Literature DB >> 17532537

Dual digital video-autofluorescence imaging for detection of pre-neoplastic lesions.

Pyng Lee1, Hes A P Brokx, Pieter E Postmus, Tom G Sutedja.   

Abstract

AIM: The incorporation of autofluorescence (AF) to white light bronchoscopy has led to improved sensitivity for the detection of pre-neoplastic lesions in the airways. However, AF has difficulty distinguishing benign epithelial changes such as bronchitis, previous biopsy, and airway fibrosis from pre-invasive lesions, which necessitates extensive biopsy. This frequently results in longer procedural time and need for additional sedation that may compromise patient safety, increase the risk of bronchospasm, and bleeding from multiple endobronchial biopsies. We postulate that dual imaging with simultaneous video and AF bronchoscopy of the tracheobronchial tree could improve the low specificity observed with AF in the detection of pre-invasive lesions, leading to targeted biopsy, good correlation with pathological diagnosis and shorter procedural time.
METHODS: Forty-eight patients with known or suspected of lung cancer underwent video and AF bronchoscopy, which were provided as real-time dual images with SAFE 3000 (Pentax, Tokyo) between March and August 2006. Biopsy specimens were taken from all suspicious areas with two random specimens from normal areas. Values were expressed as median and range, and p<0.05 was considered statistically significant.
RESULTS: Twenty-five suspicious sites were detected by dual imaging bronchoscopy, and 126 endobronchial biopsies were evaluated, of which 22 (17.5%) were graded as moderate dysplasia and worse. Sensitivity and specificity of dual imaging for the detection of high-grade dysplasia were 86% and 94%, respectively, with good correlation between bronchoscopic assessment and pathology (r=0.77, p<0.0001). However, there were three random biopsy specimens obtained from normal or abnormal sites that showed severe dysplasia in two and moderate dysplasia in one. Median time taken for airway examination was 4 min (range, 4-4.8), and 5 min (range, 4-5) for biopsy, giving a total procedural time of 9 min (range, 8-10). There were no procedure-related complications noted.
CONCLUSION: Dual imaging that allows simultaneous real-time assessment of the lesion with video and AF bronchoscopy not only achieves satisfactory sensitivity for the detection of pre-neoplastic lesions, importantly it improves specificity by allowing targeted biopsy, which has led to a marked decrease in procedural time and better patient safety.

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Year:  2007        PMID: 17532537     DOI: 10.1016/j.lungcan.2007.04.009

Source DB:  PubMed          Journal:  Lung Cancer        ISSN: 0169-5002            Impact factor:   5.705


  8 in total

1.  White light, autofluorescence and narrow-band imaging bronchoscopy for diagnosing airway pre-cancerous and early cancer lesions: a systematic review and meta-analysis.

Authors:  Jianrong Zhang; Jieyu Wu; Yujing Yang; Hua Liao; Zhiheng Xu; Lindsey Tristine Hamblin; Long Jiang; Lieven Depypere; Keng Leong Ang; Jiaxi He; Ziyan Liang; Jun Huang; Jingpei Li; Qihua He; Wenhua Liang; Jianxing He
Journal:  J Thorac Dis       Date:  2016-11       Impact factor: 2.895

2.  Combination of narrow band imaging (NBI) and autofluorescence imaging (AFI) videobronchoscopy in endoscopic assessment of lung cancer extension.

Authors:  Bojan Zaric; Branislav Perin; Heinrich D Becker; Felix Fj Herth; Ralf Eberhardt; Svetlana Jovanovic; Tihomir Orlic; Milana Panjkovic; Biljana Zvezdin; Aleksandra Jovelic; Milorad Bijelovic; Vladimir Jurisic; Milan Antonic
Journal:  Med Oncol       Date:  2011-08-09       Impact factor: 3.064

3.  Color fluorescence ratio for detection of bronchial dysplasia and carcinoma in situ.

Authors:  Pyng Lee; Remco M van den Berg; Stephen Lam; Adi F Gazdar; Katrien Grunberg; Annette McWilliams; Jean Leriche; Pieter E Postmus; Tom G Sutedja
Journal:  Clin Cancer Res       Date:  2009-07-07       Impact factor: 12.531

4.  Detection of premalignant bronchial lesions can be significantly improved by combination of advanced bronchoscopic imaging techniques.

Authors:  Bojan Zaric; Branislav Perin; Vladimir Stojsic; Vladimir Carapic; Jovan Matijasevic; Ilija Andrijevic; Zivka Eri
Journal:  Ann Thorac Med       Date:  2013-04       Impact factor: 2.219

5.  Optical detection of preneoplastic lesions of the central airways.

Authors:  C van der Leest; A Amelink; R J van Klaveren; H C Hoogsteden; H J C M Sterenborg; J G J V Aerts
Journal:  ISRN Oncol       Date:  2012-03-22

6.  High definition bronchoscopy: a randomized exploratory study of diagnostic value compared to standard white light bronchoscopy and autofluorescence bronchoscopy.

Authors:  Erik H F M van der Heijden; Wouter Hoefsloot; Hieronymus W H van Hees; Olga C J Schuurbiers
Journal:  Respir Res       Date:  2015-03-07

7.  Detection of a pinhole-sized bronchoesophageal fistula under bronchoscopic autofluorescence imaging.

Authors:  Kei Morikawa; Naoki Izawa; Hirotaka Kida; Hiroshi Handa; Takeo Inoue; Masamichi Mineshita
Journal:  Thorac Cancer       Date:  2021-05-18       Impact factor: 3.500

8.  Image enhancement technology in bronchoscopy: a prospective multicentre study in lung cancer.

Authors:  Erik H F M van der Heijden; Piero Candoli; Igor Vasilev; Alessandro Messi; Javier Pérez Pallarés; Piotr Yablonskii; Anna van der Vorm; Olga C J Schuurbiers; Wouter Hoefsloot
Journal:  BMJ Open Respir Res       Date:  2018-05-18
  8 in total

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