Natural Progression of Low-Gradient Severe Aortic Stenosis with Preserved Ejection Fraction
Author(s) -
Antony Leslie Innasimuthu,
Sanjay Kumar,
Jason Lazar,
William E. Katz
Publication year - 2014
Publication title -
texas heart institute journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.373
H-Index - 53
eISSN - 1526-6702
pISSN - 0730-2347
DOI - 10.14503/thij-13-3167
Subject(s) - stenosis , medicine , ejection fraction , cardiology , heart failure
Because the natural progression of low-gradient aortic stenosis (LGAS) has not been well defined, we performed a retrospective study of 116 consecutive patients with aortic stenosis who had undergone follow-up echocardiography at a median interval of 698 days (range, 371-1,020 d). All patients had preserved left ventricular ejection fraction (>0.50) during and after follow-up. At baseline, patients were classified by aortic valve area (AVA) as having mild stenosis (≥1.5 cm(2)), moderate stenosis (≥1 to <1.5 cm(2)), or severe stenosis (<1 cm(2)). Severe aortic stenosis was further classified by mean gradient (LGAS, mean <40 mmHg; high-gradient aortic stenosis [HGAS], mean ≥40 mmHg). We compared baseline and follow-up values among 4 groups: patients with mild stenosis, moderate stenosis, LGAS, and HGAS. At baseline, 30 patients had mild stenosis, 54 had moderate stenosis, 24 had LGAS, and 8 had HGAS. Compared with the moderate group, the LGAS group had lower AVA but similar mean gradient. Yet the actuarial curves for progressing to HGAS were significantly different: 25% of patients in LGAS reached HGAS status significantly earlier than did 25% of patients in the moderate-AS group (713 vs 881 d; P=0.035). Because LGAS has a high propensity to progress to HGAS, we propose that low-gradient aortic stenosis patients be closely monitored as a distinct subgroup that warrants more frequent echocardiographic follow-up.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom