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Antonio Palla

Publications and source records attributed to Antonio Palla.

5 recordsLinked to original sources

Diagnosis of pulmonary embolism.

Conventional pulmonary arteriography for the diagnosis of pulmonary embolism (PE) bears several limitations in clinical practice, basically due to its invasiveness. On the other hand, no single noninvasive test is both sensitive and specific for the diagnosis of PE. Therefore, the choice of available noninvasive diagnostic tests guided by the clinical probability of PE is a good compromise at present. The first necessary step toward the diagnosis of PE is to raise the clinical suspicion, given that no diagnosis can be made if PE is not considered in the differential diagnosis of patients with acute cardiorespiratory symptoms. Second, empirical or standardized rules for predicting clinical probability may be combined with one or more noninvasive tests with the aim of increasing the accuracy of the noninvasive diagnosis. The strategy for the noninvasive diagnosis of PE varies among different centers according to the availability of each single technique that may be integrated with another and according to the characteristics of the population that refers to each single center. Therefore, spiral CT should not be used as a primary tool for the diagnosis of PE; its role needs to be re-evaluated in light of its sensitivity, feasibility, and radiation burden on the patients. In patients in whom the diagnosis of PE cannot be made at the end of the noninvasive pathway, the use of the invasive techniques must be taken into consideration. In our experience, however, such cases should not exceed 15 to 20% of the total patient population.

Algorithms↗

Elective surgery for giant bullous emphysema: a 5-year clinical and functional follow-up.

BACKGROUND: So far, very few studies in the literature have reported data on the long-term follow-up of patients who have undergone surgery for giant bullous emphysema (GBE), and much still needs to be known on the late fate of these patients. AIMS: To evaluate patients who have undergone elective surgery due to GBE, early and late mortality following surgery, the early and late reappearance of bullae, and the early and late modifications of clinical and functional data. SUBJECTS AND METHODS: Forty-one consecutive patients (36 men; mean [+/- SD] age, 48.4 +/- 14.8 years) who underwent elective surgery for GBE were enrolled in a prospective study, and were studied both before and after undergoing bullectomy for a 5-year-follow-up period. Analyses were performed on the whole population and on two subgroups of patients who were divided on the basis of the absence of underlying diffuse emphysema (group A; n = 23) or the presence of underlying diffuse emphysema (group B; n = 18). RESULTS: The early mortality rate was 7.3% (within the first year), and the late mortality rate was 4.9% (overall mortality rate at 5 years, 12.2%; mortality rate in group B, 27.8%). Bullae did not reappear and residual bullae did not become enlarged in any patients at the site of the bullectomy. During the follow-up, the dyspnea score was reduced significantly soon after bullectomy and up to the fourth year of follow-up; intrathoracic gas volume also was reduced significantly (average, 0.7 L). The same was true for the FEV1 percent predicted and the FEV1/vital capacity ratio, which kept increasing until the second year; then, from the third year of follow-up these values were reduced, yet remained above the prebullectomy values until the fifth year of follow-up. When considered separately, the patients in group B appeared to be the most impaired, clinically and functionally (eg, FEV1 showed a similar significant increase up to the second year in both groups after surgery, while a different mean annual decrease was appreciable from the second to the fifth year of follow-up: group A, 25 mL/year; group B, 83 mL/year. Furthermore, patients in group B were the only ones who contributed to the mortality rate, on the whole showing a behavior similar to that of patients who had undergone lung volume reduction surgery. CONCLUSIONS: In patients with GBE who were enrolled in the study prospectively and were investigated yearly during a 5-year-follow-up period, elective surgery appears to have been fairly safe, and allowed clinical and functional improvement for at least 5 years. Better results may be expected in patients without underlying diffuse emphysema.

Adult↗

Pulmonary embolism: lung scan and computed tomography.

The diagnosis of pulmonary embolism may be confounded by a clinical presentation that is often subtle or atypical. Therefore pulmonary angiography, although invasive, has been widely used to prove pulmonary embolism. The aim of this review is to discuss the value of non-invasive techniques, such as lung scan and chest computed tomography scan, in the diagnosis of pulmonary embolism. Ventilation-perfusion scan has demonstrated a very high specificity (97%) but a quite low sensitivity (41%) in the diagnosis of pulmonary embolism, while perfusion lung scan not associated with ventilation scan has shown a specificity of 92% and a considerably high sensitivity (87%). The chest computed tomography scan has not yet shown a definite degree of specificity and sensitivity in the diagnosis of pulmonary embolism, although we suppose that this technique will become widely used. However, we emphasize that the diagnosis of pulmonary embolism is not a mere technical problem.

Humans↗