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Wavelet Cross-Correlation to Investigate Regional Variationsin Cerebral Oxygenation in Infants Supported on Extracorporeal MembraneOxygenation

机译:小波互相关以研究区域变化体外膜支持的婴儿脑氧合反应的研究充氧

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摘要

Extracorporeal membrane oxygenation can potentially affect cerebral blood flow dynamics and consequently influence cerebral autoregulation. We applied wavelet cross-correlation (WCC) between multichannel cerebral oxyhemoglobin concentration (HbO2) and mean arterial pressure (MAP), to assess regional variations in cerebral autoregulation. Six infants on veno-arterial (VA) ECMO were studied during sequential changes in the ECMO flows. WCC between MAP and HbO2 for each flow period and each channel was calculated within three different frequency (wavelet scale) bands centered around 0.1, 0.16, and 0.3 Hz chosen to represent low frequency oscillations, ventilation, and respiration rates, respectively. The group data showed a relationship between maximum WCC and ECMO flow. During changes in ECMO flow, statistically significant differences in maximum WCC were found between right and left hemispheres. WCC between HbO2 and MAP provides a useful method to investigate the dynamics of cerebral autoregulation during ECMO. Manipulations of ECMO flows are associated with regional changes in cerebral autoregulation which may potentially have an important bearing on clinical outcome.
机译:体外膜氧化可能会影响脑血流动力学,从而影响脑自动调节。我们应用多通道大脑氧合血红蛋白浓度(HbO2)和平均动脉压(MAP)之间的小波互相关(WCC),以评估大脑自动调节的区域变化。在ECMO流量连续变化的过程中研究了6名接受静脉-动脉(VA)ECMO婴儿。在每个流量周期和每个通道的MAP和HbO2之间的WCC是在以0.1、0.16和0.3 Hz为中心的三个不同频率(小波尺度)频带内计算的,分别选择代表低频振荡,通风和呼吸频率。组数据显示最大WCC与ECMO流量之间的关系。在ECMO流量变化期间,在左右半球之间发现了最大WCC的统计显着差异。 HbO2和MAP之间的WCC提供了一种有用的方法来研究ECMO期间脑自动调节的动力学。 ECMO流量的操作与大脑自动调节的区域变化有关,这可能对临床结果产生重要影响。

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