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Biomedical subjects

G Bautovich

Publications and source records attributed to G Bautovich.

5 recordsLinked to original sources

Comparisons of planar and tomographic gamma scintigraphy to measure the penetration index of inhaled aerosols.

The quantitative measurement of regional aerosol deposition in human lungs using two-dimensional (2D) gamma scintigraphy has proven to be useful in therapeutic and diagnostic aerosol studies. The penetration index (PI) has been defined as the ratio of activity in a peripheral lung zone to a central lung zone, but the ability to discriminate between aerosol deposition in the large airways and lung parenchyma is reduced by the fact that the latter overlies the former in the central zone. To overcome this, we used a three-dimensional (3D) technique. Seven healthy subjects inhaled isotonic saline aerosols containing 99mTc-DTPA on two occasions. The droplets had a mass median aerodynamic diameter (MMAD) of either 2.6 or 5.5 microns (with geometric standard deviations [sigma g] of 1.4 and 1.7, respectively). Transmission tomography was performed on each subject to delineate lung boundaries in 2D and 3D. After inhalation, anterior (A) and posterior (P) images were collected and a tomographic study performed. Mid-lung slices were taken from coronal (CC) and transverse (TC) sections. PI was calculated on the 2D images (AP and P) and the 3D slices (CC and TC) using exactly defined regions. The PI values were smaller for the large droplet aerosol (5.5 microns) in all subjects and methods. The relative differences in PI between large and small (2.6 microns) droplet studies (d values) were greater and less variable for the 3D methods (TC, 56.5 +/- 11.4% and CC, 52.4 +/- 12.3%) compared to the 2D methods (P, 25.4 +/- 17.1% and AP, 38.3 +/- 15%; p less than 0.005). We found the 3D methods to be more sensitive for discriminating between aerosol deposition in large and small airways than were the conventional 2D methods.

Adult

Myocardial perfusion scanning with thallium--201 for the non-invasive diagnosis of coronary artery disease.

Thallium--201 myocardial perfusion scanning has been evaluated in Australia in patients with coronary artery disease. Myocardial scans reliably detect both acute myocardial infarction and the transient myocardial ischaemia of angina pectoris. The non-invasive nature, ease of study, and the ability to scan patients with conventional cameras makes thallium--201 an attractive additional diagnostic agent for patients with suspected coronary artery disease. Although thallium--201 reliably indicates perfusion defects in the myocardium, its diagnostic use at the moment should be reserved to clarify such diagnostic problems in patients with coronary artery disease which cannot be satisfactorily explained by conventional investigation.

Angina Pectoris

Radionuclide imaging to assess myocardial damage during open heart surgery.

Technetium 99m Pyrophosphate imaging before and after open heart surgery was performed in 38 patients to estimate the incidence of peri-operative infarction. Positive images were present pre-operatively in 11 of 30 patients with coronary artery disease. In three patients the images changed from negative to positive and in two this was thought to be due to infarction produced at operation. The high incidence of positive pre-operative images emphasises that many patients with evolving myocardial infarction, unstable angina or severe heart failure are now operated upon without delay. Because many patients have positive images before surgery pre-operative and post-operative images must be compared to assess myocardial damage due to surgery.

Adult

"Hot spot" myocardial scanning: experiences with a mobile nuclear camera in a coronary care unit.

Twenty-nine patients with suspected or actual myocardial infarction have had myocardial "hot spot" scans with technietium 99m pyrophosphate, using a mobile nuclear camera in a coronary care unit. Nine patients with transmural infarcts had positive scans. Nine out of 12 patients thought to have had endocardial infarction had positive scans. Two patients who had had intramuscular injections presented with chest pain and abnormally high serum enzyme levels, but had negative scans. Myocardial radionuclide scanning with a mobile nuclear camera is a rapid, easy, repeatable, non-invasive method of helping to confirm or exclude the diagnosis of myocardial infarction and, used together with other available tests, is a valuable additional diagnostic aid.

Adult