CBS 2019
CBSMD教育中心
English

科学研究

科研文章

荐读文献

Pulmonary Artery Denervation Attenuates Pulmonary Arterial Remodeling in Dogs With Pulmonary Arterial Hypertension Induced by Dehydrogenized Monocrotaline Stent underexpansion and residual reference segment stenosis are related to stent thrombosis after sirolimus-eluting stent implantation: an intravascular ultrasound study Management of Asymptomatic Severe Aortic Stenosis: Evolving Concepts in Timing of Valve Replacement Impact of Staging Percutaneous Coronary Intervention in Left Main Artery Disease: Insights From the EXCEL Trial Glycemic Index, Glycemic Load, and Cardiovascular Disease and Mortality Transcatheter Aortic Valve Replacement in Patients With Multivalvular Heart Disease Long-Term All-Cause and Cause-Specific Mortality in Asymptomatic Patients With CAC ≥1,000: Results From the CAC Consortium Cardiac surgery following transcatheter aortic valve replacement New-onset atrial fibrillation after PCI and CABG for left main disease: insights from the EXCEL trial and additional studies Determinants and Impact of Heart Failure Readmission Following Transcatheter Aortic Valve Replacement

Original ResearchVolume 12, Issue 24, December 2019

JOURNAL:JACC Cardiovasc Interv. Article Link

Association Between Diastolic Dysfunction and Health Status Outcomes in Patients Undergoing Transcatheter Aortic Valve Replacement

AO Malik, M Omer, MC Pflederer et al. Keywords: health status; left ventricular diastolic dysfunction; TAVR

ABSTRACT

OBJECTIVES - The aim of this study was to assess the association of baseline left ventricular diastolic dysfunction (LVDD) with health status outcomes of patients undergoing transcatheter aortic valve replacement (TAVR).

 

BACKGROUND - Although LVDD in patients with aortic stenosis is associated with higher mortality after TAVR, it is unknown if it is also associated with health status recovery.

 

METHODS - In a cohort of 304 patients with interpretable echocardiograms, undergoing TAVR, LVDD was categorized at baseline as absent (grade 0), mild (grade 1), moderate (grade 2), or severe (grade 3). Disease-specific health status was assessed using the 12-item Kansas City Cardiomyopathy Questionnaire overall summary score (KCCQ-OS) at baseline and at 1-month and 12-month follow-up. Association of baseline LVDD with health status at baseline and follow-up after TAVR was assessed using a linear trend test, and association with health status recovery (change in KCCQ-OS) was examined using a linear mixed model adjusting for baseline KCCQ-OS.

 

RESULTS - Twenty-four (7.9%), 54 (17.8%), 186 (61.2%), and 40 (13.2%) patients had LVDD grades of 0, 1, 2, and 3, respectively. Baseline KCCQ-OS was 61.3 ± 22.7, 51.0 ± 26.1, 44.7 ± 25.7, and 44.4 ± 21.9 (p = 0.004) in patients with LVDD grades of 0, 1,2 and 3. At 1 and 12 months after TAVR, LVDD was not associated with KCCQ-OS. Recovery in KCCQ-OS after TAVR was substantial and similar in patients across all severities of LVDD.

 

CONCLUSIONS - Although LVDD is associated with health status prior to TAVR, patients across all severities of LVDD have similar recovery in health status after TAVR.