Key result
Lung ultrasound assessment of B-lines provides a reliable, non-invasive, and radiation-free method to detect and semi-quantify extravascular lung water in patients with pulmonary congestion.
Why the study?
Does lung ultrasound accurately detect and estimate extravascular lung water in patients with pulmonary congestion?
Does lung ultrasound accurately detect and estimate extravascular lung water in patients with pulmonary congestion?
Lung ultrasound is a practical, low-cost, and radiation-free tool for the real-time detection and quantification of pulmonary congestion in heart failure.
May aid bedside assessment of pulmonary congestion without radiation; leaves open outcome impact pending randomized validation trials.
Extravascular lung water (EVLW) is a key variable in heart failure management and prognosis, but its objective assessment remains elusive. Lung imaging has been traditionally considered off-limits for ultrasound techniques due to the acoustic barrier of high-impedance air wall. In pulmonary congestion however, the presence of both air and water creates a peculiar echo fingerprint. Lung ultrasound shows B-lines, comet-like signals arising from a hyper-echoic pleural line with a to-and-fro movement synchronized with respiration. Increasing EVLW accumulation changes the normal, no-echo signal (black lung, no EVLW) into a black-and-white pattern (interstitial sub-pleural oedema with multiple B-lines) or a white lung pattern (alveolar pulmonary oedema) with coalescing B-lines. The number and spatial extent of B-lines on the antero-lateral chest allows a semi-quantitative estimation of EVLW (from absent, ≤5, to severe pulmonary oedema, >30 B-lines). Wet B-lines are made by water and decreased by diuretics, which cannot modify dry B-lines made by connective tissue. B-lines can be evaluated anywhere (including extreme environmental conditions with pocket size instruments to detect high-altitude pulmonary oedema), anytime (during dialysis to titrate intervention), by anyone (even a novice sonographer after 1 h training), and on anybody (since the chest acoustic window usually remains patent when echocardiography is not feasible). Cardiologists can achieve much diagnostic gain with little investment of technology, training, and time. B-lines represent ‘<it>the shape of lung water</it>’. They allow non-invasive detection, in real time, of even sub-clinical forms of pulmonary oedema with a low cost, radiation-free approach.
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Picano et al. (2016) conducted a review in Pulmonary congestion. Lung ultrasound (B-lines) was evaluated. Lung ultrasound assessment of B-lines provides a reliable, non-invasive, and radiation-free method to detect and semi-quantify extravascular lung water in patients with pulmonary congestion.
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