Skip to main content
Advertisement

Main menu

  • Home
  • Content
    • Current Issue
    • Accepted Manuscripts
    • Article Preview
    • Past Issue Archive
    • Video Articles
    • AJNR Case Collection
    • Case of the Week Archive
    • Case of the Month Archive
    • Classic Case Archive
  • Special Collections
    • AJNR Awards
    • Low-Field MRI
    • Alzheimer Disease
    • ASNR Foundation Special Collection
    • Photon-Counting CT
    • View All
  • Multimedia
    • AJNR Podcasts
    • AJNR SCANtastic
    • Trainee Corner
    • MRI Safety Corner
    • Imaging Protocols
  • For Authors
    • Submit a Manuscript
    • Submit a Video Article
    • Submit an eLetter to the Editor/Response
    • Manuscript Submission Guidelines
    • Statistical Tips
    • Fast Publishing of Accepted Manuscripts
    • Graphical Abstract Preparation
    • Imaging Protocol Submission
    • Author Policies
  • About Us
    • About AJNR
    • Editorial Board
    • Editorial Board Alumni
  • More
    • Become a Reviewer/Academy of Reviewers
    • Subscribers
    • Permissions
    • Alerts
    • Feedback
    • Advertisers
    • ASNR Home

User menu

  • Alerts
  • Log in

Search

  • Advanced search
American Journal of Neuroradiology
American Journal of Neuroradiology

American Journal of Neuroradiology

ASHNR American Society of Functional Neuroradiology ASHNR American Society of Pediatric Neuroradiology ASSR
  • Alerts
  • Log in

Advanced Search

  • Home
  • Content
    • Current Issue
    • Accepted Manuscripts
    • Article Preview
    • Past Issue Archive
    • Video Articles
    • AJNR Case Collection
    • Case of the Week Archive
    • Case of the Month Archive
    • Classic Case Archive
  • Special Collections
    • AJNR Awards
    • Low-Field MRI
    • Alzheimer Disease
    • ASNR Foundation Special Collection
    • Photon-Counting CT
    • View All
  • Multimedia
    • AJNR Podcasts
    • AJNR SCANtastic
    • Trainee Corner
    • MRI Safety Corner
    • Imaging Protocols
  • For Authors
    • Submit a Manuscript
    • Submit a Video Article
    • Submit an eLetter to the Editor/Response
    • Manuscript Submission Guidelines
    • Statistical Tips
    • Fast Publishing of Accepted Manuscripts
    • Graphical Abstract Preparation
    • Imaging Protocol Submission
    • Author Policies
  • About Us
    • About AJNR
    • Editorial Board
    • Editorial Board Alumni
  • More
    • Become a Reviewer/Academy of Reviewers
    • Subscribers
    • Permissions
    • Alerts
    • Feedback
    • Advertisers
    • ASNR Home
  • Follow AJNR on Twitter
  • Visit AJNR on Facebook
  • Follow AJNR on Instagram
  • Join AJNR on LinkedIn
  • RSS Feeds

AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleHead and Neck Imaging

Comparison of the Utility of High-Resolution CT-DWI and T2WI-DWI Fusion Images for the Localization of Cholesteatoma

X. Fan, C. Ding and Z. Liu
American Journal of Neuroradiology July 2022, 43 (7) 1029-1035; DOI: https://doi.org/10.3174/ajnr.A7538
X. Fan
aFrom the Department of Radiology, Shengjing Hospital of China Medical University, Shenyang, China
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for X. Fan
C. Ding
aFrom the Department of Radiology, Shengjing Hospital of China Medical University, Shenyang, China
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for C. Ding
Z. Liu
aFrom the Department of Radiology, Shengjing Hospital of China Medical University, Shenyang, China
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for Z. Liu
  • Article
  • Figures & Data
  • Info & Metrics
  • Responses
  • References
  • PDF
Loading

