Subscribe to RSS
DOI: 10.1055/a-1339-1635
Konfokale Laser-Endomikroskopie des Kopf-Hals-Plattenepithelkarzinoms: eine systematische Übersicht
Confocal laser endomicroscopy of head and neck squamous cell carcinoma: a systematic review
Zusammenfassung
Hintergrund Die konfokale Laser-Endomikroskopie (CLE) bietet mit einer bis zu 1000-fachen Vergrößerungsleistung die Möglichkeit, Interzellularräume in vivo zu erkennen. Die CLE hat sich in verschiedensten Fachbereichen bereits etabliert. Dieser Artikel gibt einen Überblick über die aktuelle Studienlage der CLE in der Diagnostik des Plattenepithelkarzinoms des Kopf-Hals-Bereichs.
Material und Methoden Systematische Literaturrecherche in folgenden Online-Datenbanken: PubMed, MEDLINE, Thompson Reuters Web of Science, SPIE nach den Suchbegriffen: confocal laser endomicroscopy, CLE, endomicroscopy, head and neck, larynx. Bewertung der wissenschaftlichen Relevanz der Arbeiten nach festgelegten Kriterien.
Ergebnisse Es wurden Arbeiten in Bezug auf die klinische Anwendung, die klinische Befunderhebung und die computergestützte Datenauswertung analysiert.
Schlussfolgerungen In Zusammenschau der aktuell publizierten Ergebnisse verspricht die CLE ein großes Potenzial, die Diagnostik maligner Schleimhautveränderungen im Bereich des oberen Aerodigestivtrakts zu verbessern.
Abstract
Objective Confocal laser endomicroscopy (CLE), with a magnification of up to 1000 ×, offers the possibility to visualize intercellular spaces in vivo. CLE has already established itself in different disciplines. This article gives an overview of the current research on CLE in the diagnosis of the head and neck squamous cell carcinoma.
Material and methods Systematic bibliographic research in the following online databases: PubMed, MEDLINE, Thompson Reuters Web of Science, SPIE using the following keywords: confocal laser endomicroscopy, CLE, endomicroscopy, head and neck, larynx. Evaluation of the scientific relevance according to defined criteria.
Results All studies were analyzed concerning the clinical application, clinical findings, and computer-aided data processing.
Conclusions The recently published data suggest that CLE has a high potential to improve the diagnosis of malignant mucosal lesions in the upper aerodigestive tract.
Schlüsselwörter
konfokale Laser-Endomikroskopie - CLE - Kopf-Hals-Malignom - Larynxkarzinom - BildanalyseKey words
confocal laser endomicroscopy - CLE - head and neck malignancy - laryngeal carcinoma - image analysisPublication History
Received: 13 October 2020
Accepted: 15 December 2020
Article published online:
05 January 2021
© 2021. Thieme. All rights reserved.
Georg Thieme Verlag KG
Rüdigerstraße 14, 70469 Stuttgart, Germany
-
Literatur
- 1
Maier H,
Dietz A,
Gewelke U.
et al. Tobacco and alcohol and the risk of head and neck cancer. Clin Investig 1992;
70: 320-327
MissingFormLabel
- 2
Sun C,
Han X,
Li X.
et al. Diagnostic Performance of Narrow Band Imaging for Laryngeal Cancer: A Systematic
Review and Meta-analysis. Otolaryngol Head Neck Surg 2017; 156: 589-597
MissingFormLabel
- 3
Betz CS.
Optische Diagnoseverfahren zur Verbesserung der Tumorfrühdiagnostik im oberen Luft-Speise-Weg.
HNO 2016; 64: 2-3
MissingFormLabel
- 4
Dittberner A,
Sickert S,
Denzler J.
et al. Intraoperative onlinebildgesteuerte Biopsien auf Basis eines Deep-Learning-Algorithmus
zur automatischen Detektion von Kopf-Hals-Karzinomen mittels Real-Time Nah-Infrarot
ICG-Fluoreszenz-Endoskopie. Laryngo-Rhino-Otologie 2019; 98: 47
MissingFormLabel
- 5
Neumann H,
Kiesslich R,
Wallace MB.
et al. Confocal laser endomicroscopy: Technical advances and clinical application.
Gastroenterology 2010; 139: 388-392
MissingFormLabel
- 6
Vasilev I,
Mamenko I,
Tabanakova I.
Probe-based confocal laser endomicroscopy in metastatic pulmonary calcification. J
Bronchology Interv Pulmonol 2018; 25: 60-62
MissingFormLabel
- 7
Kriegmair MC,
Ritter M,
Michel MS.
et al. Modern endoscopic imaging tools for urothelial carcinoma of the urinary bladder.
Aktuelle Urol 2017; 48: 296-305
MissingFormLabel
- 8
Belykh E,
Miller EJ,
Carotenuto A.
et al. Progress in Confocal Laser Endomicroscopy for Neurosurgery and Technical Nuances
for Brain Tumor Imaging With Fluorescein. Front Oncol 2019; 3: 554
MissingFormLabel
- 9
Dittberner A,
Rodner E,
Ortmann W.
et al. Automated analysis of confocal laser endomicroscopy images to detect head and
neck cancer. Head Neck 2016; 38: 1419-1426
MissingFormLabel
- 10
Linxweiler M,
Al Kadah B,
Bozzato A.
et al. Noninvasive histological imaging of head and neck squamous cell carcinomas
using confocal laser endomicroscopy. Eur Arch Otorhinolaryngol 2016; 273: 4473-4483
MissingFormLabel
- 11
Volgger V,
Girschick S,
Ihrler S.
et al. Evaluation of confocal laser endomicroscopy as an aid to differentiate primary
flat lesions of the larynx: A prospective clinical study. Head Neck 2016; 38: 1695-1704
MissingFormLabel
- 12
Moore C,
Mehta V,
Ma X.
et al. Interobserver agreement of confocal laser endomicroscopy for detection of head
and neck neoplasia. Laryngoscope 2016; 126: 632-637
MissingFormLabel
- 13
Nathan CA,
Kaskas NM,
Ma X.
et al. Confocal laser endomicroscopy in the detection of head and neck precancerous
lesions. Otolaryngol Head Neck Surg 2014; 151: 73-80
MissingFormLabel
- 14
Haxel BR,
Goetz M,
Kiesslich R.
et al. Confocal endomicroscopy: A novel application for imaging of oral and oropharyngeal
mucosa in human. Eur Arch Otorhinolaryngol 2010; 267: 443-448
MissingFormLabel
- 15
Thong PSP,
Tandjung SS,
Movania MM.
et al. Toward real-time virtual biopsy of oral lesions using confocal laser endomicroscopy
interfaced with embedded computing. J Biomed Opt 2012; 17: 056009
MissingFormLabel
- 16
Thong PSP,
Olivo M,
Movania MM.
et al. Toward 3-dimensional virtual biopsy of oral lesions through the development
of a confocal endomicroscope interfaced with embedded computing. Proceedings of SPIE-OSA
Biomedical Optics 2011;
MissingFormLabel
- 17
Thong PSP,
Olivo M,
Kho KW.
et al. Laser confocal endomicroscopy as a novel technique for fluorescence diagnostic
imaging of the oral cavity. J Biomed Opt 2007;
MissingFormLabel
- 18
Shinohara S,
Funabiki K,
Kikuchi M.
et al. Real-time imaging of head and neck squamous cell carcinomas using confocal
micro-endoscopy and applicable dye: A preliminary study. Auris Nasus Larynx 2020;
47: 668-675
MissingFormLabel
- 19
Volgger V,
Conderman C,
Betz CS.
Confocal laser endomicroscopy in head and neck cancer: Steps forward?. Curr Opin Otolaryngol
Head Neck Surg 2013; 21: 164-170
MissingFormLabel
- 20
Zhang YL,
Bai L,
Li Z.
et al. A lower dose of fluorescein sodium is more suitable for confocal laser endomicroscopy:
a feasibility study. Gastrointest Endosc 2016; 84: 917-923
MissingFormLabel
- 21
Wu L,
Yu H,
Zhou R.
et al. Probe-based confocal laser endomicroscopy for diagnosis of nasopharyngeal carcinoma
in vivo. Laryngoscope 2019; 129: 897-902
MissingFormLabel
- 22
Watermann A,
Gieringer R,
Bauer AM.
