Skip to main content
Erschienen in: Lasers in Medical Science 1/2009

01.01.2009 | Original Article

Autofluorescence bronchoscopy: quantification of inter-patient variations of fluorescence intensity

verfasst von: Tanja Gabrecht, Blaise Lovisa, Huber van den Bergh, Georges Wagnières

Erschienen in: Lasers in Medical Science | Ausgabe 1/2009

Einloggen, um Zugang zu erhalten

Abstract

Autofluorescence (AF) from bronchial tissue is increasingly used for the endoscopic detection of early bronchial neoplasia. Several imaging systems are commercially available, all detecting the absolute or relative AF intensity and/or spectral contrasts between normal tissue and early neoplastic lesions. These devices have a high sensitivity for flat neoplasia, but the specificity remains limited. Variations in the AF intensity between individuals (inter-patient variations) is considered one of the most limiting factors. In the clinical study presented here, we quantified those variations using a non-invasive optical reference positioned in situ during AF bronchoscopy. The inter-patient variations in intensity on the main carina were in the order of 25– 30%. The results of this study are quite useful for improving and defining the design of the optical features (dynamic range, physical sensitivity) of AF detection systems.
Literatur
1.
Zurück zum Zitat Häußinger K, Stanzel F, Kohlhäufl M, Becker H, Herth F, Kreuzer A, Schmidt B, Strausz J, Cavaliere S, Müller K-M, Huber R-M, Pichlmeier U, Bolliger CT (2005) Autofluorescence bronchoscopy with white light bronchoscopy compared with white light bronchoscopy alone for the detection of precancerous lesions: a European randomised controlled multicentre trial. Thorax 60:496–503PubMedCrossRef Häußinger K, Stanzel F, Kohlhäufl M, Becker H, Herth F, Kreuzer A, Schmidt B, Strausz J, Cavaliere S, Müller K-M, Huber R-M, Pichlmeier U, Bolliger CT (2005) Autofluorescence bronchoscopy with white light bronchoscopy compared with white light bronchoscopy alone for the detection of precancerous lesions: a European randomised controlled multicentre trial. Thorax 60:496–503PubMedCrossRef
2.
Zurück zum Zitat Lam S, MacAulay C, leRiche JC, Palcic B (2000) Detection and localization of early lung cancer by fluorescence bronchoscopy. Cancer Suppl 89:2468–2473 Lam S, MacAulay C, leRiche JC, Palcic B (2000) Detection and localization of early lung cancer by fluorescence bronchoscopy. Cancer Suppl 89:2468–2473
3.
Zurück zum Zitat Wagnières G, McWilliams A, Lam S (2003) Lung cancer imaging with fluorescence endoscopy. In: Myceck M-A, Pogue BW (eds) Handbook of biomedical fluorescence, Marcel Dekker, New York, pp 361–396 Wagnières G, McWilliams A, Lam S (2003) Lung cancer imaging with fluorescence endoscopy. In: Myceck M-A, Pogue BW (eds) Handbook of biomedical fluorescence, Marcel Dekker, New York, pp 361–396
4.
Zurück zum Zitat Lam S, Kennedy T, Unger M (1998) Localization of bronchial intraepithelial neoplastic lesions by fluorescence bronchoscopy. Chest 113:696–702PubMedCrossRef Lam S, Kennedy T, Unger M (1998) Localization of bronchial intraepithelial neoplastic lesions by fluorescence bronchoscopy. Chest 113:696–702PubMedCrossRef
5.
