Virtual bronchoscopic navigation versus non-virtual bronchoscopic navigation assisted bronchoscopy for the diagnosis of peripheral pulmonary lesions: a systematic review and meta-analysis

1. Ali, MS, Trick, W, Mba, BI, et al. Radial endobronchial ultrasound for the diagnosis of peripheral pulmonary lesions: a systematic review and meta-analysis. Respirology 2017; 22: 443–453.
Google Scholar | Crossref | Medline2. Rivera, MP, Mehta, AC, Wahidi, MM. Establishing the diagnosis of lung cancer: diagnosis and management of lung cancer, 3rd ed: American College of Chest Physicians evidence-based clinical practice guidelines. Chest 2013; 143: e142S–e165S.
Google Scholar | Crossref | Medline | ISI3. Callister, MEJ, Baldwin, DR, Akram, AR, et al. British Thoracic Society guidelines for the investigation and management of pulmonary nodules. Thorax 2015; 70(Suppl. 2): ii1–ii54.
Google Scholar | Crossref | Medline4. Wang, W, Yu, L, Wang, Y, et al. Radial EBUS versus CT-guided needle biopsy for evaluation of solitary pulmonary nodules. Oncotarget 2018; 9: 15122–15131.
Google Scholar | Crossref | Medline5. Steinfort, DP, Vincent, J, Heinze, S, et al. Comparative effectiveness of radial probe endobronchial ultrasound versus CT-guided needle biopsy for evaluation of peripheral pulmonary lesions: a randomized pragmatic trial. Respir Med 2011; 105: 1704–1711.
Google Scholar | Crossref | Medline6. Wang Memoli, JS, Nietert, PJ, Silvestri, GA. Meta-analysis of guided bronchoscopy for the evaluation of the pulmonary nodule. Chest 2012; 142: 385–393.
Google Scholar | Crossref | Medline | ISI7. Gupta, S, Wallace, MJ, Cardella, JF, et al. Quality improvement guidelines for percutaneous needle biopsy. J Vasc Interv Radiol 2010; 21: 969–975.
Google Scholar | Crossref | Medline | ISI8. Wu, CC, Maher, MM, Shepard, J-AO. Complications of CT-guided percutaneous needle biopsy of the chest: prevention and management. AJR Am J Roentgenol 2011; 196: W678–W682.
Google Scholar | Crossref | Medline | ISI9. Xu, C-H, Yuan, Q, Yu, L-K, et al. Endobronchial ultrasound transbronchial biopsy with guide-sheath for the diagnosis of solitary pulmonary nodules. Oncotarget 2017; 8: 58272–58277.
Google Scholar | Crossref | Medline10. Herth, FJF, Ernst, A, Becker, HD. Endobronchial ultrasound-guided transbronchial lung biopsy in solitary pulmonary nodules and peripheral lesions. Eur Respir J 2002; 20: 972–974.
Google Scholar | Crossref | Medline | ISI11. Kemp, SV . Navigation bronchoscopy. Respiration 2020; 99: 277–286.
Google Scholar | Crossref | Medline12. Tachihara, M, Tamura, D, Kiriu, T, et al. Bronchoscopy using virtual navigation and Endobronchial Ultrasonography with a Guide Sheath (EBUS-GS) with or without fluoroscopy for peripheral pulmonary lesions. Kobe J Med Sci 2018; 63: E99–E104.
Google Scholar | Medline13. Tachihara, M, Ishida, T, Kanazawa, K, et al. A virtual bronchoscopic navigation system under X-ray fluoroscopy for transbronchial diagnosis of small peripheral pulmonary lesions. Lung Cancer 2007; 57: 322–327.
Google Scholar | Crossref | Medline14. Asano, F, Matsuno, Y, Shinagawa, N, et al. A virtual bronchoscopic navigation system for pulmonary peripheral lesions. Chest 2006; 130: 559–566.
Google Scholar | Crossref | Medline | ISI15. Shinagawa, N, Yamazaki, K, Onodera, Y, et al. Factors related to diagnostic sensitivity using an ultrathin bronchoscope under CT guidance. Chest 2007; 131: 549–553.
