首页> 美国卫生研究院文献>Behavioural Neurology >Why Current Doppler Ultrasound Methodology Is Inaccurate in Assessing Cerebral Venous Return: The Alternative of the Ultrasonic Jugular Venous Pulse
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Why Current Doppler Ultrasound Methodology Is Inaccurate in Assessing Cerebral Venous Return: The Alternative of the Ultrasonic Jugular Venous Pulse

机译:为什么当前的多普勒超声方法在评估脑静脉回流方面不准确:超声颈静脉脉冲的替代方法

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摘要

Assessment of cerebral venous return is growing interest for potential application in clinical practice. Doppler ultrasound (DUS) was used as a screening tool. However, three meta-analyses of qualitative DUS protocol demonstrate a big heterogeneity among studies. In an attempt to improve accuracy, several authors alternatively measured the flow rate, based on the product of the time average velocity with the cross-sectional area (CSA). However, also the quantification protocols lacked of the necessary accuracy. The reasons are as follows: (a) automatic measurement of the CSA assimilates the jugular to a circle, while it is elliptical; (b) the use of just a single CSA value in a pulsatile vessel is inaccurate; (c) time average velocity assessment can be applied only in laminar flow. Finally, the tutorial describes alternative ultrasound calculation of flow based on the Womersley method, which takes into account the variation of the jugular CSA overtime. In the near future, it will be possible to synchronize the electrocardiogram with the brain inflow (carotid distension wave) and with the outflow (jugular venous pulse) in order to nicely have a noninvasive ultrasound picture of the brain-heart axis. US jugular venous pulse may have potential use in neurovascular, neurocognitive, neurosensorial, and neurodegenerative disorders.
机译:对脑静脉回流的评估在临床实践中的潜在应用越来越引起人们的兴趣。多普勒超声(DUS)被用作筛查工具。但是,对定性DUS方案的三项荟萃分析显示,研究之间存在很大的异质性。为了提高精度,一些作者根据时均速度与横截面积(CSA)的乘积来测量流量。但是,定量方案也缺乏必要的准确性。原因如下:(a)CSA的自动测量将椭圆形的颈静脉同化为一个圆形; (b)在脉动血管中仅使用单个CSA值是不准确的; (c)时间平均速度评估只能应用于层流。最后,本教程介绍了基于Womersley方法的超声流量替代计算,该方法考虑了颈CSA超时的变化。在不久的将来,将有可能使心电图与脑流入(颈动脉扩张波)和流出(与颈静脉搏动)同步,以便很好地获得脑心轴的非侵入性超声图像。美国的颈静脉搏动可能在神经血管疾病,神经认知疾病,神经感觉疾病和神经变性疾病中具有潜在用途。

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