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A VINEBERG

Publications and source records attributed to A VINEBERG.

At least 19 recordsLinked to original sources

RESULTS OF 14 YEARS' EXPERIENCE IN THE SURGICAL TREATMENT OF HUMAN CORONARY ARTERY INSUFFICIENCY.

Atherosclerosis obstructs the main stems of coronary arteries, restricting the coronary artery inflow tract. Nature develops intramyocardial collaterals but fails to form extracoronary collateral channels. It is only through surgical measures that extracoronary collateral channels may be formed, for example, by internal mammary artery implantation and omental graft without pedicle operations. Preoperative assessment, with particular reference to anginal pain, disease activity, indications for and contra-indications to surgery, is outlined. The importance of cine coronary arteriography is stressed. The results of internal mammary artery implantation with or without omental graft in patients followed up for two to 14 years are presented. Operative mortality in 103 consecutive patients was 2.9%. There was marked improvement in over 70% of 115 patients reviewed. Post-operative examination of 29 implanted internal mammary arteries showed that 76% were open when examined up to 10 years postoperatively; many of these were studied by cineangiography.

Angina Pectoris↗

The treatment of multiple coronary occlusions by internal mammary artery implantation and omental graft: report on two human cases.

The importance of triple coronary artery disease was evident in 125 patients undergoing internal mammary artery implantation, when some patients died from right coronary artery occlusion. This occurred even when the internal mammary artery was patent and revascularizing the left ventricle.In 1961 the free omental graft operation was developed to revascularize both right and left ventricles. In animals this operation has proved most effective in preventing death after application of Ameroid constrictors to all three coronary arteries. Arteriolar or larger-sized vessels rapidly formed between the aorta and omentum and the pericardium and omentum and the heart and omentum.Two patients with triple coronary artery disease underwent internal mammary artery implantation and free omental graft early in December 1962. Postoperative convalescence was uneventful. They have returned home and appear to be improved. Wrapping the entire heart with the free omental graft has produced little reaction, suggesting that, as in the animal, the grafts are surviving.

Animals↗

Apparent reversion to trophism of a free omental graft: a preliminary report.

In a previous paper we reported evidence which suggested that a free omental graft has trophic characteristics similar to those of the chorionic epithelium of the early embryo, through which it establishes arteriolar or larger connections with aorta, heart and pericardium within 10 days after it has been placed in contact with the denuded surfaces of each structure. The theory of omental trophism was tested by dropping pieces of omentum completely detached into the pleural and peritoneal cavities of white rats. When examined 25 or more days later a percentage of omental grafts appeared healthy and were attached to pleura, lung, heart and to various structures in the peritoneal cavity. In the pleural grafts, histological sections revealed a continuity between the omental grafts and the sub-pleural tissues. A blood-hungry free omental graft appears to seek out its own blood supply. Neither pleura nor serosa was able to repel its primitive probing for a new blood supply.

Animals↗

An operation designed to promote the growth of new coronary arteris, using a detached omental graft: a preliminary report.

The human greater omentum exhibits a marked affinity for inflamed surfaces, to which it supplies numerous blood vessels. To achieve myocardial revascularization by omental graft the root of the aorta, the epicardium over both ventricles and the serosal layer of the pericardium were removed in 17 animals. A piece of greater omentum was removed from the abdomen, unfolded and wrapped around the entire heart, and fixed by interrupted sutures to the base of the aorta. Myocardial ischemia was created at the time of operation by ameroid constriction of coronary arteries. Vessels, arteriolar or larger, were found to grow from the root of the aorta, the myocardium and the pericardium into the detached free omental graft, which apparently acted as a conveyer for new vessels, including new coronary arteries, to reach the myocardium.

Animals↗