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Novel Technology of Non-invasive Cerebrovascular Autoregulation Monitoring

机译:无创性脑血管自动调节监测新技术

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A novel technology for non - invasive cerebrovascular auto regulation (CA) status monitoring is presented. This fully non-invasive CA monitor is based on ultrasonic time-of-flight (TOF) measurement of cerebral blood volume pulsations within the brain parenchyma, processing of volumetric waves, and calculation of CA estimation indexes without using any additional arterial blood pressure (ABP) measurements. The CA status is estimated by extracting informative and reference slow waves from non-invasively measured TOF signals and by calculating Pearson's correlation coefficient between these waves as a CA index. The analysis of the signal extracted from the envelope of non-invasively measured pulse waves showed good agreement between this signal and ABP waves (r=0.68). Consequently, it shows that this signal might be used instead of ABP waves as a reference signal for calculation of the CA estimation indexes. Comparative invasive versus non-invasive CA monitoring study of 11 traumatic brain injury patients showed that correlation between invasively measured CA index and fully non-invasively measured CA index (no arterial line) was r=0.75. The proposed innovative CA real-time monitoring method gives us new possibilities to perform estimation of the CA status from intracranial waves only as well as to exclude the ABP line's errors and artifacts from the measurement results.
机译:提出了一种无创性脑血管自动调节(CA)状态监测的新技术。这款完全无创的CA监测仪基于对脑实质内脑血容量脉动的超声飞行时间(TOF)测量,对容积波的处理以及CA估算指标的计算,而无需使用任何其他动脉血压(ABP) ) 测量。通过从无创测量的TOF信号中提取信息性慢波和参考慢波,并通过计算这些波之间的皮尔逊相关系数作为CA指数,可以估算出CA状态。从非侵入式测量的脉搏包络中提取的信号的分析表明,该信号与ABP波之间具有良好的一致性(r = 0.68)。因此,表明该信号可以代替ABP波用作计算CA估计指标的参考信号。对11例颅脑外伤患者进行的有创与无创CA监测比较研究表明,有创测量的CA指数与完全无创测量的CA指数(无动脉线)之间的相关性为r = 0.75。提出的创新性CA实时监测方法为我们提供了仅从颅内波评估CA状态以及从测量结果中排除ABP线的误差和伪影的新可能性。

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