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Biomedical subjects

J G Llaurado

Publications and source records attributed to J G Llaurado.

At least 19 recordsLinked to original sources

Radioisotopic pulmonary lobectomy: feasibility study in dogs.

In search for an alternate treatment for inoperable cancer of the lung in humans, we investigated the possibility that introduction of radioactive material into a selected lobe of the canine lung would effectively destroy that lobe without systemic effects or radiation injury to adjacent organs. Ten million ion exchange microspheres labeled with 740 MBq of phosphorus-32 (32P) were injected through a catheter placed in a selected lobar branch of a pulmonary artery in 12 anesthetized dogs. Six additional dogs served as controls and received 10 million microspheres not labeled with 32P. Organs were harvested from 1 wk to 12 mo after injection and examined grossly and histologically. There was progressive organization and contraction of each necrosed 32P treated lobe which was reduced to a scarred remnant by 12 mo, whereas only minimal inflammatory changes occurred in controls. Of the 32P injected dose, 94% remained in injected lobe, 4%-5% in nontargeted lobes and less than 0.08% in blood. Radioactivity in liver, kidneys, spleen, heart, and bone marrow was less than 0.1% for each organ. Thus, large doses of radiation in the order of 1,500 Gy can be effectively delivered to a selected lobe to produce a "radioisotopic pulmonary lobectomy."

Animals

Computer aid for AIDS.

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Acquired Immunodeficiency Syndrome

Molecular computer.

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Anti-Bacterial Agents

Visualization by dynamic and static osseous scintigraphy of pelvic chondrosarcoma in multiple hereditary exostosis.

Malignant degeneration to chondrosarcoma occurred in the left hemipelvis of a patient with multiple hereditary exostosis. Tc-99m HDP bone scintigraphy revealed markedly increased focal uptake in the areas of left superior pubic ramus, obturator foramen, and ischium with displacement of the urinary bladder. Of particular interest was the presence of vascularities seen in the flow and blood pool scintigrams. Following surgical exeresis, the gross appearance and histologic features of the tumor were identified as those of a low grade chondrosarcoma.

Adult

Cellular sodium transport in arterial wall--summary of studies by digital computer simulation.

The distribution of electrolytes between extracellular and intracellular compartments is of greater functional significance in biological tissues than the total amount. A method commonly employed for the study of a substance distribution among different spaces is the continuous outflow and radioisotope counting of a fragment of tissue previously incubated with a radioactive tracer (here 22Na+). The experimental data can be analyzed within the frame of a compartmental analysis system which is defined by transport rate constants (kij) and solved when all kij are numerically determined. In practical applications the direct solution requires measurements in different compartments or knowledge of the initial condition for each compartment, but this is not possible in most biological tissues where the experimentally observable data represent the summation of tracer in all compartments at each point in time. The availability of the SAAM (Simulation, Analysis And Modelling) computer program allows for a powerful simulation procedure to arrive at values for kij. Experimental data and specifications for a chosen model are entered in the SAAM format. A simulated 'inflow' experiment is made by the computer by assigning to kij some estimate values. All initial conditions are now zero, since at the beginning there is no radioactive tracer in any compartment. After a time equivalent in the experimental realm to achieving constant specific activity, a 'time change' programmed into the computer takes place so that the outflow part of the experiment is developed with the same kij as for the inflow part, the final conditions for the inflow before the time change being the initial conditions for the outflow. An iterative procedure modifies the initial estimates of kij to seek the best fit. By coupling a powerful simulation procedure to an advanced radionuclide tracer biological methodology, we have been able to find effects of the hormone aldosterone and of experimental hypertension on Na+ distribution in arterial wall years before such effects were demonstrated by purely conventional experimental techniques. This computer simulation procedure may be suited to other experimental situations in which outflow data are the only available.

Aldosterone