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      Comparison of arteriosclerotic indicators in patients with ischemic stroke: ankle–brachial index, brachial–ankle pulse wave velocity and cardio–ankle vascular index

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      Hypertension Research
      Springer Nature

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          Abstract

          The ankle-brachial index (ABI), brachial-ankle pulse wave velocity (baPWV) and cardio-ankle vascular index (CAVI) are surrogate markers of arteriosclerosis. However, their roles in patients with acute ischemic stroke remain unclear. From October 2003 to September 2011, we enrolled patients with arteriosclerotic ischemic stroke (AIS) exhibiting large infarcts attributed to large-artery atherosclerosis (LAA) or deep subcortical infarcts (mainly lacunar infarcts) attributed to small-artery disease (SAD). Outpatients without a history of stroke served as controls (CTL). We divided the study period into two terms and assessed patients using two different oscillometric devices (Form PWV/ABI, Omron Colin; and VaSera VS-1500, Fukuda Denshi) in each term. One-way analysis of variance and age- and sex-adjusted analysis of covariance were used to compare the three groups. We analyzed 842 patients. The ABI was significantly lower in the LAA (n = 102) group than in the SAD (n = 280) and CTL (n = 460) groups. The baPWV was significantly higher in the LAA and SAD groups than in the CTL group. The CAVI gradually increased in the order of CTL, SAD and LAA. The cutoff values of baPWV and CAVI for detection of AIS were 18.3 m s(-1) (odds ratio (OR): 6.09, 95% confidence interval (CI): 3.97-9.62, P < 0.01) and 9.5 (OR: 1.44, 95% CI: 1.24-1.70, P < 0.001), respectively. Among the three indicators, a lower ABI indicated advanced atherosclerosis associated with LAA, and an increased baPWV more closely indicated AIS. An increased CAVI may indicate the degree of vessel stiffness due to arteriosclerosis.

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          Most cited references31

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          Validity, reproducibility, and clinical significance of noninvasive brachial-ankle pulse wave velocity measurement.

          The present study was conducted to evaluate the validity and reproducibility of noninvasive brachial-ankle pulse wave velocity (baPWV) measurements and to examine the alteration of baPWV in patients with coronary artery disease (CAD). Simultaneous recordings of baPWV by a simple, noninvasive method and aortic pulse wave velosity (PWV) using a catheter tip with pressure manometer were performed in 41 patients with CAD, vasospastic angina, or cardiomyopathy. In 32 subjects (15 controls and 17 patients with CAD), baPWV was recorded independently by two observers in a random manner. In 55 subjects (14 controls and 41 patients with CAD), baPWV was recorded twice by a single observer on different days. baPWV were compared among 172 patients with CAD (aged 62 +/- 8 years); 655 age-matched patients without CAD but with hypertension, diabetes mellitus, or dyslipidemia; and 595 age-matched healthy subjects without these risk factors. baPWV correlated well with aortic PWV (r=0.87, p<0.01). Pearson's correlation coefficients of interobserver and intraobserver reproducibility were r=0.98 and r=0.87, respectively. The corresponding coefficients of variation were 8.4% and 10.0%. baPWV were significantly higher in CAD patients than in non-CAD patients with risk factors, for both genders (p<0.01). In addition, baPWV were higher in non-CAD patients with risk factors than in healthy subjects without risk factors. Thus, the validity and reproducibility of baPWV measurements are considerably high, and this method seems to be an acceptable marker reflecting vascular damages. baPWV measured by this simple, noninvasive method is suitable for screening vascular damages in a large population.
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            Influences of age and gender on results of noninvasive brachial-ankle pulse wave velocity measurement--a survey of 12517 subjects.

            The present study was conducted to evaluate the influences of age and gender on the results of noninvasive brachial-ankle pulse wave velocity (baPWV). In 12517 subjects who had no medication and no history of cardiovascular diseases, multiple regression analysis demonstrated that age, blood pressure, body mass index, triglycerides, blood glucose, and uric acid were significant variables for baPWV in both genders. From this population, we extracted 7881 "healthy subjects" (4488 males and 3393 females, 25-87 years) without any of the atherogenic risk factors, and the results of baPWV were analyzed chronologically in 5-year age intervals. baPWV was lower in females than in males until age 60, and became similar in both genders over age 60. Multiple regression analysis demonstrated that not only the value of R(2) but also the coefficient of the effect of age on baPWV are larger in females than in males. In the estimation of the regression curve, the relationship between age and baPWV demonstrated a quadratic curve in both genders. Thus, aging influences baPWV, and its effect is more prominent in female. Menopause seems to be the crucial phenomenon to explain the augmented increase in arterial stiffness with aging in females.
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              European Guidelines on cardiovascular disease prevention in clinical practice (version 2012): The Fifth Joint Task Force of the European Society of Cardiology and Other Societies on Cardiovascular Disease Prevention in Clinical Practice (constituted by representatives of nine societies and by invited experts).

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                Author and article information

                Journal
                Hypertension Research
                Hypertens Res
                Springer Nature
                0916-9636
                1348-4214
                February 26 2015
                February 26 2015
                : 38
                : 5
                : 323-328
                Article
                10.1038/hr.2015.8
                25716647
                f09dd487-9b60-4c0a-a519-fe17a6b71a0f
                © 2015
                History

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