Search PubMed⌕ Search

Biomedical subjects

Alan D Waggoner

Publications and source records attributed to Alan D Waggoner.

20 records · Page 2Linked to original sources

Severe pulmonary hypertension without right ventricular failure: the unique hearts of patients with Eisenmenger syndrome.

Why adults with the Eisenmenger syndrome fare so much better than other patients with severe pulmonary hypertension is not known, but may be related to unique hemodynamics found only in these patients and in normal fetuses. We used echocardiography to evaluate ventricular morphology and function in 80 subjects: 45 cyanotic adults and 5 cyanotic adolescents with Eisenmenger syndrome, 10 infants with nonrestrictive ventricular septal defect and left-to-right shunt flow (pre-Eisenmenger phase), and 20 fetuses with structurally normal hearts. Cross-sectional morphology of the hearts was the same in all 4 groups with a flat ventricular septum throughout the cardiac cycle and equal thickness of the right and left ventricular free walls (regression slope 0.98, r = 0.97, p <0.0001). This morphology was the same in patients independent of age, defect type, and ventricular function. Right ventricular fractional area change was slightly inferior to that of the left ventricle but normal in most patients with Eisenmenger syndrome (0.47 +/- 0.14 vs 0.51 +/- 0.13, p <0.01). Overall, there was a highly significant linear relation between right and left ventricular function (r = 0.81, p <0.0001). The hearts of patients with Eisenmenger syndrome are more like normal fetal hearts than normal adult hearts. Because of the unique cardiovascular hemodynamics, regression of right ventricular wall thickness does not occur and is likely the reason that patients with Eisenmenger syndrome fare so much better than other adults with severe pulmonary hypertension.

Adolescent↗

Hypertensive left ventricular hypertrophy is associated with abnormal myocardial fatty acid metabolism and myocardial efficiency.

BACKGROUND: Hypertension-induced left ventricular hypertrophy (LVH) is associated with an increased risk of cardiovascular morbidity and death by mechanisms not well characterized. METHODS AND RESULTS: Myocardial fatty acid (FA) metabolism and left ventricular (LV) mass were evaluated in 13 patients with hypertensive LVH with normal LV ejection fraction and 42 normal control subjects (primary cohort). Contractile performance was also evaluated in 5 hypertensive LVH patients and 5 matched normal control subjects (magnetic resonance [MR] substudy). Myocardial FA utilization (MFAU) and myocardial FA oxidation (MFAO) were assessed by positron emission tomography by use of 1-carbon-11 palmitate. Myocardial contractile function (strain and stress) was determined by cardiac MR imaging with tissue tagging and calibrated arterial pressure traces; myocardial external minute work and efficiency were derived. In the primary cohort decreased MFAO was predictive of increased LV mass (model r(2) = 0.61, P = .03). In the MR substudy decreased MFAO (corrected for myocardial oxygen consumption [MVO(2)]) in the hypertensive LVH group compared with the normal group (MFAU/MVO(2), 26 +/- 5 vs 37 +/- 8; MFAO/MVO(2), 24 +/- 6 vs 35 +/- 7; both P = .03) was paralleled by decreased myocardial external minute work (0.13 +/- 0.03 J x g(-1) x min(-1) vs 0.17 +/- 0.04 J x g(-1) x min(-1), P = .07) and decreased myocardial efficiency (5.2% +/- 1.4% vs 7.1% +/- 1.0%, P = .03). CONCLUSIONS: Abnormalities in myocardial FA metabolism are apparent in hypertensive LVH, and these abnormalities may be responsible, at least in part, for a reduction in myocardial efficiency.

Aged↗