首页> 外文会议>2010 the 5th IEEE Conference on Industrial Electronics and Applications >Examination of blood flow in rat brain vessels using fluid dynamic simulation and phase contrast magnetic resonance angiography
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Examination of blood flow in rat brain vessels using fluid dynamic simulation and phase contrast magnetic resonance angiography

机译:使用流体动力学模拟和相衬磁共振血管造影检查大鼠脑血管中的血流

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The exact knowledge of the blood vessel geometry plays an important role, not only in clinical applications (stroke diagnosis, detection of stenosis), but also for deeper analysis of hemodynamic functional data, such as fMRI strongly depending on the vessel structure. Such vessel geometries can be obtained by different MR angiographic. First we present algorithms for automatic vessel reconstructions from different MRA angiographic modalities. Moreover, we show that simulations using computational fluid dynamics (CFD) can be used to validate the vessel geometry, reconstructed from time-of-flight (TOF) angiograms. CFD simulations are based on phase-contrast angiography (PC-MRA) data, since these data contain rheological information (phases) besides merely amplitudes as is the case for TOF measurements. Parts of the rat brain vessel system are carefully modeled consisting of a main tube and second order branches. By analyzing velocity changes up and downstream of bifurcations, we show that CFD can be used to help detecting missing vessels in the TOF based reconstruction. We demonstrated this by artificially deleting a branch from the reconstruction and compared the flow in both resulting CFD simulations. Finally the simulations help to understand the effects of secondary branches on the flow in the main tube.
机译:血管几何结构的确切知识不仅在临床应用(中风诊断,狭窄检测)中,而且在更深入地分析血液动力学功能数据(例如功能磁共振成像)方面也起着重要的作用,这主要取决于血管结构。这样的血管几何形状可以通过不同的MR血管造影术获得。首先,我们介绍了用于从不同的MRA血管造影模式进行自动血管重建的算法。此外,我们表明使用计算流体动力学(CFD)进行的仿真可用于验证从飞行时间(TOF)血管造影照片重建的血管几何形状。 CFD模拟基于相衬血管造影(PC-MRA)数据,因为这些数据除了像TOF测量那样仅包含振幅外,还包含流变信息(相)。对大鼠脑血管系统的各个部分进行了仔细建模,包括主管和二级分支。通过分析分叉上下游的速度变化,我们表明CFD可用于帮助检测基于TOF的重建中的缺失血管。我们通过从重构中人为删除分支来证明这一点,并在两个结果CFD模拟中比较了流程。最后,模拟有助于理解次要分支对主管流的影响。

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