Zurück zum Zitat Goujon D, Zellweger M, Radu A, Grosjean P, Weber B-C, van den Bergh H, Monnier P, Wagnières G (2003) In vivo autofluorescence imaging of early cancers in the human tracheobronchial tree with a spectrally optimized system. J Biomed Opt 8:17–25PubMedCrossRef Goujon D, Zellweger M, Radu A, Grosjean P, Weber B-C, van den Bergh H, Monnier P, Wagnières G (2003) In vivo autofluorescence imaging of early cancers in the human tracheobronchial tree with a spectrally optimized system. J Biomed Opt 8:17–25PubMedCrossRef
6.
Zurück zum Zitat Pierard P, Martin B, Verdebout J-M, Faber J, Richez M, Sculier J-P, Ninane V (2001) Fluorescence bronchoscopy in high-risk patients— comparison of LIFE and Pentay systems. J Bronchology 8:254–259CrossRef Pierard P, Martin B, Verdebout J-M, Faber J, Richez M, Sculier J-P, Ninane V (2001) Fluorescence bronchoscopy in high-risk patients— comparison of LIFE and Pentay systems. J Bronchology 8:254–259CrossRef
7.
Zurück zum Zitat Leonhard M (1999) New incoherent autofluorescence/fluorescence system for early detection of lung cancer. Diagn Ther Endosc 5:71–75PubMedCrossRef Leonhard M (1999) New incoherent autofluorescence/fluorescence system for early detection of lung cancer. Diagn Ther Endosc 5:71–75PubMedCrossRef
8.
Zurück zum Zitat Häußinger K, Stanzel F, Huber RM, Pichler J, Stepp H (1999) Autofluorescence detection of bronchial tumors with the D-Light/AF. Diagn Ther Endosc 5:105–112PubMedCrossRef Häußinger K, Stanzel F, Huber RM, Pichler J, Stepp H (1999) Autofluorescence detection of bronchial tumors with the D-Light/AF. Diagn Ther Endosc 5:105–112PubMedCrossRef
9.
Zurück zum Zitat Ikeda N, Honda H, Hayashi A, Usuda J, Kato Y, Tsuboi M, Ohira T, Hirano T, Kato H, Serizawa H, Aoki Y (2006) Early detection of bronchial lesions using newly developed videoendoscopy-based autofluorescence bronchoscopy. Lung Cancer 52:21–27PubMedCrossRef Ikeda N, Honda H, Hayashi A, Usuda J, Kato Y, Tsuboi M, Ohira T, Hirano T, Kato H, Serizawa H, Aoki Y (2006) Early detection of bronchial lesions using newly developed videoendoscopy-based autofluorescence bronchoscopy. Lung Cancer 52:21–27PubMedCrossRef
10.
Zurück zum Zitat Hirsch FR, Prindiville SA, Miller YE, Franklin WA, Dempsey EC, Murphy JR, Bunn Jr PA, Kennedy TC (2001) Fluorescence versus white-light bronchoscopy for detection of preneoplasic lesions: a randomized study. J Natl Cancer Inst 93:1385–1391PubMedCrossRef Hirsch FR, Prindiville SA, Miller YE, Franklin WA, Dempsey EC, Murphy JR, Bunn Jr PA, Kennedy TC (2001) Fluorescence versus white-light bronchoscopy for detection of preneoplasic lesions: a randomized study. J Natl Cancer Inst 93:1385–1391PubMedCrossRef
11.
Zurück zum Zitat Kennedy TC, Lam S, Hirsch FR (2001) Review of recent advances in fluorescence bronchoscopy in early localization of central airway lung cancer. Oncologist 6:257–262PubMedCrossRef Kennedy TC, Lam S, Hirsch FR (2001) Review of recent advances in fluorescence bronchoscopy in early localization of central airway lung cancer. Oncologist 6:257–262PubMedCrossRef
12.
Zurück zum Zitat Zellweger M, Goujon D, Conde R, Forrer M, van den Bergh H, Wagnières G (2001) Absolute autofluorescence spectra of human healthy, metaplastic, and early cancerous bronchial tissue in vivo. Appl Opt 40:3784–3791PubMedCrossRef Zellweger M, Goujon D, Conde R, Forrer M, van den Bergh H, Wagnières G (2001) Absolute autofluorescence spectra of human healthy, metaplastic, and early cancerous bronchial tissue in vivo. Appl Opt 40:3784–3791PubMedCrossRef
13.
