IEEE Trans Biomed Eng. 2014 Mar;61(3):694-704. doi: 10.1109/TBME.2013.2287120. Epub 2013 Oct 28.
The scientific and clinical importance of cerebral hemodynamics has generated considerable interest in their quantitative understanding via computational modeling. In particular, two aspects of cerebral hemodynamics, cerebral flow autoregulation (CFA) and CO2 vasomotor reactivity (CVR), have attracted much attention because they are implicated in many important clinical conditions and pathologies (orthostatic intolerance, syncope, hypertension, stroke, vascular dementia, mild cognitive impairment, Alzheimer's disease, and other neurodegenerative diseases with cerebrovascular components). Both CFA and CVR are dynamic physiological processes by which cerebral blood flow is regulated in response to fluctuations in cerebral perfusion pressure and blood CO2 tension. Several modeling studies to date have analyzed beat-to-beat hemodynamic data in order to advance our quantitative understanding of CFA-CVR dynamics. A confounding factor in these studies is the fact that the dynamics of the CFA-CVR processes appear to vary with time (i.e., changes in cerebrovascular characteristics) due to neural, endocrine, and metabolic effects. This paper seeks to address this issue by tracking the changes in linear time-invariant models obtained from short successive segments of data from ten healthy human subjects. The results suggest that systemic variations exist but have stationary statistics and, therefore, the use of time-invariant modeling yields "time-averaged models" of physiological and clinical utility.
脑血流动力学的科学和临床重要性促使人们通过计算建模来定量理解脑血流动力学。特别是,脑血流自动调节(CFA)和 CO2 血管舒缩反应性(CVR)这两个方面受到了广泛关注,因为它们与许多重要的临床情况和病理学有关(直立不耐受、晕厥、高血压、中风、血管性痴呆、轻度认知障碍、阿尔茨海默病和其他具有脑血管成分的神经退行性疾病)。CFA 和 CVR 都是动态生理过程,通过这些过程,脑血流会根据脑灌注压和血液 CO2 张力的波动进行调节。迄今为止,已有多项建模研究对心跳间的血流动力学数据进行了分析,以深入了解 CFA-CVR 动力学。这些研究中的一个混杂因素是,由于神经、内分泌和代谢的影响,CFA-CVR 过程的动态似乎随时间而变化(即脑血管特征的变化)。本文通过跟踪从 10 位健康人体受试者的短连续数据段中获得的线性时不变模型的变化来解决这个问题。结果表明,存在系统变化,但具有平稳统计特性,因此,使用时不变建模可以得出具有生理和临床应用价值的“平均时间模型”。