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M Benz

Publications and source records attributed to M Benz.

25 records · Page 2Linked to original sources

[Morphological classification and comparison of the different types of stromal nodules in benign prostatic hyperplasia].

The expression of immunohistochemical markers for cytoskeletal differentiation and that of neuroendocrine- and immunological cells showed in general the same tendency in the 4 types of prostatic stromal nodules: missing or low expression in immature-mesenchymal-, distinct augmentation in fibroblastic-, a maximum in fibro-muscular- and a slight decline in smooth-muscular nodules. These results are in agreement with developmental sequences, revealed by immunohistochemical investigations of fetal prostates, and seem to confirm the hypothesis that the four types of stromal nodules represent successive degrees of maturation, recapitulating ontogenetic processes.

Biomarkers↗

Effect of localized magnetic-induction hyperthermia on the brain. Temperature versus intracranial pressure.

Normal brain and brain tumor temperatures were studied for their effects on intracranial pressure (ICP) in 13 patients who received 37 localized thermochemotherapy treatments for recurrent primary or metastatic brain tumors. Two transient neurologic complications occurred in patients with an elevated initial ICP value; thus, the authors concluded that an initial ICP value of 30 cm H2O or greater may contraindicate brain hyperthermia. It appears that noninvasive brain hyperthermia by magnetic-loop induction can cause an initial rise in ICP value, although a protective mechanism(s) that tends to lower ICP occurs over time, and also at a normal brain temperature of approximately 42.0 degrees C. Possible mechanisms of ICP reduction include direct heating of the hypothalamus with a reduction in pCO2 and the development of tachypnea and hyperpnea with a reduction in pCO2. Hyperthermia applied to the brain should be undertaken only with adequate monitoring of ICP; in addition, extreme caution should be taken in patients with an elevated initial ICP value and in those patients in whom adaptation to elevated pressure does not occur.

Adult↗

Combination radiofrequency hyperthermia and chemotherapy (BCNU) for brain malignancy. Animal experience and two case reports.

Patients with high-grade primary and metastatic brain malignancies have a median survival time of 3-8 months, regardless of therapy. Because MagnetrodeTM hyperthermia provides safe, deep internal heating without normal-tissue injury, we studied its effects first on the brain and surrounding tissues of rabbits. The normal rabbit brain (n = 26) could be heated to potentially tumoricidal temperatures (42-43 degrees C) without apparent histopathologic or clinical damage to the brain, skull, external eye, subcutaneous tissue or skin. Intracranial pressure did not rise significantly. Using transplanted VX-2 carcinoma, we showed both the safety and potential efficacy of thermochemotherapy (IV BCNU: 14 mg/kg) in the presence of a solid brain tumor. The average maximum brain temperature achieved was 43.06 degrees C. Mean survival from the time of tumor implantation in the treated group (n = 16) was 18.56 days, compared to 9.3 days for untreated controls (n = 30) (p less than .0001). Two patients have been treated with localized brain hyperthermia combined with intravenous BCNU (80 mg/m2) for a total of eight treatments. Maximum normal brain temperature achieved was 40.0 degrees C in Patient #1 and 41.5 degrees C in Patient #2. A tumor temperature of 42.9 degrees C was achieved in Patient #2. Intracranial pressure remained within the upper limits of normal. Swan-Ganz monitoring in Patient #1 revealed a stable cardiac index and mean pulmonary artery pressure with mild fluctuations in the CVP, PAD, and PCW. No increase in chemotherapy toxicity was observed and no normal tissue injury occurred in either patient. We conclude that non-invasive localized radiofrequency hyperthermia to the brain is feasible and can be performed safely in the presence of a solid brain tumor.

Animals↗