To describe Computed Tomography (CT) features associated with severe exacerbations of Chronic Obstructive Pulmonary Disease (COPD).
The natural course of COPD is associated with episodes of exacerbation which are clinically defined as acute events characterized by a worsening of the patient's respiratory symptoms that is beyond normal day-to-day variations and which leads to a change in medication. Moreover, these episodes can be classified into mild, moderate, or severe exacerbations, following patient's need for medical environment. While the cause of about one-third of severe exacerbation episodes cannot be identified, two-thirds are associated with certain conditions such as respiratory tract infections (viral or bacterial), air pollution, as well as pulmonary embolism (PE), pulmonary edema, cardiac arrhythmia, pneumothorax, or pleural effusion. As COPD exacerbations are associated with increased morbidity and mortality, as well as with increased healthcare costs, their prevention and treatment are two major objectives in COPD management with subsequent requirement for appropriate assessment tools. As imaging tool, chest radiography is limited to the detection of pneumonia and pleural abnormalities, and only leads to change in managements in a marginal proportion of patients. However, while Computed Tomography (CT) scans allows detecting more chest abnormalities, the knowledge of CT features at the time of exacerbation is a pre-requisite for determining possible role of CT in routine work-up of exacerbation. Nevertheless these features remain widely unknown, previous studies having focused on the prevalence of PE. The aim of our study was therefore to describe these features by comparing CT scans performed at severe exacerbation with control scans.
Study Type
OBSERVATIONAL
Enrollment
44
CT examinations were performed with a commercially available 64-detector row scanner. Images were acquired in supine position after full inspiration and full expiration, using the following parameters: slice thickness, 0.6 mm; pitch, 1.4; rotation time, 330 msec; tube voltage, 120 kiloVolts; and tube current-time product, 100 milliAmperes, with automatic exposure control (CareDose 4D, Siemens Healthcare) switched on. From raw data, 1-mm-thick section images were reconstructed at 0.7-mm intervals by using a high spatial algorithm and a soft-tissue algorithm. The inspiratory CT scan at the time of exacerbation was performed with intravenous iodinated contrast material, whereas the control scan was unenhanced.
Erasme University Hospital
Brussels, Brussels Capital, Belgium
Chest CT scan features at exacerbation
Grading the severity of the following 15 features: bronchiectasis, mucous plugging, bronchial wall thickening, pulmonary consolidation, ground glass opacity, cysts or bullae, air trapping, centrilobular micronodules, platelike atelectasis, emphysema, pulmonary embolism, pleural effusion, mediastinal or hilar lymphadenopathy, reticular pattern or honeycombing, and pulmonary mass or nodule.
Time frame: 4 hours
Chest CT scan features at control
Grading the severity of the following 15 features: bronchiectasis, mucous plugging, bronchial wall thickening, pulmonary consolidation, ground glass opacity, cysts or bullae, air trapping, centrilobular micronodules, platelike atelectasis, emphysema, pulmonary embolism, pleural effusion, mediastinal or hilar lymphadenopathy, reticular pattern or honeycombing, and pulmonary mass or nodule.
Time frame: Minimum two weeks after exacerbation
PFT at control
Measurements of the forced vital capacity (FVC), the forced expiratory volume in one second (FEV1), the functional residual capacity (FRC), the total lung capacity (TLC) and the residual volume (RV).
Time frame: Minimum two weeks after exacerbation
PFT at exacerbation
Measurements of the forced vital capacity (FVC), the forced expiratory volume in one second (FEV1), the functional residual capacity (FRC), the total lung capacity (TLC) and the residual volume (RV).
Time frame: 4 hours
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