Background
While lung ultrasonography (LUS) has utility for the evaluation of the acute phase of COVID-19 related lung disease, its role in long-term follow-up of this condition has not been well described. The objective of this study is to compare LUS and chest computed tomography (CT) results in COVID-19 survivors with the intent of defining the utility of LUS for long-term follow-up of COVID-19 respiratory disease.
Methods
Prospective observational study that enrolled consecutive survivors of COVID-19 with acute hypoxemic respiratory failure (HARF) admitted to the Respiratory Intensive Care Unit. Three months following hospital discharge, patients underwent LUS, chest CT, body plethysmography and laboratory testing, the comparison of which forms the basis of this report.
Results
38 patients were enrolled, with a total of 190 lobes analysed: men 27/38 (71.1%), mean age 60.6 y (SD 10.4). LUS findings and pulmonary function tests outcomes were compared between patients with and without ILD, showing a statistically significant difference in terms of LUS score (p: 0.0002), FEV1 (p: 0.0039) and FVC (p: 0.012). ROC curve both in lobe by lobe and in patient’s overall analysis revealed an outstanding ILD discrimination ability of LUS (AUC: 0.94 and 0.95 respectively) with a substantial Cohen’s coefficient (K: 0.74 and 0.69).
Conclusions
LUS has an outstanding discrimination ability compared to CT in identifying an ILD of at least mild grade in the post COVID-19 follow-up. LUS should be considered as the first-line tool in follow-up programs, while chest CT could be performed based on LUS findings.
The correct type and time of follow-up for patients affected by COVID19 ARDS is still unclear. The aim of this study was to evaluate at the survivors to COVID19 ARDS requiring non-invasive respiratory support (NRS) admitted to a Respiratory Intensive care unit (RICU) from March 8th till May 31th 2020 looking at all sequelae via a comprehensive follow up. All patients underwent a multi-disciplinary instrumental and clinical assessment within three months form admission to evaluate all infection related sequelae. Thirty-eight patients were enrolled Lung-Ultrasound (LUS) showed an outstanding discrimination ability (ROC AUC: 0.95) and a substantial agreement rate (Cohen’s K: 0.74) compared to chest CT-scan detecting improvement of lung consolidations. Youden’s test showed a cut-off pressure of 11 cmH2O ExpiratoryPAP-Continuous-PAP-max (EPAP-CPAP) applied at the airways during hospitalization to be significantly correlated (p value: 0.026) to the increased pulmonary artery common trunk diameter. A total of 8/38 patients (21.8%), 2 of whom during follow-up, were diagnosed with Pulmonary Emboli (PE) and started anticoagulant treatment. Patients with PE had a statistically significant shorter length of time of hospitalization, time to negative swab, CPAP/NIV duration, P/F ratio and D-dimers at follow-up compared to non PE. A comprehensive approach to patients with ARDS COVID19 requiring NRS is necessary. This study highlighted cardiopulmonary impairment related to the ARDS and to the high-EPAP-CPAP-max greater than 11mmHg provided during admission, the usefulness of LUS in monitoring post-infection recovery and the correct identification and treatment of patients with PE during follow up.
Membranous ventricular septal aneurysm (VSA) is an uncommon cardiac abnormality, potentially leading to several cardiac complications such as aortic valve prolapse, arrhythmias, and aneurysm rupture. A young competitive soccer player presented for a post-COVID sports cardiology assessment, denying any previous cardiological evaluations. On transthoracic echocardiography, a membranous VSA was incidentally found with no other cardiac abnormality nor hemodynamic impairment associated. A well-oriented anamnesis guided by echocardiographic findings revealed that a ventricular septal defect was diagnosed at birth with spontaneous closure at 4 years old. From that moment, no further follow-up was performed. Before granting cardiological approval to competitive sport, transesophageal echocardiography and Holter electrocardiogram were performed to confirm the absence of interventricular shunt and any other cardiac abnormality or arrhythmias associated with VSA. This case highlights the value of an accurate and comprehensive clinical and echocardiographic evaluation when performing a cardiological sports assessment, even in a young asymptomatic athlete.
To the Editor,
we thank Dr Ruggeri et al. for their interest in our previously published manuscript focused on lung damages after severe respiratory COVID-19 infection...
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