Frequency domain analysis of cerebral blood flow velocity and its correlation with arterial blood pressure

被引:114
作者
Kuo, TBJ
Chern, CM
Sheng, WY
Wong, WJ
Hu, HH [1 ]
机构
[1] Vet Gen Hosp, Neurol Inst, Sect Cerebrovasc Dis, Taipei, Taiwan
[2] Natl Yang Ming Univ, Sch Med, Dept Pharmacol, Taipei 112, Taiwan
[3] Natl Yang Ming Univ, Sch Med, Inst Pharmacol, Taipei 112, Taiwan
关键词
cerebral blood flow; middle cerebral artery; transcranial Doppler sonography; frequency domain analysis; power spectral analysis; transfer function analysis;
D O I
10.1097/00004647-199803000-00010
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We applied frequency domain analysis to detect and quantify spontaneous fluctuations in the blood flow velocity of the middle cerebral artery (MCAFV). Instantaneous MCAFV of normal volunteers was detected using transcranial Doppler sonography. Spectral and transfer function analyses of MCAFV and arterial blood pressure (ABP) were performed by fast Fourier transform. We found the fluctuations in MCAFV, like ABP, could be diffracted into three components at specific frequency ranges, designated as high-frequency (HF, 0.15 to 0.4 Hz), low-frequency (LF, 0.04 to 0.15 Hz), and very low frequency (VLF, 0.016 to 0.04 Hz) components. The HF and LF components of MCAFV exhibited high coherence with those of ABP, indicating great similarity of MCAFV and ABP fluctuations within the two frequency ranges. However, it was not the case for the VLF component. Transfer function analysis revealed that the ABP-MCAFV phase angle was frequency-dependent in the LF range (r = -0.79, P < 0.001) but not in the HF range. The time delay between LF fluctuations of ABP and those of MCAFV was evaluated as 2.1 seconds. We conclude that in addition to traditional B-wave equivalents, there are at least two different mechanisms for MCAFV fluctuations: the HF and LF fluctuations of MCAFV are basically secondary to those of ABP, and cerebral autoregulation may operate efficiently in LF rather than HF range, Frequency domain analysis offers an opportunity to explore the nature and underlying mechanism of dynamic regulation in cerebral circulation.
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页码:311 / 318
页数:8
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