Google Scholar | Crossref | Medline16. Asano, F, Shinagawa, N, Ishida, T, et al. Virtual bronchoscopic navigation combined with ultrathin bronchoscopy. A randomized clinical trial. Am J Respir Crit Care Med 2013; 188: 327–333.
Google Scholar | Crossref | Medline | ISI17. Bo, L, Li, C, Pan, L, et al. Diagnosing a solitary pulmonary nodule using multiple bronchoscopic guided technologies: a prospective randomized study. Lung Cancer 2019; 129: 48–54.
Google Scholar | Crossref | Medline18. Xu, C, Yuan, Q, Wang, Y, et al. Usefulness of virtual bronchoscopic navigation combined with endobronchial ultrasound guided transbronchial lung biopsy for solitary pulmonary nodules. Medicine (Baltimore) 2019; 98: e14248.
Google Scholar19. Asano, F, Ishida, T, Shinagawa, N, et al. Virtual bronchoscopic navigation without X-ray fluoroscopy to diagnose peripheral pulmonary lesions: a randomized trial. BMC Pulm Med 2017; 17: 184.
Google Scholar | Crossref | Medline20. Moher, D, Liberati, A, Tetzlaff, J, et al. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. PLoS Med 2009; 6: e1000097.
Google Scholar | Crossref | ISI21. Higgins, JPT, Altman, DG, Gøtzsche, PC, et al. The Cochrane collaboration’s tool for assessing risk of bias in randomised trials. BMJ 2011; 343: d5928.
Google Scholar | Crossref22. Wan, X, Wang, W, Liu, J, et al. Estimating the sample mean and standard deviation from the sample size, median, range and/or interquartile range. BMC Med Res Methodol 2014; 14: 135.
Google Scholar | Crossref | Medline | ISI23. Sterne, JAC, Sutton, AJ, Ioannidis, JPA, et al. Recommendations for examining and interpreting funnel plot asymmetry in meta-analyses of randomised controlled trials. BMJ 2011; 343: d4002.
Google Scholar | Crossref24. Ishida, T, Asano, F, Yamazaki, K, et al. Virtual bronchoscopic navigation combined with endobronchial ultrasound to diagnose small peripheral pulmonary lesions: a randomised trial. Thorax 2011; 66: 1072–1077.
Google Scholar | Crossref | Medline | ISI25. Chen, ZB, Jin, YP, Yu, YM, et al. [A study of the diagnostic value of endobronchial ultrasound guide sheath transbronchial lung biopsy combined with virtual bronchoscopic navigation in peripheral pulmonary lesions]. Zhonghua jie he he hu xi za zhi = Zhonghua jiehe he huxi zazhi = Chinese J Tuberc Respir Dis 2016; 39: 509–513.
Google Scholar | Medline26. Jiang, S, Xie, F, Mao, X, et al. The value of navigation bronchoscopy in the diagnosis of peripheral pulmonary lesions: a meta-analysis. Thorac Cancer 2020; 11: 1191–1201.
Google Scholar | Crossref | Medline27. Eberhardt, R, Anantham, D, Ernst, A, et al. Multimodality bronchoscopic diagnosis of peripheral lung lesions: a randomized controlled trial. Am J Respir Crit Care Med 2007; 176: 36–41.
Google Scholar | Crossref | Medline | ISI28. Asano, F, Eberhardt, R, Herth, FJF. Virtual bronchoscopic navigation for peripheral pulmonary lesions. Respiration 2014; 88: 430–440.
Google Scholar | Crossref | Medline | ISI29. Kato, A, Yasuo, M, Tokoro, Y, et al. Virtual bronchoscopic navigation as an aid to CT-guided transbronchial biopsy improves the diagnostic yield for small peripheral pulmonary lesions. Respirology 2018; 23: 1049–1054.
Google Scholar | Crossref | Medline30. Diez-Ferrer, M, Morales, A, Tebé, C, et al. Ultrathin bronchoscopy with and without virtual bronchoscopic navigation: influence of segmentation on diagnostic yield. Respiration 2019; 97: 252–258.
Google Scholar | Crossref | Medline

Comments (0)

No login
gif