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Biomedical subjects

S Shelgikar

Publications and source records attributed to S Shelgikar.

4 recordsLinked to original sources

Transmyocardial laser revascularization: a review.

There is an increasing number of treatment alternatives available for those with ischemic heart disease. Surgical procedures are more sophisticated, a wide array of medications are available, and numerous catheter techniques have evolved to treat patients with coronary artery disease. Technical advances and lifestyle modifications have contributed to a decline in age-adjusted death rates. Despite these advances, there remain a significant number of patients with myocardial ischemia who are not candidates for conventional therapies. Transmyocardial laser revascularization may be a viable adjunct or alternative therapy. In performing this technique, channels are made, from the epicardial surface of the heart through the left ventricle and endocardium, with the CO 2 laser. Perfusion is from the blood supply in the left ventricle via the channels. Postoperative thallium stress tests and left ventriculography indicate that the channels remain patent and protect the ischemic muscle. Experimental and early clinical results of transmyocardial laser revascularization suggest that a group of patients may benefit from this treatment.

Follow-Up Studies↗

Clinical and histological evaluation of laser myocardial revascularization.

Studies exploring methods to revascularize the ischemic myocardium through increasing the collateral circulation were conducted by many investigators before the advent of myocardial revascularization by aortocoronary bypass grafting. Present alternatives, including surgical intervention, balloon angioplasty, thrombolytic therapy, and medical management, are the treatment of choice for the majority of patients. There are, however, a number of patients who do not respond to conventional management strategies. A clinical protocol was designed to assess the efficacy of transmural revascularization by creating CO2 laser channels in the ischemic areas of the left ventricle. Channels were made from the epicardial surface of the heart, through the ventricle, to the endocardium. Patients entered in the study were candidates for bypass grafting, but because of the pathology of the coronary artery system, bypass grafting alone would have resulted in incomplete revascularization. Postoperative thallium stress tests and left ventriculography indicate that channels have remained patent and that they perfuse the myocardium. Myocardial revascularization by laser channels may offer a viable adjunct in the treatment of ischemic heart disease.

Adult↗

New concepts in revascularization of the myocardium.

The concept of direct revascularization of ischemic myocardium by transmural left ventricular conduits has been investigated by several researchers. Early success was followed by closure of the pathways by fibrosis and scarring caused by mechanical trauma. The CO2 laser was examined as an alternative method of creating channels. Early experiments supported the hypothesis that laser channels would perfuse ischemic areas and would remain patent. Histological examination showed patent, endothelialized channels more than 2 years following operation in the experimental model. A clinical protocol was designed to assess the results of laser revascularization in a series of 12 patients. Patients selected were candidates for bypass grafting, but because of the coronary artery pathology involved, it was thought bypass grafting alone would result in incomplete revascularization. None of the 12 patients have died. Follow-up ranges from 3 to 32 months. Postoperative thallium stress tests and left ventriculography indicate that channels have remained patent and that they perfuse the myocardium. Direct laser revascularization of the myocardium may offer a viable adjunct in the treatment of ischemic heart disease.

Adult↗

Laser myocardial revascularization.

A significant number of patients with ischemic heart disease are not candidates for coronary artery bypass or percutaneous transluminal angioplasty and do not respond to medical management. This group includes those who have diffuse coronary artery disease, those with poor ventricular function, and those who have had poor results from previous surgery. Developing a method to directly revascularize the myocardium by creating channels through the ventricular wall has challenged many investigators. Early methods, including needle acupuncture, were successful in the acute phase, but long-term patency could not be achieved. Closure of the channels was due to fibrosis and scarring. Experiments in our laboratory demonstrated that myocardial channels, made with the CO2 laser, remained patent up to five years. Histopathologic examination of the channels showed minimal damage to the surrounding cells in the acute phase. Studies at intervals of two months to two years showed patent endothelialized channels, with no evidence of fibrosis. Channels created in the myocardium protected the ventricle against an ischemic event when the left anterior descending branch of the coronary artery was ligated. Clinical experience with direct myocardial revascularization by CO2 laser indicates it may be a viable method of treating those patients with ischemic heart disease who are not candidates for other forms of management. The treatment and early postoperative follow-up in one patient are described.

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