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基于易感性的脑动静脉畸形特征描述。

Susceptibility-Based Characterization of Cerebral Arteriovenous Malformations.

机构信息

From the Department of Neuroradiology, University of Heidelberg.

Division of Medical Physics in Radiology, German Cancer Research Center (DKFZ).

出版信息

Invest Radiol. 2020 Nov;55(11):702-710. doi: 10.1097/RLI.0000000000000695.

Abstract

OBJECTIVES

The aim of this study was to explore blood deoxygenation across cerebral arteriovenous malformations (AVMs) for functional characterization of AVM vasculature.

MATERIALS AND METHODS

Fifteen patients with cerebral arteriovenous vascular malformation were prospectively studied by digital subtraction angiography and using a 3 T magnetic resonance imaging system, with which three-dimensional (3D) gradient echo data for the calculation of quantitative susceptibility maps, velocity-encoded 3D gradient echo data for 3D flow assessment, and contrast-enhanced 3D time-of-flight data were acquired.The nidus, major supplying artery, and major draining veins were identified on digital subtraction angiography, and volumes of interest of the AVM nidus, AVM-related inflow and outflow vessels, and non-AVM-related normal veins were drawn on coregistered contrast-enhanced 3D time-of-flight data. The resulting volumes of interest were applied to quantitative susceptibility mapping and flow data.

RESULTS

All patients showed a significant stepwise increase in susceptibility between feeding artery and nidus as well as between nidus and draining vein (Padjusted = 0.035, Padjusted= 0.007, respectively). Results revealed between 9.3% and 50.9% of the normal transcapillary blood deoxygenation-related susceptibility change between the feeding artery and the draining vein of the AVMs. When normalized by nidal blood flow velocity, this change was correlated with the presence of perinidal blood products. The mean susceptibility change across cerebral AVMs normalized with nidal volume inversely correlated with mean nidal flow velocity.

CONCLUSIONS

Susceptibility changes indicating blood deoxygenation across cerebral AVMs were shown for the first time in this study and were associated with the presence of perinidal blood products. Deoxygenation measures may serve as functional characterization of AVM vasculature and may offer the potential for individual treatment assessment and possible risk stratification.

摘要

目的

本研究旨在通过数字减影血管造影术和使用 3T 磁共振成像系统来探索脑动静脉畸形(AVM)之间的血液去氧情况,从而对 AVM 血管进行功能特征描述。

材料与方法

本研究前瞻性纳入了 15 例脑动静脉血管畸形患者,通过数字减影血管造影术和使用 3T 磁共振成像系统获得三维(3D)梯度回波数据以计算定量磁化率图、3D 流速评估的流速编码 3D 梯度回波数据和对比增强 3D 时间飞越数据。在数字减影血管造影中识别病灶、主要供血动脉和主要引流静脉,并在对比增强 3D 时间飞越数据上对 AVM 病灶、AVM 相关的流入和流出血管以及非 AVM 相关的正常静脉进行感兴趣区勾画。将所得感兴趣区应用于定量磁化率图和流速数据。

结果

所有患者在供血动脉和病灶之间以及病灶和引流静脉之间均表现出显著的逐步增加的磁化率(调整后 P 值分别为 0.035 和 0.007)。结果显示,在 AVM 的供血动脉和引流静脉之间存在 9.3%至 50.9%的正常跨毛细血管脱氧相关磁化率变化。当用病灶内血流速度归一化时,这种变化与病灶周围血液产物的存在相关。与平均病灶内血流速度相反,经病灶容积归一化的脑 AVM 跨区磁化率变化呈负相关。

结论

本研究首次显示脑 AVM 之间存在血液去氧的磁化率变化,与病灶周围血液产物的存在有关。脱氧测量可能作为 AVM 血管的功能特征描述,并且可能为个体治疗评估和可能的风险分层提供潜力。

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