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Biomedical subjects

M-F Carette

Publications and source records attributed to M-F Carette.

4 recordsLinked to original sources

Utility of high-resolution chest CT scan in the emergency management of haemoptysis in the intensive care unit: severity, localization and aetiology.

The purpose of this study is to assess the utility of the chest high-resolution computed tomography (HRCT) scan for estimating the severity of haemoptysis, localize the bleeding site and to determine a cause of the bleeding. We reviewed 80 consecutive patients who were admitted to a respiratory intensive care unit (RICU) for haemoptysis and who underwent unenhanced HRCT scanning and fibre-optic bronchoscopy (FOB) within 48 h. The number and type of lobar involvement on the CT scan were correlated to prognostic factors, the amount of bleeding and the bleeding aetiology. We compared HRCT scan observations on localization and bleeding aetiology with FOB results. The number of involved lobes was correlated with the daily (p<0.001) and cumulative (p<0.001) volume of haemoptysis and found to be significantly greater in the group of patients who were mechanically ventilated and/or died (2.7 vs 1.8, p<0.03). FOB and HRCT localized the bleeding site or side, respectively, in 71 (89%) and 64 (80%) patients (p>0.05). Of the nine patients without FOB localization, HRCT localized the bleeding site in six patients (67%). The initial HRCT scan correctly identified 48 aetiologies (60%), whereas FOB identified only 2 proximal bronchogenic carcinomas. The extent of lobar involvement seen by HRCT is a prognostic factor correlated with the daily and cumulative volume of haemoptysis. FOB and HRCT are complementary techniques for bleeding site localization. HRCT-scan is also the best exam to determine the cause of haemoptysis, even while it is occurring.

Adult↗

[Inflammation and pleural fibrosis].

Pleural effusions are frequent. There are many etiologies of inflammatory pleural effusions and of pleural fibrosis. Imaging (standard radiography, ultrasound, scanner, MRI) is important for visualization, localization, and assessment of abundance. Exsudative (inflammatory) effusion can sometimes be distinguished from hydrothorax. Imaging signs generally remain nonspecific but can contribute to the etiological diagnosis. In particular, a CT scan of the chest, without and with contrast injection (tissue impregnation) can, in addition to the study of pleural space, enable an visual assessment of the visceral and parietal pleura, the adjacent chest wall, and the adjacent pulmonary parenchyma or vessels, which may provide diagnostic clues. Imaging can also contribute to therapeutic guidance.

Diagnostic Imaging↗

[Intrapulmonary rupture of a dermoid cyst: MRI findings].

We report a case of dermoid cyst of the mediastinum ruptured into the lung. Only a few reports of ruptured mediastinal dermoid cyst have appeared in the literature. A 18-year-old female patient developed a tumor in the anterior mediastinum, which was coincidentally detected by a conventional chest X-ray. CT and MRI demonstrated two components: a cystic mediastinal mass and adjacent parenchymatous condensation. The cystic mass (no enhancement during or after injection) had a fatty structure: high-intensity T1 signal and low-intensity T2 signal. The thin wall (low-intensity signal on T1 and T2) was strongly enhanced during the systemic time and was ruptured. The parenchymatous condensation included a fatty effusion and an inflammatory reaction with the same T1 signal as the cyst, remaining slightly hyperintense on T2 with enhancement after injection. Cine-MRI demonstrated that the mass and the compressed right atrium were independent.

Adolescent↗