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首页> 外文期刊>NMR in biomedicine >Coupling between cerebral blood flow and cerebral blood volume: Contributions of different vascular compartments
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Coupling between cerebral blood flow and cerebral blood volume: Contributions of different vascular compartments

机译:脑血流和脑血容量之间的偶联:不同血管室的贡献

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A better understanding of the coupling between changes in cerebral blood flow (CBF) and cerebral blood volume (CBV) is vital for furthering our understanding of the BOLD response. The aim of this study was to measure CBF-CBV coupling in different vascular compartments during neural activation. Three haemodynamic parameters were measured during a visual stimulus. Look-Locker flow-sensitive alternating inversion recovery was used to measure changes in CBF and arterial CBV (CBVa) using sequence parameters optimized for each contrast. Changes in total CBV (CBVtot) were measured using a gadolinium-based contrast agent technique. Haemodynamic changes were extracted from a region of interest based on voxels that were activated in the CBF experiments. The CBF-CBVtot coupling constant alpha(tot) was measured as 0.16 +/- 0.14 and the CBF-CBVa coupling constant alpha(a) was measured as 0.65 +/- 0.24. Using a two-compartment model of the vasculature (arterial and venous), the change in venous CBV (CBVv) was predicted for an assumed value of baseline arterial and venous blood volume. These results will enhance the accuracy and reliability of applications that rely on models of the BOLD response, such as calibrated BOLD.
机译:更好地理解脑血流量(CBF)和脑血量(CBV)之间的偶联对于进一步了解我们对大胆反应的理解至关重要。本研究的目的是在神经活化期间测量不同血管室中的CBF-CBV偶联。在视觉刺激期间测量了三个血液动力学参数。使用针对每个对比度优化的序列参数来测量CBF和动脉CBV(CBVA)的变化来测量CBF和动脉CBV(CBVA)的变化。使用基于Gadolinium的造影剂技术测量总CBV(CBVTOT)的变化。基于在CBF实验中激活的体素来从利息区域提取血液动力学变化。测定CBF-CBVTOT偶联常数α(TOT)为0.16 +/- 0.14,并测量CBF-CBVA偶联常数α(A)为0.65 +/- 0.24。使用脉管系统(动脉和静脉)的两个隔室模型,预测了静脉CBV(CBVV)的变化,用于基线动脉血量的假定值。这些结果将提高依赖于粗体响应模型的应用的准确性和可靠性,例如校准粗体。

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