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Biomedical subjects

B R Persson

Publications and source records attributed to B R Persson.

45 records · Page 3Linked to original sources

Labeling and testing of 99mTc-streptokinase for the diagnosis of deep vein thrombosis.

A detailed study has been made of the method for labeling streptokinase with 99mTc in order to get a radioactive indicator for rapid scintigraphic visualization of thrombi and emboli. The best method found for preparing 99mTc-streptokinase was by reducing 99mTc-pertechnetate with 2 mumole SnCl2 at pH 0.7 and then adding 50,000-75,000 IU of streptokinase at a final pH of about 2. After 1 hr of equilibration the labeling efficiency was 75-80% as determined by the method of gel chromatography column scanning. The dynamic behavior and distribution of 99mTc-streptokinase in different organs was studied in rabbits where a high uptake was found in liver. In a clinical investigation using 99mTc-streptokinase prepared according to this work, however, the liver uptake in man was only 10-20%.

Animals↗

Improved receiver coil for upper thoracic spine imaging in a vertical magnetic field.

To improve image quality in the upper thoracic spine, an anatomically shaped copper wire loop coil, made to fit over the patient's shoulders, was constructed. The coil was permanently mounted on a foam-rubber vest to facilitate attachment to the patient. Phantom and in vivo studies of the performance of the coil in healthy volunteers showed as much as a two times greater signal-to-noise ratio relative to that of standard coils for the upper thoracic spine. In a patient with lesions in the upper thoracic cord, the coil gave better image quality in the region of interest than did the standard coils. The coil has been integrated into the authors' routine imaging equipment and has been the coil of choice for imaging of the upper thoracic spine on their 0.3-T vertical field system.

Humans↗

Factors affecting the trapping performance of xenon holdup--filters in nuclear medicine applications.

Activated charcoal traps are used in nuclear medicine departments to capture exhaled radioactive xenon gas. In the present study, the trapping performance of charcoal was investigated for different physical qualities in experimental and clinical situations. Various factors affecting the trapping capacity are identified, such as the charcoal mass, moisture and carbon-dioxide concentrations in the sweep gas, gas-flow rate through the trap, and temperature. Improper drying of the exhaled air prior to passage through the charcoal bed appears to be a critical factor, leading to a much earlier breakthrough of xenon. Commercial xenon traps intended for ambient temperature operation were found to be useful only for a limited number of patients due to an early breakthrough point. By refrigerating the trap, however, a much larger capacity was achieved. If correctly managed, xenon traps constitute a useful alternative for isolating radioactive xenon wastes in clinical and experimental applications.

Air Pollution, Radioactive↗

Temperature control and light penetration in a feedback interstitial laser thermotherapy system.

The aim of this study was to describe the performance of a closed loop interstitial laser thermotherapy system in processed liver and to demonstrate its suitability for treating a vascularized tumour in vivo. The thermotherapy system consisted of an Nd: YAG laser and a temperature feedback circuit including an automatic thermometry system and thermistor probes. Experiments in processed liver were performed with a sapphire probe and temperature control at a distance of 10 mm. In most experiments at 1-2 W, and in half of the experiments at 3 W, there was no carbonization, a moderate change in the light penetration and excellent control of the temperature. In experiments with output powers of 4-5 W there was carbonization with rapid deterioration of light penetration and impaired control of the temperature. Carbonization affected the distribution of temperatures, which were lower below, and higher above, the laser tip in experiments with carbonization as compared to experiments without carbonization. Treatment of an adenocarcinoma implanted into rat liver was performed at 2 W with a bare fibre and without blood inflow occlusion. The feedback thermistor probe was placed 3 mm outside the margin of the tumour (largest diameter 9.5 +/- 0.3 mm (mean +/- SEM)). Temperature control and light penetration characteristics were similar to those found in vitro. No tumour could be demonstrated at sacrifice 6 days later. It is concluded that a closed loop feedback system can produce stable and reproducible local hyperthermia, that it performs better when carbonization is avoided and light penetration is preserved and that it has a great potential for interstitial thermotherapy of malignant tumours.

Animals↗

A new antitumour treatment combining radiation and electric pulses.

AIM: To investigate the antitumour effect of radiation in combination with electropermeabilization on subcutaneous rat glioma tumours. MATERIALS AND METHODS: Sub-optimal radiation treatment was administered separately or in combination with electric pulses of high voltage to subcutaneous rat brain tumours. The treatment was repeated on four consecutive days and evaluated by TGD and microscopical examination. The tumours were stained for Factor VlII/von Willebrand Factor to investigate the effects on the tumour vasculature. RESULTS: Radiation and electric pulses applied concomitantly resulted in a cure rate of 67% (tumour free >80 days after treatment). Radiation-treated animals showed progressive disease. Histological and immunohistochemical examination of electric impulse-treated tumours showed instant and severe deteriorating effects on tumour vasculature. CONCLUSION: A distinct antitumour effect of the combined treatment of electric pulses and radiation treatment was observed. We believe that the tumouricidal effect arises from destruction of the tumour vasculature but also from DNA related damage from reactive oxygen formed by the electric pulses and the radiation treatment.

Animals↗

Electrically mediated drug delivery for treatment of an adenocarcinoma transplanted into rat liver.

BACKGROUND: In this study, electrochemotherapy (ECT), i.e. tumour treatment based on local augmentation of intracellular drug delivery from short, intense electric pulses, was evaluated in rats with an adenocarcinoma implanted into the liver. Tumour response and concentrations of macrophages and T-lymphocytes (CD4 and CD8) in and around the tumour were measured. MATERIALS AND METHODS: Rats were treated with permeabilizing electric pulses, bleomycin, or both, eight days after implantation of the tumour, while one group received sham treatment. RESULTS: Treatment with electric pulses and bleomycin resulted in a significantly reduced lesion volume and 92% cure rate (12 out of 13, p<0.0002 compared to the other treatment groups). The highest concentration of CD8 lymphocytes was found in tumours treated with electric pulses and bleomycin. Macrophages were found mainly in tumours treated with electric pulses, with or without bleomycin. CONCLUSION: Electrochemotherapy using millisecond exponential pulses and bleomycin is efficient in a rat liver tumour model and appears to stimulate the host's immune system.

Adenocarcinoma↗