首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Inferring cerebrovascular changes from latencies of systemic and intracranial pulses: a model-based latency subtraction algorithm.
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Inferring cerebrovascular changes from latencies of systemic and intracranial pulses: a model-based latency subtraction algorithm.

机译:从全身和颅内脉冲潜伏期推断脑血管变化:基于模型的潜伏期减法算法。

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摘要

Changes in cerebral blood flow velocity (CBFV) pulse latency reflect pathophysiological changes of the cerebral vasculature based on the theory of pulse wave propagation. Timing CBFV pulse onset relative to electrocardiogram QRS is practical. However, it introduces confounding factors of extracranial origins for characterizing the cerebral vasculature. This study introduces an approach to reducing confounding influences on CBFV latency. This correction approach is based on modeling the relationship between CBFV latency and systemic arterial blood pressure (ABP) pulse latency. It is tested using an existing data set of CBFV and ABP from 14 normal subjects undergoing pressure cuff tests under both normoxic and acute hypoxic states. The results show that the proposed CBFV latency correction approach produces a more accurate measure of cerebral vascular changes, with an improved positive correlation between beat-to-beat CBFV and the CBFV latency time series, for example, correlation coefficient increased from 0.643 to 0.836 for group-averaged cuff deflation traces at normoxia. In conclusion, this study suggests that subtraction of systemic ABP latency improves CBFV latency measurements, which in turn improve the characterization of cerebral vascular changes.
机译:基于脉搏波传播的理论,脑血流速度(CBFV)脉冲潜伏期的变化反映了脑脉管系统的病理生理变化。相对于心电图QRS定时CBFV脉冲发作是可行的。但是,它引入了颅外起源的混杂因素来表征脑血管。这项研究介绍了一种减少对CBFV潜伏期的混杂影响的方法。该校正方法基于对CBFV潜伏期与全身动脉血压(ABP)脉冲潜伏期之间关系的建模。使用现有的CBFV和ABP数据集对来自14名正常人的常态和急性低氧状态下进行压力袖带测试的数据进行了测试。结果表明,提出的CBFV潜伏期校正方法可以更准确地测量脑血管变化,并改善了逐搏CBFV与CBFV潜伏时间序列之间的正相关性,例如,相关系数从0.643增至0.836。组平均袖带放气痕迹在常氧状态。总之,这项研究表明,减去系统性ABP潜伏期可改善CBFV潜伏期测量,进而改善脑血管变化的特征。

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