Zurück zum Zitat Gabrecht T, Lovisa B, Borle F, Wagnieres G (2007) Design of an endoscopic optical reference to be used for autofluorescence bronchoscopy with a commercially available diagnostic autofluorescence endoscopy (DAFE) system. Phys Med Biol 52:N163–N171PubMedCrossRef Gabrecht T, Lovisa B, Borle F, Wagnieres G (2007) Design of an endoscopic optical reference to be used for autofluorescence bronchoscopy with a commercially available diagnostic autofluorescence endoscopy (DAFE) system. Phys Med Biol 52:N163–N171PubMedCrossRef
14.
Zurück zum Zitat Gabrecht T, Glanzmann T, Freitag L, Weber B-C, van den Bergh H, Wagnières G (2007) Optimised autofluorescence bronchoscopy using additional backscattered red light. J Biomed Opt (in press) Gabrecht T, Glanzmann T, Freitag L, Weber B-C, van den Bergh H, Wagnières G (2007) Optimised autofluorescence bronchoscopy using additional backscattered red light. J Biomed Opt (in press)
15.
Zurück zum Zitat Alfano R, Tata D, Cordero J, Tomashefsky P, Longo F, Alfano M (1984) Laser induced fluorescence spectroscopy from native cancerous and normal tissue. IEEE J Quantum Electron 20:1507–1511CrossRef Alfano R, Tata D, Cordero J, Tomashefsky P, Longo F, Alfano M (1984) Laser induced fluorescence spectroscopy from native cancerous and normal tissue. IEEE J Quantum Electron 20:1507–1511CrossRef
16.
Zurück zum Zitat Alfano R, Tang G, Pradhan A, Lam W, Choy D, Opher E (1987) Fluorescence spectra from cancerous and normal human breast and lung tissues. IEEE J Quantum Electron 23:1806–1811CrossRef Alfano R, Tang G, Pradhan A, Lam W, Choy D, Opher E (1987) Fluorescence spectra from cancerous and normal human breast and lung tissues. IEEE J Quantum Electron 23:1806–1811CrossRef
17.
Zurück zum Zitat Qu J, MacAulay C, Lam S, Palcic B (1995) Laser-induced fluorescence spectroscopy at endoscopy: tissue optics, Monte Carlo modeling and in vivo measurements. Opt Eng 34:3334–3343CrossRef Qu J, MacAulay C, Lam S, Palcic B (1995) Laser-induced fluorescence spectroscopy at endoscopy: tissue optics, Monte Carlo modeling and in vivo measurements. Opt Eng 34:3334–3343CrossRef
18.
Zurück zum Zitat Zellweger M, Grosjean P, Goujon D, Monnier P, van den Bergh H, Wagnières G (2001) In vivo autofluorescence spectroscopy of human bronchial tissue to optimize the detection and imaging of early cancers. J Biomed Opt 6:41–51PubMedCrossRef Zellweger M, Grosjean P, Goujon D, Monnier P, van den Bergh H, Wagnières G (2001) In vivo autofluorescence spectroscopy of human bronchial tissue to optimize the detection and imaging of early cancers. J Biomed Opt 6:41–51PubMedCrossRef
19.
Zurück zum Zitat Gabrecht T, Andrejevic-Blant S, Wagnières G (2007) Blue-violet excited autofluorescence spectroscopy and imaging of normal and cancerous human bronchial tissue after formalin fixation. Photochem Photobiol 83:450–458PubMedCrossRef Gabrecht T, Andrejevic-Blant S, Wagnières G (2007) Blue-violet excited autofluorescence spectroscopy and imaging of normal and cancerous human bronchial tissue after formalin fixation. Photochem Photobiol 83:450–458PubMedCrossRef
Metadaten
Titel
Autofluorescence bronchoscopy: quantification of inter-patient variations of fluorescence intensity
verfasst von
Tanja Gabrecht
Blaise Lovisa
Huber van den Bergh
Georges Wagnières
Publikationsdatum
01.01.2009
Verlag
Springer-Verlag
Erschienen in
Lasers in Medical Science / Ausgabe 1/2009
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-007-0518-y

Weitere Artikel der Ausgabe 1/2009

Lasers in Medical Science 1/2009 Zur Ausgabe