of each subject's ETs. The process and resulting images were analysed. Ten subjects ranging from 21 to 73 years old (45 ± 14.77) were enrolled in this study. Eighteen ET-OCT imaging examinations were completed. The mean duration of each examination was 2.80 ± 1.62 min (ranging from 2 to 7 min). There were no adverse events or complications. In some subjects, the ET-OCT images clearly presented the microstructures of the ET wall, including the lumen, mucosa, submucosa, cartilage and plica. However, in some subjects, it showed different characteristics, such as an unclear hierarchy and secretions in the lumen. ET-OCT may help to distinguish the structural composition of the ET and elucidate related pathophysiological mechanisms. It is a valuable imaging tool suited for the ET, with potential diagnostic value in determining the morphology of the lumen, intraluminal mucosa and submucosal tissue in the pharyngeal region of the ET.

Entities:  

Year:  2021        PMID: 33850252     DOI: 10.1038/s41598-021-87637-6

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  25 in total

1.  Consensus standards for acquisition, measurement, and reporting of intravascular optical coherence tomography studies: a report from the International Working Group for Intravascular Optical Coherence Tomography Standardization and Validation.

Authors:  Guillermo J Tearney; Evelyn Regar; Takashi Akasaka; Tom Adriaenssens; Peter Barlis; Hiram G Bezerra; Brett Bouma; Nico Bruining; Jin-man Cho; Saqib Chowdhary; Marco A Costa; Ranil de Silva; Jouke Dijkstra; Carlo Di Mario; Darius Dudek; Darius Dudeck; Erling Falk; Erlin Falk; Marc D Feldman; Peter Fitzgerald; Hector M Garcia-Garcia; Hector Garcia; Nieves Gonzalo; Juan F Granada; Giulio Guagliumi; Niels R Holm; Yasuhiro Honda; Fumiaki Ikeno; Masanori Kawasaki; Janusz Kochman; Lukasz Koltowski; Takashi Kubo; Teruyoshi Kume; Hiroyuki Kyono; Cheung Chi Simon Lam; Guy Lamouche; David P Lee; Martin B Leon; Akiko Maehara; Olivia Manfrini; Gary S Mintz; Kyiouchi Mizuno; Marie-angéle Morel; Seemantini Nadkarni; Hiroyuki Okura; Hiromasa Otake; Arkadiusz Pietrasik; Francesco Prati; Lorenz Räber; Maria D Radu; Johannes Rieber; Maria Riga; Andrew Rollins; Mireille Rosenberg; Vasile Sirbu; Patrick W J C Serruys; Kenei Shimada; Toshiro Shinke; Junya Shite; Eliot Siegel; Shinjo Sonoda; Shinjo Sonada; Melissa Suter; Shigeho Takarada; Atsushi Tanaka; Mitsuyasu Terashima; Troels Thim; Thim Troels; Shiro Uemura; Giovanni J Ughi; Heleen M M van Beusekom; Antonius F W van der Steen; Gerrit-Anne van Es; Gerrit-Ann van Es; Gijs van Soest; Renu Virmani; Sergio Waxman; Neil J Weissman; Giora Weisz
Journal:  J Am Coll Cardiol       Date:  2012-03-20       Impact factor: 24.094

2.  Optical coherence tomography for the diagnosis and evaluation of human otitis media.

Authors:  Nam Hyun Cho; Sang Heun Lee; Woonggyu Jung; Jeong Hun Jang; Jeehyun Kim
Journal:  J Korean Med Sci       Date:  2015-02-16       Impact factor: 2.153

3.  Airway wall thickness assessed using computed tomography and optical coherence tomography.

Authors:  Harvey O Coxson; Brendan Quiney; Don D Sin; Li Xing; Annette M McWilliams; John R Mayo; Stephen Lam
Journal:  Am J Respir Crit Care Med       Date:  2008-02-28       Impact factor: 21.405

4.  Optical coherence tomography.

Authors:  D Huang; E A Swanson; C P Lin; J S Schuman; W G Stinson; W Chang; M R Hee; T Flotte; K Gregory; C A Puliafito
Journal:  Science       Date:  1991-11-22       Impact factor: 47.728

5.  Evaluation of tracheal imaging by optical coherence tomography.

Authors:  Sukgu Han; Naglaa H El-Abbadi; Nevine Hanna; Usama Mahmood; Reza Mina-Araghi; Woong-Gyu Jung; Zhongping Chen; Henri Colt; Matthew Brenner
Journal:  Respiration       Date:  2005 Sep-Oct       Impact factor: 3.580

6.  Clinical Characterization of Coronary Atherosclerosis With Dual-Modality OCT and Near-Infrared Autofluorescence Imaging.

Authors:  Giovanni J Ughi; Hao Wang; Edouard Gerbaud; Joseph A Gardecki; Ali M Fard; Ehsan Hamidi; Paulino Vacas-Jacques; Mireille Rosenberg; Farouc A Jaffer; Guillermo J Tearney
Journal:  JACC Cardiovasc Imaging       Date:  2016-03-09

7.  Three-dimensional coronary artery microscopy by intracoronary optical frequency domain imaging.

Authors:  Guillermo J Tearney; Sergio Waxman; Milen Shishkov; Benjamin J Vakoc; Melissa J Suter; Mark I Freilich; Adrien E Desjardins; Wang-Yul Oh; Lisa A Bartlett; Mireille Rosenberg; Brett E Bouma
Journal:  JACC Cardiovasc Imaging       Date:  2008-11

Review 8.  Intracoronary optical coherence tomography: a comprehensive review clinical and research applications.

Authors:  Hiram G Bezerra; Marco A Costa; Giulio Guagliumi; Andrew M Rollins; Daniel I Simon
Journal:  JACC Cardiovasc Interv       Date:  2009-11       Impact factor: 11.195

9.  Optical Vaginal Biopsy Using Optical Coherence Tomography.

Authors:  Neha Talreja Sudol; Yusi Miao; Yan Li; Jason J Chen; Joseph C Jing; Jiang Zhu; Yona Tadir; Zhongping Chen; Felicia Lane
Journal:  Female Pelvic Med Reconstr Surg       Date:  2020-02       Impact factor: 1.913

10.  A neurovascular high-frequency optical coherence tomography system enables in situ cerebrovascular volumetric microscopy.

Authors:  Giovanni J Ughi; Miklos G Marosfoi; Robert M King; Jildaz Caroff; Lindsy M Peterson; Benjamin H Duncan; Erin T Langan; Amanda Collins; Anita Leporati; Serge Rousselle; Demetrius K Lopes; Matthew J Gounis; Ajit S Puri
Journal:  Nat Commun       Date:  2020-07-31       Impact factor: 14.919

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