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Biomedical subjects

H Breining

Publications and source records attributed to H Breining.

At least 37 records · Page 2Linked to original sources

[Electronmicroscopic findings in a malignant hepatoma after oral contraceptives (author's transl)].

In this paper we report the electronmicroscopic findings in a hepatocellular carcinoma of a 24 years old woman after taking oral contraceptives. We saw alterations of the nucleus (finger-like or finger-formed nuclei, nuclear invaginations and intranuclear vesicular membranbodies), changes of the mitochondries (number, polymorphy and osmiophil bodies) as well as changes of lysosomes (myelinshaped residualbodies). The observed and described changes are not specific for malignant tumors of the liver.

Adult↗

[Diffuse segmental lipomatosis of the ileum (author's transl)].

Case of unusual diffuse segmental lipomatosis of a part of the small bowel is reported. Other cases from the literature are compared to various pathological deposits of fat in the intestine. Aetiology, clinical signs, diagnosis and differential diagnosis, as well as surgical treatment, are discussed.

Adult↗

[Morphologic changes of the renal arteries following instrumental compression (author's transl)].

In the present work, light-microscopic changes in the renal arteries of the rabbit following instrumental compression for specific intervals are described: 1. Compression led to necrosis of whole layers of the vascular walls, which could already be observed under the light microscope after 3 h.--2. The degree of wall necrosis depends only on the pressure of the clamp: not on the duration.--3. Experience shows that, independent of the type of clamp, there is complete regeneration of the adventitia and media by the fourth postoperative week.--4. In all vessels, the residual effect is a 2--5 layer proliferation of the intima that extends over the entire clamped area for 4--8 weeks postoperatively.--5. In 2 out of 80 renal arteries, arterial thromboses developed.

Animals↗

[Morphological findings on the brain of rats after local freezing (author's transl)].

In continuation of our investigations of the wound healing process after cryonecrosis in the liver, kidney, spleen and stomach, the wound healing in the brain was studied under the same condition. Through a trepanation of about 3 mm diameter, the cortex of the parietal region of the cerebrum was frozen by a cryoprobe applied directly through the intact dura mater (-196degreesC/30s). The animals were killed at definite time intervals between 12 h and 21 days after freezing. Twelve hours after freezing, the necrosis of the brain cortex is complete. It extends wedgeshaped into the subcortical white matter. The central parts of the necrosis become colliquative and are demarcted by leucocytes. Two days after freezing, the necrotic area is almost totally invaded by leucocytes. Three days p.op. the brain wound is infiltrated by microglial cells, later on the mesenchymal cell proliferation extends to the meninges. There is new capillary formation and partially a wall like proliferation of the perivascular connective tissue cells. Ten days and later, an uni- or multiloculated pseudocyst develops, which can be considered as the final stage of the reparative wound healing of the cryonecrosis. Similar as in the other investigated organs (liver, kidneys, spleen) these investigations underline the rapid wound healing of the cryonecrosis in the brain. The advantages of cryosurgical manipulations with the well known good wound healing process of other organs, justifies therefore the short term tissue freezing on the cerebrum.

Animals↗

Wound healing of the brain of rats after cryonecrosis. Autoradiographic investigations with 3H-thymidine.

Histologic and autoradiographic studies were performed to investigate the cellular reactions during wound healing of the brain of rats after cryonecrosis. A parietal lobe was frozen for 30 s with a cryoprobe at a temperature of -196 degrees C. The survival time ranged between 12 h and 21 days. One h before killing, tritiated thymidine was injected intraperitoneally. Stripping film autoradiograms of the brain sections were made in the usual manner. A typical cryonecrosis develops 12 h after local freezing surrounded by an edematous tissue layer with activated mesenchymal and neurologlial cells. After 10 days a pseudocyst develops surrounded by highly cellular glial tissue. The pseudocyst is still recognizable 3 weeks later but without any remarkable cellular reaction. Autoradiographically the labeling indices of the fibroblasts, leptomeningeal,and endothelial cells in the periphery of the necrosis and the labeling indices of neuroglial, perivascular connective tissue, and microglial cells in the perinecrotic zone increase after 12 h and have their maximum between the 2nd and 3rd postoperative day. In the nonfrozen contralateral cerebral hemispheres, the labeling indices of neuroglial and mesenchymal cells show small peaks in the first 3 postoperative days,also. This can be explained by accompanying edema. There are no remarkable differences between frozen and nonfrozen parts of the brain 3 weeks after local freezing. The results underline the rapid repair of cryonecrosis.

Animals↗

[Healing process of colonic anastomosis after contamination with Staphylococcus aureus (author's transl)].

In 30 rats the healing process of colonic anastomosis contaminated with Staphylococcus aureus was studied. At the same time on each animals a single- and double-layer anastomosis was performed. All sutures were infected during the surgical procedure with highly infectious S. aureus. The rats were sacrificed after 1, 2, 3, 4 days, and 2 1/2 weeks. Criteria for estimation were mainly visible abscess formations, leakage spots, bacteriologic and histologic examinations. After apparent inflammatory reactions were seen on the first postoperative days with a maximum on the 4th day, all sutures were completely healed and free of S. aureus after 2 1/2 weeks. As for the extent of infectious inflammation, the single-layer suture technique proved to be more resistant than the double layer.

Animals↗

Regeneration of the renal calyces after calycectomy: an experimental study.

On 14 rabbits, 21 kidneys were subjected to a calycectomy or the tip of the papilla was cut off by caudal nephrotomy. During an observation period of 2, 4, 6, 8 and 10 days, and further after 3 and 6 weeks the macroscopic and microscopic investigations led to the following results clearly answering the question put at the beginning of the inquiry: (1) even if parts of the renal calyces are removed, a complete regeneration of the renal pelvic mucosa takes place in the damaged area; (2) regeneration of the mucosa begins in neighbouring renal pelvic epithelium and the epithelium of the collecting tubes; (3) regeneration starts on the 4th day and is essentially ended by the 3rd week; this regeneration extends over the whole of the injured area; after the 6th week the process is finished and no inflammatory changes are to be found in the damaged area, and (4) in the process of healing no fibrous tissue is formed at the occlusion of the lamina cribrosa in the area of the papilla; there is no demonstrable necrosis of the renal parenchyma where the mucosa was removed. Hydronephrosis in this area is evident, beginning on the 3rd or 4th day and is to be regarded as the result of inflammatory process or of the operation itself. It is partly in evidence after 6 weeks but is clearly in a regressive stage. Morphologically a functional loss of the affected area of renal tissue cannot be demonstrated. The four questions made and answered by this animal experiment allow the following conclusion: calycectomy can be successfully undertaken. Regeneration of the mucosa is almost finished after 3 weeks and finally completed after 6 weeks. Considerable cicatrisation in the area of the mucous membrane injury or of its nephrons is morphologically unimportant. Calycectomy should be preferred to polar resection as there is a smaller parenchymal loss.

Animals↗