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Increased Phase Synchronization between Intracranial Pressure and Arterial Blood Pressure during Elevated Intracranial Pressure in Dogs

机译:血管颅内压在狗颅内压的颅内压和动脉血压之间的相位同步增加

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We applied the concept of "phase synchronization" from nonlinear dynamics to the complex relationship between intracranial pressure (ICP) and arterial blood pressure (ABP) signals. This method is based on multiresolution wavelet transform (MRWT) in which the signals are divided into different frequency bands. We examined ICP and ABP signals from anaesthetized dogs, exploring normal ICP and elevated ICP by 1~3 ml injection of saline into the cerebral ventricles. Phase synchronization analyses show an interesting phenomenon of phase reset from relatively uniform phase distribution to phase clustering around 0{sup}0 after injection. To further quantitatively measure phase synchronization, phase coherence is used to distinguish the dynamics of normal ICP and elevated ICP by saline injection. Elevated ICP exhibits higher phase coherence than that of normal ICP. The results suggest that the association between ICP and ABP may involve nonlinear mechanisms of regulation. The clinical application of this method is in investigation.
机译:我们将非线性动力学的“相位同步”的概念应用于颅内压(ICP)和动脉血压(ABP)信号之间的复杂关系。该方法基于多分辨率小波变换(MRWT),其中信号被分成不同的频带。我们检查了来自麻醉犬的ICP和ABP信号,探索正常的ICP和升高的ICP,将盐水注射到脑室内。相位同步分析显示,在注射后,从相对均匀的相位分布到相位聚类的相位聚类的相位复位的有趣现象。为了进一步定量测量相位同步,相干性用于将正常ICP的动态区分和盐水注入区分。升高的ICP表现出比正常ICP更高的相干性。结果表明,ICP和ABP之间的关联可能涉及非线性调节机制。这种方法的临床应用正在调查中。

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