References

  1. 1.↵
    1. Yung M,
    2. Tono T,
    3. Olszewska E, et al
    . EAONO/JOS Joint Consensus Statements on the Definitions, Classification and Staging of Middle Ear Cholesteatoma. J Int Adv Otol 2017;13:1–8 doi:10.5152/iao.2017.3363 pmid:28059056
    CrossRefPubMed
  2. 2.↵
    1. Chiao W,
    2. Chieffe D,
    3. Fina M
    . Endoscopic management of primary acquired cholesteatoma. Otolaryngol Clin North Am 2021;54:129–45 doi:10.1016/j.otc.2020.09.014 pmid:33131767
    CrossRefPubMed
  3. 3.↵
    1. Anschuetz L,
    2. Presutti L,
    3. Marchioni D, et al
    . Discovering middle ear anatomy by transcanal endoscopic ear surgery: a dissection manual. J Vis Exp 2018;56390 doi:10.3791/56390 pmid:29364219
    CrossRefPubMed
  4. 4.↵
    1. Prasad SC,
    2. Piras G,
    3. Piccirillo E, et al
    . Surgical strategy and facial nerve outcomes in petrous bone cholesteatoma. Audiol Neurootol 2016;21:275–85 doi:10.1159/000448584 pmid:27710980
    CrossRefPubMed
  5. 5.↵
    1. Lingam R,
    2. Bassett P
    . A meta-analysis on the diagnostic performance of non-echoplanar diffusion-weighted imaging in detecting middle ear cholesteatoma: 10 years on. Otol Neurotol 2017;38:521–28 doi:10.1097/MAO.0000000000001353 pmid:28195998
    CrossRefPubMed
  6. 6.↵
    1. Muzaffar J,
    2. Metcalfe C,
    3. Colley S, et al
    . Diffusion-weighted magnetic resonance imaging for residual and recurrent cholesteatoma: a systematic review and meta-analysis. Clin Otolaryngol 2017;42:536–43 doi:10.1111/coa.12762 pmid:27701821
    CrossRefPubMed
  7. 7.↵
    1. Wiesmueller M,
    2. Wuest W,
    3. May MS, et al
    . Comparison of readout-segmented echo-planar imaging and single-shot TSE DWI for cholesteatoma diagnostics. AJNR Am J Neuroradiol Neuroradiol 2021;42:1305–12 doi:10.3174/ajnr.A7112 pmid:33926901
    Abstract/FREE Full Text
  8. 8.↵
    1. Alzahrani M,
    2. Alhazmi R,
    3. Belair M, et al
    . Postoperative diffusion weighted MRI and preoperative CT scan fusion for residual cholesteatoma localization. Int J Pediatr Otorhinolaryngol 2016;90:259–63 doi:10.1016/j.ijporl.2016.09.034 pmid:27729145
    CrossRefPubMed
  9. 9.↵
    1. Locketz GD,
    2. Li PM,
    3. Fischbein NJ, et al
    . Fusion of computed tomography and PROPELLER diffusion-weighted magnetic resonance imaging for the detection and localization of middle ear cholesteatoma. JAMA Otolaryngol Head Neck Surg 2016;142:947–53 doi:10.1001/jamaoto.2016.1663 pmid:27414044
    CrossRefPubMed
  10. 10.↵
    1. Campos A,
    2. Mata F,
    3. Reboll R, et al
    . Computed tomography and magnetic resonance fusion imaging in cholesteatoma preoperative assessment. Eur Arch Otorhinolaryngol 2017;274:1405–11 doi:10.1007/s00405-016-4415-5 pmid:27921171
    CrossRefPubMed
  11. 11.↵
    1. Felici F,
    2. Scemama U,
    3. Bendahan D, et al
    . Improved assessment of middle ear recurrent cholesteatomas using a fusion of conventional CT and non-EPI-DWI MRI. AJNR Am J Neuroradiol 2019;40:1546–51 doi:10.3174/ajnr.A6141 pmid:31413008
    Abstract/FREE Full Text
  12. 12.↵
    1. Yamashita K,
    2. Hiwatashi A,
    3. Togao O, et al
    . High-resolution three-dimensional diffusion-weighted MRI/CT image data fusion for cholesteatoma surgical planning: a feasibility study. Eur Arch Otorhinolaryngol 2015;272:3821–24 doi:10.1007/s00405-014-3467-7 pmid:25543305
    CrossRefPubMed
  13. 13.↵
    1. Kanoto M,
    2. Sugai Y,
    3. Hosoya T, et al
