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Biomedical subjects

M A Alpert

Publications and source records attributed to M A Alpert.

At least 19 recordsLinked to original sources

Influence of left ventricular mass on left ventricular diastolic filling in normotensive morbid obesity.

To identify factors influencing left ventricular (LV) diastolic filling in patients with morbid obesity, we performed transthoracic and Doppler echocardiography on 50 subjects whose actual body weight was > or = twice their ideal body weight and on 50 normal lean control subjects. The transmitral Doppler E/A ratio and E wave deceleration half-time were used to assess LV diastolic filling. Significant negative correlations were seen between the E/A ratio and the LV internal dimension in diastole (r = 0.819, p = 0.0001), systolic blood pressure (r = 0.751, p = 0.0001), LV end-systolic wall stress (r = 0.782, p = 0.0001), and LV mass/height index (r = 0.901, p = 0.0001). Significant positive correlations were seen between the E wave deceleration half-time and the LV internal dimension in diastole (r = 0.743, p = 0.0001), systolic blood pressure (r = 0.789, p = 0.0001), LV end-systolic wall stress (r = 0.828, p = 0.0001), and LV mass/height index (r = 0.831, p = 0.0001). No correlation was seen between diastolic blood pressure and either index of LV diastolic filling. Thus increasing LV mass is associated with progressive impairment of LV diastolic filling in morbidly obese individuals. The aforementioned alterations in LV loading conditions may contribute to impairment of LV diastolic filling directly or by increasing LV mass.

Adult

Pathogenesis, recognition, and management of common cardiac arrhythmias. Part I: Ventricular premature beats and tachyarrhythmias.

Cardiac arrhythmias are disorders of impulse formation, impulse conduction, or both. Part I of this two-part review discusses clinically relevant cardiac electrophysiology, as well as the pathogenesis, recognition, and management of ventricular premature beats and ventricular tachyarrhythmias. Part II will review the pathogenesis, recognition, and management of supraventricular premature beats and supraventricular tachyarrhythmias.

Anti-Arrhythmia Agents

The prevalence of rheumatologic disorders in patients with chest pain and angiographically normal coronary arteries.

The purpose of this study was to determine the prevalence of musculoskeletal disorders in patients with chest pain and angiographically normal coronary arteries. The authors studied 40 consecutive patients with chest pain presenting at an Internal Medicine Clinic who had undergone coronary angiography and were found to have < 30% stenosis of all major coronary arteries. Patients with any known noncardiac cause of chest pain were excluded from the study. Each patient underwent a complete rheumatologic examination with x-rays and blood tests when indicated. The diagnosis of fibromyalgia was based on the presence of at least eight paired tender points. The diagnosis of costochondritis was made when palpation of the costal cartilages elicited tenderness. In the normal coronary artery group, 30% of the patients had fibromyalgia and 10% had costochondritis. In the control group of 40 patients with coronary artery disease, only 1 patient had fibromyalgia and none had costochondritis (P < 0.04). Other rheumatologic disorders were uncommon, with no statistical difference between the two groups. The authors conclude that many patients with chest pain and angiographically normal coronary arteries suffer from rheumatologic disorders with fibromyalgia being the most common.

Adult

Interrelationship of left ventricular mass, systolic function and diastolic filling in normotensive morbidly obese patients.

OBJECTIVE: To determine the interrelationship of left ventricular (LV) mass, systolic function and diastolic relaxation in morbidly obese subjects. METHOD: We obtained echocardiograms (M-mode, two dimension) and cardiac Doppler studies (pulse wave, continuous wave colour flow) on 50 subjects whose actual body weight was > or = twice ideal body weight. LV mass/height index was calculated from echocardiographic data (Penn Convention). LV systolic function was assessed by calculating LV fractional shortening. LV diastolic filling was assessed by measuring the transmitral Doppler E/A ratio and the transmitral E wave deceleration time. RESULTS: There were significant positive correlations between LV mass/height index and the LV internal dimensions in diastole, systolic blood pressure, LV end-systolic wall wall stress and the transmitral E wave deceleration time. There were significant negative correlations between LV mass/height index and both LV fractional shortening and the transmitral Doppler E/A ratio. There were significant negative correlations between LV fractional shortening and the LV internal dimension in diastole, systolic blood pressure LV end-systolic wall stress and the transmitral E wave deceleration time. There was a significant positive correlation between LV fractional shortening and the transmitral Doppler E/A ratio. There were significant positive correlations between the transmitral E wave deceleration time and LV internal dimension in diastole, systolic blood pressure and LV end-systolic wall stress. There were significant negative correlations between the transmitral Doppler E/A ratio and the aforementioned variables. CONCLUSIONS: Unfavourable alterations in LV loading conditions contribute to the development of LV hypertrophy and impairment systolic dysfunction in morbidly obese subjects. Increasing LV mass and altered loading conditions may synergistically contribute to impairment of LV diastolic filling in such individuals.

Adult

Continuous ambulatory peritoneal dialysis and the heart.

OBJECTIVE: To review clinical research pertaining to continuous ambulatory peritoneal dialysis (CAPD) and the heart. DATA SOURCES: A Medline computer search was employed to identify appropriate references from 1970 - 1994. Indexing terms were: continuous ambulatory peritoneal dialysis, hemodialysis, heart or cardiac, left ventricle, coronary artery disease, and survival. English and non-English language abstracts were scrutinized. STUDY SELECTION: Forty-six studies were reviewed and utilized. Numerical data extracted are reported in this review as they were reported in the original article. RESULTS: This review provides a broad-based survey of studies pertaining to CAPD and the heart. Most of the studies relate to CAPD and left ventricular structure or function. Little information exists concerning CAPD and coronary artery disease, valvular disease, pericardial disease, and cardiac arrhythmias. Studies pertaining to patient survival on CAPD identify coronary artery disease and congestive heart failure as major risk factors, but in-depth quantification of these cardiovascular disorders is lacking in the literature. CONCLUSIONS: CAPD is capable of decreasing left ventricular (LV) volume and improving LV systolic function in patients with LV enlargement and those with LV systolic dysfunction. The effect of CAPD on left ventricular hypertrophy (LVH) and LV diastolic function is variable. CAPD produces symptomatic improvement in patients with refractory congestive heart failure, but its effect on survival in such patients is uncertain. Atherogenic lipid abnormalities occur in CAPD patients. The clinical significance of these abnormalities is uncertain. Coronary artery bypass surgery can be performed safely and effectively on CAPD patients. CAPD is not arrhythmogenic. Survival of CAPD patients is similar to that of hemodialysis patients except in elderly diabetics for whom it is slightly lower.

Arrhythmias, Cardiac

Pharmacotherapy of chronic pulmonary arterial hypertension: value and limitations. Part I: Primary pulmonary hypertension.

Efforts aimed at assessing pharmacotherapy of pulmonary arterial hypertension (PHT) have largely focused on patients with primary PHT, PHT associated with selected connective tissue diseases, and various forms of hypoxic secondary PHT. Part I of this review discusses the value and limitations of a wide variety of vasodilator drugs, oxygen, and warfarin in the treatment of primary PHT with special reference to their effects on pulmonary and systemic hemodynamics, functional capacity, and survival.

Acetylcholine