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Endobronchial Valves for Endoscopic Lung Volume Reduction: Best Practice Recommendations from Expert Panel on Endoscopic Lung Volume Reduction

Overview
Journal Respiration
Publisher Karger
Specialty Pulmonary Medicine
Date 2016 Dec 20
PMID 27992862
Citations 77
Authors
Affiliations
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Abstract

Endoscopic lung volume reduction (ELVR) is being adopted as a treatment option for carefully selected patients suffering from severe emphysema. ELVR with the one-way endobronchial Zephyr valves (EBV) has been demonstrated to improve pulmonary function, exercise capacity, and quality of life in patients with both heterogeneous and homogenous emphysema without collateral ventilation. In this "expert best practices" review, we will highlight the practical aspects of this therapy. Key selection criteria for ELVR are hyperinflation with a residual volume >175% of predicted, forced expiratory volume <50% of predicted, and a 6-min walking distance >100 m. Patients with repeated infectious complications, severe bronchiectasis, and those with unstable cardiovascular comorbidities should be excluded from EBV treatment. The procedure may be performed with either conscious sedation or general anesthesia and positive pressure mechanical ventilation using a flexible endotracheal tube or a rigid bronchoscope. Chartis and EBV placement should be performed in 1 procedure when possible. The sequence of valve placement should be orchestrated to avoid obstruction and delivery of subsequent valves. If atelectasis has not occurred by 1 month after procedure, evaluate valve position on CT and consider replacing the valves that are not optimally positioned. Pneumothorax is a common complication and typically occurs in the first 2 days following treatment. A management algorithm for pneumothorax has been previously published. Long-term sequelae from EBV therapy do occur but are easily manageable.

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References
1.
Skowasch D, Fertl A, Schwick B, Schafer H, Hellmann A, Herth F . A Long-Term Follow-Up Investigation of Endobronchial Valves in Emphysema (the LIVE Study): Study Protocol and Six-Month Interim Analysis Results of a Prospective Five-Year Observational Study. Respiration. 2016; 92(2):118-26. DOI: 10.1159/000448119. View

2.
Pizarro C, Ahmadzadehfar H, Essler M, Fimmers R, Nickenig G, Skowasch D . Volumetric and scintigraphic changes following endoscopic lung volume reduction. Eur Respir J. 2014; 45(1):262-5. DOI: 10.1183/09031936.00108914. View

3.
Garner J, Kemp S, Toma T, Hansell D, Polkey M, Shah P . Survival after Endobronchial Valve Placement for Emphysema: A 10-Year Follow-up Study. Am J Respir Crit Care Med. 2016; 194(4):519-21. PMC: 5003334. DOI: 10.1164/rccm.201604-0852LE. View

4.
Eberhardt R, Herth F, Radhakrishnan S, Gompelmann D . Comparing Clinical Outcomes in Upper versus Lower Lobe Endobronchial Valve Treatment in Severe Emphysema. Respiration. 2015; 90(4):314-20. DOI: 10.1159/000437358. View

5.
Klooster K, Ten Hacken N, Hartman J, Kerstjens H, van Rikxoort E, Slebos D . Endobronchial Valves for Emphysema without Interlobar Collateral Ventilation. N Engl J Med. 2015; 373(24):2325-35. DOI: 10.1056/NEJMoa1507807. View