    . Detectability and anatomical correlation of middle ear cholesteatoma using fused thin slice non-echo planar imaging diffusion-weighted image and magnetic resonance cisternography (FTS-nEPID). Magn Reson Imaging 2015;33:1253–57 doi:10.1016/j.mri.2015.08.007 pmid:26283576
    CrossRefPubMed
  14. 14.↵
    1. Watanabe T,
    2. Ito T,
    3. Furukawa T, et al
    . The efficacy of color mapped fusion images in the diagnosis and treatment of cholesteatoma using transcanal endoscopic ear surgery. Otol Neurotol 2015;36:763–68 doi:10.1097/MAO.0000000000000675 pmid:25420085
    CrossRefPubMed
  15. 15.↵
    1. Benson JC,
    2. Carlson ML,
    3. Yin L, et al
    . Cholesteatoma localization using fused diffusion-weighted images and thin-slice T2 weighted images. Laryngoscope 2021;131:E1662–67 doi:10.1002/lary.29222 pmid:33140869
    CrossRefPubMed
  16. 16.↵
    1. Cavaliere M,
    2. Di Lullo AM,
    3. Russo C, et al
    . Computed-tomography-structured reporting in middle ear opacification: surgical results and clinical considerations from a large retrospective analysis. Front Neurol 2021;12:615356 doi:10.3389/fneur.2021.615356 pmid:33716923
    CrossRefPubMed
  17. 17.↵
    1. Baba A,
    2. Kurihara S,
    3. Fukuda T, et al
    . Non-echoplanar diffusion weighed imaging and T1-weighted imaging for cholesteatoma mastoid extension. Auris Nasus Larynx 2021;48:846–51 doi:10.1016/j.anl.2021.01.010 pmid:33461853
    CrossRefPubMed
  18. 18.↵
    1. Migirov L,
    2. Wolf M,
    3. Greenberg G, et al
    . Non-EPI DW MRI in planning the surgical approach to primary and recurrent cholesteatoma. Otol Neurotol 2014;35:121–25 doi:10.1097/MAO.0000000000000234 pmid:24317217
    CrossRefPubMed
  19. 19.↵
    1. Abdul-Aziz D,
    2. Kozin ED,
    3. Lin BM, et al
    . Temporal bone computed tomography findings associated with feasibility of endoscopic ear surgery. Am J Otolaryngol 2017;38:698–703 doi:10.1016/j.amjoto.2017.06.007 pmid:28711236
    CrossRefPubMed
  20. 20.↵
    1. Tolisano AM,
    2. Killeen DE,
    3. Hunter JB, et al
    . The Antrum-Malleus-Tegmen score: a pilot study assessing preoperative radiographic predictors for transcanal endoscopic cholesteatoma dissection. Otol Neurotol 2019;40:e901–08 doi:10.1097/MAO.0000000000002354 pmid:31436633
    CrossRefPubMed
  21. 21.↵
    1. Das A,
    2. Mitra S,
    3. Ghosh D, et al
    . Endoscopic versus microscopic management of attic cholesteatoma: a randomized controlled trial. Laryngoscope 2020;130:2461–66 doi:10.1002/lary.28446 pmid:31816096
    CrossRefPubMed
  22. 22.↵
    1. Colleran GC,
    2. Kwatra N,
    3. Oberg L, et al
    . How we read pediatric PET/CT: indications and strategies for image acquisition, interpretation and reporting. Cancer Imaging 2017;17:28 doi:10.1186/s40644-017-0130-8 pmid:29116015
    CrossRefPubMed
  23. 23.↵
    1. Berkowitz SJ,
    2. Wei JL,
    3. Halabi S
    . Migrating to the modern PACS: challenges and opportunities. Radiographics 2018;38:1761–72 doi:10.1148/rg.2018180161 pmid:30303805
    CrossRefPubMed
  24. 24.↵
    1. Fukuda A,
    2. Morita S,
    3. Harada T, et al
    . Value of T1-weighted magnetic resonance imaging in cholesteatoma detection. Otol Neurotol 2017;38:1440–44 doi:10.1097/MAO.0000000000001558 pmid:29084089
    CrossRefPubMed
  25. 25.↵
    1. Moustin D,
    2. Veillon F,
    3. Karch-Georges A, et al
    . Importance of signal intensity on T1-weighted spin-echo sequence for the diagnosis of chronic cholesteatomatous otitis. Eur Arch Otorhinolaryngol 2020;277:1601–08 doi:10.1007/s00405-020-05854-7 pmid:32072243
    CrossRefPubMed
PreviousNext
Back to top

