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Biomedical subjects

Xiaoyuan Xie

Publications and source records attributed to Xiaoyuan Xie.

3 recordsLinked to original sources

Impact of minor electrocardiographic ST-segment and/or T-wave abnormalities on cardiovascular mortality during long-term follow-up.

Minor ST-T abnormalities are common on the resting electrocardiogram of otherwise healthy persons, but the long-term importance of these findings has not been extensively evaluated, especially in women. In a prospective study, 7,985 women and 9,630 men (aged 40 to 64 years at baseline) without other electrocardiographic abnormalities and free of previous coronary heart disease (CHD) were studied using Cox regression for 22-years of follow-up. Primary outcomes were death from CHD and total cardiovascular disease (CVD); total mortality was a secondary outcome. Minnesota Code was employed to assess the presence or absence of electrocardiographic abnormalities. Analyses compared persons with minor Minnesota Code ST-segment (codes 4-3 or 4-4) or T-wave findings (codes 5-3 or 5-4) to those with normal electrocardiographic findings. In combined analyses of men and women adjusted for age, isolated minor T-wave abnormality, minor ST-segment depression, or a combination of minor ST-segment and T-wave abnormalities were each associated with increased mortality risks. For CHD mortality, hazard ratios (HRs) ranged from 1.60 to 2.10; for CVD mortality, HRs ranged from 1.50 to 1.95; and for total mortality, HRs ranged from 1.31 to 1.50 (p <0.05 for all HRs). In separate analyses by gender adjusted for age, increased risks were observed for combined ST-T-wave abnormalities in both genders for CHD and CVD mortality (HR 1.72 to 1.75 for men, p <0.05; HR 2.07 to 2.51 for women, p <0.001). These data indicate that nonspecific (minor) ST-segment depression and/or T-wave abnormalities have a long-term prognostic impact for CHD and CVD death in middle-aged women and men and can be considered markers of heightened CHD and CVD risk.

Adult↗

Demographics and correlates of five-year change in echocardiographic left ventricular mass in young black and white adult men and women: the Coronary Artery Risk Development in Young Adults (CARDIA) study.

OBJECTIVE: The goal of this study was to determine the presence and correlates of change (Delta) in left ventricular (LV) mass by echocardiography in young adults. BACKGROUND: Left ventricular mass is known to be a powerful independent predictor for cardiovascular disease events in adults. However, little is known about Delta in LV mass over time in young adults. METHODS: Coronary Artery Risk Development in Young Adults (CARDIA) is a multicenter, longitudinal, population-based study of black and white men and women who were ages 23 to 35 at the time of their initial two-dimensionally directed M-mode echocardiography exam (year 5); half the cohort had a repeat echocardiography exam five years later (year 10). Data were analyzed from 1,189 participants who had paired echocardiography studies. To minimize reader variability, blinded measurements on initial and repeat echocardiography were performed nearly contemporaneously by the same reader. RESULTS: In multilinear regression analyses, significant (p < 0.05) predictors of year 10 two-dimensional guided M-mode LV mass included initial LV mass, initial body mass index (BMI) and change in BMI for all race/gender subgroups. Initial systolic blood pressure (SBP) was a significant predictor of year 10 LV mass in white men and black women; change in SBP was significant in black women with a trend towards significance in white women. Left ventricular mass remained constant in all race/gender subgroups, except black women, where it increased (by 5.9 g [mean]). Black women also had the largest increases in BMI and SBP. In black women, a five-year weight gain of 20 pounds and a 15-mm Hg increase in SBP would be expected to be associated with a 9% to 12% increase in LV mass. CONCLUSIONS: Particularly in black women, weight and blood pressure control may be important community health and treatment goals to prevent LV hypertrophy.

Adolescent↗