Fluorescein- and EGFR-antibody conjugated silica nanoparticles for enhancement of
real-time tumor border definition using confocal laser endomicroscopy in squamous
cell carcinoma of the head and neck. Nanomaterials 2019;
MissingFormLabel
- 23
Oetter N,
Knipfer C,
Rohde M.
et al. Development and validation of a classification and scoring system for the diagnosis
of oral squamous cell carcinomas through confocal laser endomicroscopy. J Transl Med
2016;
MissingFormLabel
- 24
Goncalves M,
Iro H,
Dittberner A.
et al. Value of confocal laser endomicroscopy in the diagnosis of vocal cord lesions.
Eur Rev Med Pharmacol Sci 2017; 21: 3990-3997
MissingFormLabel
- 25
Grauer M,
Neumann H.
Stand der Technik und klinische Anwendungen der konfokalen Laser-Endomikroskopie.
Endosk Heute 2012;
MissingFormLabel
- 26
Chauhan SS,
Dayyeh BKA,
Bhat YM.
et al. Confocal laser endomicroscopy. Gastrointest Endosc 2014; 80: 928-938
MissingFormLabel
- 27
Giovannini M.
Needle-based confocal laser endomicroscopy. Endoscopic Ultrasound 2015; 4: 284-288
MissingFormLabel
- 28
De Palma GD.
Confocal laser endomicroscopy in the ‘in vivo’ histological diagnosis of the gastrointestinal
tract. World Journal of Gastroenterology 2009; 15: 5770-5775
MissingFormLabel
- 29
Nguyen NQ,
Leong RW.
Current application of confocal endomicroscopy in gastrointestinal disorders. J Gastroenterol
Hepatol 2008; 23: 1483-1491
MissingFormLabel
- 30
Parikh ND,
Gibson J,
Nagar A.
et al. Confocal laser endomicroscopy features of sessile serrated adenomas/polyps.
United European Gastroenterol J 2016; 4: 599-603
MissingFormLabel
- 31
Tricco AC,
Lillie E,
Zarin W.
et al. PRISMA extension for scoping reviews (PRISMA-ScR): Checklist and explanation.
Annals of Internal Medicine 2018; 169: 467-473
MissingFormLabel
- 32
Wells G,
Shea B,
O’Connell D.
The Newcastle-Ottawa Scale (NOS) for assessing the quality if nonrandomized studies
in meta-analyses. 2012 http//www.ohri.ca/programs/clinical_epidemiology/oxford.asp
MissingFormLabel
- 33
Goncalves M,
Aubreville M,
Mueller SK.
Probe-based confocal laser endomicroscopy in detecting malignant lesions of vocal
folds. Acta Otorhinolaryngol Ital 2019; 39: 389-395
MissingFormLabel
- 34
Wong BJF,
Ilgner J.
(eds) Biomedical optics in otorhinolaryngology: Head and neck surgery. New York: Springer;
2016: 491-510
MissingFormLabel
- 35
Mahé J,
Linard N,
Tafreshi MK.
et al. Motion-aware mosaicing for confocal laser endomicroscopy. Medical Image Computing
and Computer-Assisted Intervention – MICCAI 2015;
MissingFormLabel
- 36
Aubreville M,
Knipfer C,
Oetter N.
et al. Automatic Classification of Cancerous Tissue in Laserendomicroscopy Images
of the Oral Cavity using Deep Learning. Sci Rep 2017;
MissingFormLabel
- 37
Izadyyazdanabadi M,
Belykh E,
Martirosyan N.
Improving utility of brain tumor confocal laser endomicroscopy: objective value assessment
and diagnostic frame detection with convolutional neural networks. Medical Imaging:
Computer-Aided Diagnosis 2017;
MissingFormLabel
- 38
Aubreville M,
Stoeve M,
Oetter N.
et al. Deep learning-based detection of motion artifacts in probe-based confocal laser
endomicroscopy images. Int J Comput Assist Radiol Surg 2018; 14: 31-34
MissingFormLabel
- 39
Aubreville M,
Gonçalves M,
Knipfer C.
Transferability of Deep Learning Algorithms for Malignancy Detection in Confocal Laser
Endomicroscopy Images from Different Anatomical Locations of the Upper Gastrointestinal
Tract. Communications in Computer and Information Science 2019;
MissingFormLabel