In this issue

American Journal of Neuroradiology: 43 (7)
American Journal of Neuroradiology
Vol. 43, Issue 7
1 Jul 2022
  • Table of Contents
  • Index by author
  • Complete Issue (PDF)
Advertisement
Print
Download PDF
Email Article

Thank you for your interest in spreading the word on American Journal of Neuroradiology.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
Comparison of the Utility of High-Resolution CT-DWI and T2WI-DWI Fusion Images for the Localization of Cholesteatoma
(Your Name) has sent you a message from American Journal of Neuroradiology
(Your Name) thought you would like to see the American Journal of Neuroradiology web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Cite this article
X. Fan, C. Ding, Z. Liu
Comparison of the Utility of High-Resolution CT-DWI and T2WI-DWI Fusion Images for the Localization of Cholesteatoma
American Journal of Neuroradiology Jul 2022, 43 (7) 1029-1035; DOI: 10.3174/ajnr.A7538

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
0 Responses
Respond to this article
Share
Bookmark this article
CT-DWI vs. T2WI-DWI for Cholesteatoma Localization
X. Fan, C. Ding, Z. Liu
American Journal of Neuroradiology Jul 2022, 43 (7) 1029-1035; DOI: 10.3174/ajnr.A7538
del.icio.us logo Twitter logo Facebook logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One
Purchase

Jump to section

  • Article
    • Abstract
    • ABBREVIATION:
    • MATERIALS AND METHODS
    • RESULTS
    • DISCUSSION
    • CONCLUSIONS
    • Footnotes
    • References
  • Figures & Data
  • Info & Metrics
  • Responses
  • References
  • PDF

Related Articles

  • No related articles found.
  • PubMed
  • Google Scholar

Cited By...

  • No citing articles found.
  • Crossref (4)
  • Google Scholar

This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Advanced imaging of head and neck infections
    Akira Baba, Ryo Kurokawa, Mariko Kurokawa, Scott Reifeiss, Bruno A Policeni, Yoshiaki Ota, Ashok Srinivasan
    Journal of Neuroimaging 2023 33 4
  • Selection of a Surgical Approach for Middle Ear Cholesteatoma Based on the Fusion Images of Non-Echo Planar Diffusion-Weighted MRI and CT
    Maorong Cao, Tong Xu, Wen Jiang, Chengfang Chen, Huiming Yang, Rongjun Man, Shudong Yu
    Annals of Otology, Rhinology & Laryngology 2024 133 6
  • Application and Progress of CT and MRI Image Fusion Technology in the Diagnosis of Middle Ear Cholesteatoma
    亚亚 曹
    Advances in Clinical Medicine 2025 15 05
  • Optical Coherence Tomography as a Tool for Quantitative Imaging of the Tympanic Membrane and Middle Ear
    Ryan Long, Wihan Kim, Marcela Morán, Frank D. Macías-Escrivá, Patricia M. Quiñones, John S. Oghalai, Brian E. Applegate
    Otology & Neurotology 2025 46 5

More in this TOC Section

  • FDG Uptake and Thyroid Cancer Post-BRAF Therapy
  • Normal Facial Nerve Enhancement on VIBE Sequence
  • Contrast Enhanced Pituitary CISS/FIESTA
Show more HEAD AND NECK IMAGING

Similar Articles

Advertisement

Indexed Content

  • Current Issue
  • Accepted Manuscripts
  • Article Preview
  • Past Issues
  • Editorials
  • Editor's Choice
  • Fellows' Journal Club
  • Letters to the Editor
  • Video Articles

Cases

  • Case Collection
  • Archive - Case of the Week
  • Archive - Case of the Month
  • Archive - Classic Case

More from AJNR

  • Trainee Corner
  • Imaging Protocols
  • MRI Safety Corner
  • Book Reviews

Multimedia

  • AJNR Podcasts
  • AJNR Scantastics

Resources

  • Turnaround Time
  • Submit a Manuscript
  • Submit a Video Article
  • Submit an eLetter to the Editor/Response
  • Manuscript Submission Guidelines
  • Statistical Tips
  • Fast Publishing of Accepted Manuscripts
  • Graphical Abstract Preparation
  • Imaging Protocol Submission
  • Evidence-Based Medicine Level Guide
  • Publishing Checklists
  • Author Policies
  • Become a Reviewer/Academy of Reviewers
  • News and Updates

About Us

  • About AJNR
  • Editorial Board
  • Editorial Board Alumni
  • Alerts
  • Permissions
  • Not an AJNR Subscriber? Join Now
  • Advertise with Us
  • Librarian Resources
  • Feedback
  • Terms and Conditions
  • AJNR Editorial Board Alumni

American Society of Neuroradiology

  • Not an ASNR Member? Join Now

© 2025 by the American Society of Neuroradiology All rights, including for text and data mining, AI training, and similar technologies, are reserved.
Print ISSN: 0195-6108 Online ISSN: 1936-959X

Powered by HighWire