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Biomedical subjects

T Pirronti

Publications and source records attributed to T Pirronti.

At least 37 records · Page 2Linked to original sources

[Computer-assisted report generation and image transmission in bedside chest x-rays in intensive therapy units].

Since a few years ago, in our department the bedside chest X-rays of intensive care patients have been reported by means of a computer program which has also storing function. This computer program is a guideline for the radiologist and is organized in pages having a logical sequence. The program has proved very useful in learning the correct reporting of bedside chest X-rays. The nosographic data of the patients, the ventilatory and the technical data are stored for a better clinico-radiological correlation. The last four reports are displayed on the monitor to better understand the patient's history. The other reports become part of a "historical" archive. Most important is the cooperation with the referring physician: to make the most of it, a system has been implemented which sends the images from the Radiology Department to Intensive Care. The images are filmed with a camera and then digitalized on 1024 x 768 matrix with 16 million colors and 256 gray levels. Each workstation is composed of: AT286 computer with 60-MB hard disk, hardware or the digitalization and compression of images, a high-resolution monitor, an intercommunication system, and a modem. It is possible to zoom on the images, but a close-up on the image with the camera is better for improved spatial resolution. The images are stored on the hard disk: each image requires 3M bytes, but it can be compressed down to 25:1 with no detail loss. The images are transmitted via modem in at least 20 seconds/image. More images can be sent out-line. During transmission, it is possible to talk by the intercommunication system, pointing out structures on the monitor or drawing objects on both sides of the system. In our experience, image quality is good. We are therefore considering extending the network to other Departments and making the transmission of images of pathologic specimens possible. The natural evolution of this system is the teleconsult.

Computer Communication Networks↗

[Profitability of the radiological examination of the thorax. Development of thoracic radiology, administered dose, quality control and role of the clinic].

The considerable spreading of chest X-ray (about 50% of all radiological examinations--WHO official report No. 698), and its biological and economic high cost, make interesting the cost/benefit evaluation of this simple and world-wide X-ray examination. The evaluation, highly important although very complex, is concerned with many different problems. The different problems, such as the development of radiological diagnosis in pulmonary diseases, dose of exposure, quality assurance and clinical role are analyzed.

Cost-Benefit Analysis↗

[Contrast dose and signal/noise ratio in digital angiography].

In a digital angiographic system the variations of the signal to noise ratio in relation to the contrast medium quantity and to the exposure data are analyzed. On these basis, the greater flexibility of the digital angiographic equipments in comparison with conventional ones is underlined.

Angiography↗

Accuracy of computed tomography and magnetic resonance imaging in staging bronchogenic carcinoma.

Sixty-three patients with non-small cell bronchogenic carcinoma were prospectively and independently assessed by computed tomography (CT) and magnetic resonance imaging (MRI) before surgery. Images were interpreted by four radiologists who had no knowledge of other imaging studies, except chest x-ray, and were blinded to surgical findings. The data were compared with pathologic and histologic findings. The accuracies of CT and MRI in determining tumor classification and assessing mediastinal and hilar lymph node metastases were compared. Sensitivity of CT in determining T factor was 78%, and specificity was 96%. The values for MRI were 84% and 96%, respectively. There was no significant difference between CT and MRI in staging tumors. MRI is more accurate than CT in diagnosing mediastinal invasion in staging superior sulcus tumors and complex tumors. There was no significant difference between the accuracies of CT and MRI in detecting mediastinal node metastases; the sensitivities were 82% and 90%, respectively, and specificities were 88% and 93%, respectively.

Carcinoma, Bronchogenic↗

Combined diagnostic imaging of mediastinal lymphadenopathy in lung cancer.

The identification and characterization of lymphadenopathies is one of the fascinating challenges of modern diagnostic imaging. At present, the real problem is the distinction between normal and pathologic signs. For twenty years, the differentiation was based on the dimensional criterion, namely a short axis < 1 cm, however it was shown to be inadequate. After an overview of the anatomy, ATS classification, the role of N factor in lung cancer (60% of N0 patients survive at 5 years) while only 20% of N2 patients survive), the new signs evidenced on CT are analyzed and interpreted. With thin section, late phase CT, a retrospective study and a perspective study were carried out on densitometric changes in lymph nodes correlated with histology findings. The role of intranodal hypodensity, peripheral rim and adipose tissue was stressed. The results of these studies were concordant with histology findings and confirmed the better accuracy in staging and the impact on survival of extranodal spread detected, based on radiologic criteria.

Carcinoma, Non-Small-Cell Lung↗