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使用体素内不相干运动敏感梯度的动脉自旋标记法对脑动脉血容量进行定量分析。

Quantification of cerebral arterial blood volume using arterial spin labeling with intravoxel incoherent motion-sensitive gradients.

作者信息

Kim Tae, Kim Seong-Gi

机构信息

Department of Radiology, University of Pittsburgh, Pittsburgh, Pennsylvania 15203, USA.

出版信息

Magn Reson Med. 2006 May;55(5):1047-57. doi: 10.1002/mrm.20867.

Abstract

Quantification of cerebral arterial blood volume (CBVa) is important for understanding vascular regulation. To enable measurement of CBVa with diffusion-weighted (DW) arterial spin labeling (ASL), a theoretical framework was developed using the effects of intravoxel incoherent motion (IVIM). The pseudo-diffusion coefficient (D*) in the IVIM model was evaluated at 9.4 T in DW-ASL of rat brain under isoflurane anesthesia by variations of both post-labeling delay (w) and magnetization transfer ratio (MTR). D* and its volume fraction decreased at values of w>or=0.3 s, and the normalized apparent diffusion coefficient (ADC) increased with MTR, suggesting that D* is closely correlated with CBVa. Thus, the difference between ASL measurements with and without DW gradients is related to CBVa. The CBVa values measured by this approach were compared with values obtained using the modulation of tissue and vessel (MOTIVE) technique with ASL, which varies MT levels without changing spin labeling efficiency. CBVa values from both methods were highly correlated. The measured CBVa values were linearly correlated with cerebral blood flow (CBF) for a PaCO2 range of 25-50 mmHg; DeltaCBVa (ml/100 g)=0.007 (min-1)xDeltaCBF (ml/100 g/min). The DW-ASL approach is simple and easy to implement for human and animal CBVa studies.

摘要

脑动脉血容量(CBVa)的定量对于理解血管调节至关重要。为了能够使用扩散加权(DW)动脉自旋标记(ASL)来测量CBVa,利用体素内不相干运动(IVIM)的效应建立了一个理论框架。通过改变标记后延迟(w)和磁化传递率(MTR),在异氟烷麻醉下对大鼠脑进行9.4 T的DW-ASL中评估IVIM模型中的伪扩散系数(D*)。当w≥0.3 s时,D及其体积分数降低,并且归一化表观扩散系数(ADC)随MTR增加,这表明D与CBVa密切相关。因此,有和没有DW梯度的ASL测量之间的差异与CBVa有关。将通过这种方法测量的CBVa值与使用组织和血管调制(MOTIVE)技术与ASL获得的值进行比较,该技术在不改变自旋标记效率的情况下改变MT水平。两种方法的CBVa值高度相关。在25 - 50 mmHg的动脉血二氧化碳分压(PaCO2)范围内,测量的CBVa值与脑血流量(CBF)呈线性相关;ΔCBVa(ml/100 g)= 0.007(min-1)×ΔCBF(ml/100 g/min)。DW-ASL方法对于人和动物的CBVa研究而言简单且易于实施。

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