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Biomedical subjects

Hector I Michelena

Publications and source records attributed to Hector I Michelena.

3 recordsLinked to original sources

Cholesterol levels after 3 days of high-dose simvastatin in patients at moderate to high risk for coronary events.

BACKGROUND: Elevated levels of low-density lipoprotein cholesterol (LDL-C) impair vascular function by a variety of mechanisms. HMG CoA reductase inhibitors (statins) improve endothelial function by lowering LDL-C and possibly by other "pleiotropic" effects. How rapidly statins can lower LDL-C has not been thoroughly studied. METHODS: We examined the lipid response to 3 days of high-dose simvastatin in a randomized prospective double-blind placebo-controlled crossover study. Twenty-seven subjects at moderate to high risk for coronary heart disease (CHD) received either simvastatin 80 mg/day for 3 days followed by placebo for 3 days or placebo followed by simvastatin. After a washout period of 10 to 14 days, subjects received the opposite treatment. Nonfasting blood lipid levels, including total cholesterol, direct LDL-C, high-density lipoprotein cholesterol (HDL-C), and triglycerides, were obtained before randomization and after each 3-day treatment period. RESULTS: The mean LDL-C level at baseline was 107 mg/dl and decreased 24% in patients receiving simvastatin and 5.6% in patients receiving placebo (P < 0.001). Statistically significant reductions were also achieved in the total cholesterol and cholesterol/HDL-C ratio: 14% and 12%, respectively. Changes in HDL-C and triglyceride levels were not significant. CONCLUSION: Treatment with simvastatin for only 3 days results in a 24% drop in the LDL-C level. As defined by ATPIII, this decrease is comparable to that necessary to lower the LDL-C from one risk level to a lower one and is, therefore, both clinically and statistically significant.

Adult↗

Radionuclide-based insights into the pathophysiology of ischemic heart disease: beyond diagnosis.

This review article discusses the historical origin of cardiac radionuclide-based methods, the physiologic background that justifies their existence, as well as the basic pathophysiologic concepts of coronary artery disease and their connection with the technologic design and application of these methods. Most importantly, this review discusses the important insights that these methods have provided to the understanding of the mechanisms of ischemia, risk stratification, and both treatment choice and treatment efficacy in ischemic heart disease. Nuclear cardiology originated as an attempt to provide complementary physiologic information to the anatomic information provided by coronary angiography. To comprehend the design and applications of nuclear cardiology methods, one must have a basic understanding of coronary artery disease as an inflammatory process that may manifest as acute or chronic states. Basic concepts on myocyte metabolic pathways, coronary blood flow, ischemic cascade, ventricular remodeling, and ejection fraction become critical for this purpose. Insights into risk stratification may permit patient-tailored therapy approaches. Insights into prognosis have made nuclear cardiology a robust tool for outcome predictions, with an exceptionally high negative predictive value. Evaluation of prognosis in special patient populations such as diabetics has originated important pathophysiologic concepts. Most insights into phenomena such as myocardial hibernation, myocardial stunning, and viability have been generated by nuclear cardiology techniques. Finally, new applications of radionuclide-based methods such as molecular identification of "vulnerable" atherosclerotic plaques, "ischemic memory" using fatty acid imaging, and myocardial innervation imaging provide new avenues for insightful research.

Animals↗

Anticoagulation in the elderly.

This review will address the general approach to the management of the typical elderly patient requiring anticoagulation. Most of the data has been derived from studies of patients with nonvalvular atrial fibrillation. Data from postmyocardial infarction trials have also been included. A practical clinical approach to anticoagulation in the elderly is described. Emphasis has been placed on maximizing the benefit and reducing the risk of anticoagulation in the rapidly expanding group of elderly patients aged >/=75 who are at the greatest risk of stroke and are likely to benefit the most from antithrombotic therapy.

Age Distribution↗