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首页> 外文期刊>Journal of clinical neuroscience: official journal of the Neurosurgical Society of Australasia >Current status of computational fluid dynamics for cerebral aneurysms: the clinician's perspective.
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Current status of computational fluid dynamics for cerebral aneurysms: the clinician's perspective.

机译:脑动脉瘤计算流体动力学的现状:临床医生的观点。

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The ultimate management goal for unruptured intracranial aneurysms is to select the aneurysms at risk of rupture and treat them. Computational fluid dynamics (CFD) utilizes mechanical engineering principles to explicate what occurs in tubes (vessels) and bulges (aneurysms). CFD parameters have been related to the biological processes that occur in the aneurysm wall, and models have been developed to predict the risk of aneurysm rupture. A PubMed search from 1 January 1970 to 30 November 2010 was carried out using the keywords "computational fluid dynamics" AND "cerebral aneurysm". References were also reviewed for relevant articles. All relevant articles were then reviewed by a vascular neurosurgeon, who found that the hemodynamic parameters of wall shear stress (WSS), WSS gradient, inflow jet, impingement zone, and aneurysm inflow-angle (IA) lack the predictive values required for clinical practice. CFD study can now be simulated and reproduced in a simple and fast analysis of steady, non-pulsatile flow with phase contrast magnetic resonance-derived volumetric inflow rate but the key question of whether a patient-specific CFD model can predict the rupture risk of unruptured intracranial aneurysms remains to be determined in future studies incorporating multivariate analysis. CFD models will become available for routine clinical practice as the computational power of computers further improves.
机译:颅内动脉瘤未破裂的最终管理目标是选择有破裂风险的动脉瘤并对其进行治疗。计算流体动力学(CFD)利用机械工程原理来解释在管(容器)和凸起(动脉瘤)中发生的情况。 CFD参数已与发生在动脉瘤壁中的生物学过程相关,并且已开发出模型来预测动脉瘤破裂的风险。 1970年1月1日至2010年11月30日在PubMed中进行了搜索,使用关键词“计算流体力学”和“脑动脉瘤”。还对参考文献进行了相关文章的审查。血管神经外科医生随后对所有相关文章进行了审查,他们发现壁切应力(WSS),WSS梯度,流入射流,撞击区和动脉瘤流入角(IA)的血液动力学参数缺乏临床实践所需的预测值。 CFD研究现在可以在具有相衬磁共振得出的容积血流率的稳定,无脉动血流的简单,快速分析中进行模拟和复制,但关键在于患者特定的CFD模型是否可以预测未破裂的破裂风险颅内动脉瘤仍有待在将来纳入多变量分析的研究中确定。随着计算机的计算能力进一步提高,CFD模型将可用于常规临床实践。

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