Cerebrovascular hemodynamics, gait, and falls in an elderly population

医学 脑血流 经颅多普勒 步态 大脑中动脉 脑自动调节 心脏病学 人口 血流动力学 毒物控制 内科学 物理医学与康复 血压 麻醉 自动调节 急诊医学 缺血 环境卫生
作者
Farzaneh A. Sorond,Andrew Galica,Jorge M. Serrador,Dan K. Kiely,Ikechukwu Iloputaife,L. Adrienne Cupples,Lewis A. Lipsitz
出处
期刊:Neurology [Lippincott Williams & Wilkins]
卷期号:74 (20): 1627-1633 被引量:84
标识
DOI:10.1212/wnl.0b013e3181df0982
摘要

To determine whether alterations in cerebral blood flow regulation are associated with slow gait speed and falls in community-dwelling elderly individuals.The study sample consisted of 419 individuals from the MOBILIZE Boston Study (MBS) who had transcranial Doppler ultrasound measures of cerebral blood flow velocity. The MBS is a prospective cohort study of a unique set of risk factors for falls in seniors in the Boston area. We measured beat-to-beat blood flow velocity in the middle cerebral artery in response to 1) changes in end-tidal CO(2) (cerebral vasoreactivity) and 2) blood pressure changes during a sit-to-stand protocol (cerebral autoregulation). Gait speed was measured during a 4-meter walk. Falls were tracked by monthly calendars, and demographic and clinical characteristics were assessed at baseline.A multivariate linear regression analysis showed that cerebral vasoreactivity was cross-sectionally related to gait speed (p = 0.039). Individuals in the lowest quintile of vasoreactivity had lower gait speeds as compared to those in the highest quintile (p = 0.047). In a negative binomial regression analysis adjusted for relevant covariates, the relationship between cerebral vasoreactivity and fall rate did not reach significance. However, when comparing individuals in the lowest to highest quintile of cerebral vasoreactivity, those in the lowest quintile had a higher fall rate (p = 0.029).Impaired cerebral blood flow regulation, as measured by cerebral vasoreactivity to CO(2), is associated with slow gait speed and may lead to the development of falls in elderly people.
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