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A N Demaria

Publications and source records attributed to A N Demaria.

6 recordsLinked to original sources

Screening cardiac ultrasonographic examination in patients with suspected cardiac disease in the emergency department.

BACKGROUND/OBJECTIVE: Our purpose was to evaluate the utility of a brief screening cardiac ultrasonographic (SCU) examination. We prospectively compared the SCU with conventional clinical evaluation in 124 emergency department (ED) patients with suspected cardiac disease. Furthermore, we assessed the impact and quality of SCU examinations as obtained by briefly trained ED personnel (EP). METHODS: Patients underwent clinical evaluation by an ED physician and SCU examination by a sonographer or cardiologist. Patient disposition, hospital stay length, and the number of full echo examinations were compared with the presence of significant findings on SCU. In patients who received a full echocardiogram during hospitalization, results of the initial clinical examination were compared with results of the SCU examination in the diagnosis of significant findings. A similar analysis, but with quality assessment, was performed on only those SCU examinations acquired by 4 EP. RESULTS: Of the 124 patients enrolled in the main study, 40 of 124 (32%) had significant findings on SCU. Of patients with abnormal SCUs versus normal SCUs, 16 of 40 (40%) versus 18 of 84 (21%) had hospital stay lengths >2 days (P < or =.05). Using the 36 inpatient full echo studies obtained for standard indications during hospitalization as a gold standard, initial clinical examination identified only 7 of 30 (23%) significant findings and had 16 false-positive diagnoses, whereas SCU identified 22 of 30 (73%) with 8 false positives. Although similar study results occurred with interpretation of 68 SCUs obtained by EP, quality was achieved in only 55% ED personnel versus 97% of sonographer-obtained SCUs (P <.05). CONCLUSIONS: An SCU examination detects significant findings misdiagnosed on initial clinical evaluation in the ED and provides prognostic data regarding length of hospital stay.

Aged↗

Indications for limited echocardiographic imaging: a mathematical model.

BACKGROUND: Few data exist on the magnitude of potential time savings obtained by using a limited echocardiographic (echo) imaging strategy on a referral population. METHODS: A mathematical model of a limited echo screening strategy was devised that used as variables the length of the limited examination and the probability of detecting the referral diagnosis or a significant incidental finding, and assumed that any abnormality would mandate a full study. Data from prior echo population studies were used in the model as examples. RESULTS: The model demonstrated a direct relation in time savings for populations with a low prevalence of disease and incidental findings. The model predicted that a limited echo imaging strategy could result in significant time savings when applied to certain specific referral populations. CONCLUSIONS: The time savings of a limited echo screening strategy can be modeled as a function of the length of the limited screen and the presence of significant findings. This model may provide the framework in which future prospective studies can confirm indications for limited echo.

Cardiovascular Diseases↗

Three-dimensional echocardiography.

Lack of spatial registration of imaging transducers is a major technical limitation of two-dimensional (2-D) echocardiography. Volume scanning of the heart, or three-dimensional (3-D) echocardiography, is achieved by using a 3-D spatial registration device with a conventional 2-D scanner, or by using a high speed, phased-array real-time scanner. Three-dimensional spatial coordinate systems may be external or internal systems with respect to the scanning transducer. With external systems data acquired from several cardiac windows may be integrated and reconstructed. An external coordinate system allows creation of a "line of intersection" display to guide image positioning in the nonvisualized dimension orthogonal to the real-time image. Use of this display has shown a significant, threefold improvement in the accuracy of image positioning and the reproducibility of chamber measurements. Three-dimensional echocardiography using polyhedral surface reconstruction also yields more accurate measurement of ventricular volume and new measurements of total endocardial surface area and infarct surface area. Computer modeling and 3-D computergraphic displays hold promise of valuable new methods of communication, data analysis, and surgical planning.

Cardiac Volume↗