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[颈内动脉迂曲处血流动力学的临床研究与数值模拟]

[Clinical study and numerical simulation of hemodynamics in the tortuosity of internal carotid artery].

作者信息

Wang Li-jun, Wang Da-ming, Zhao Feng, Liu Jia-chun, Lu Jun, Qi Peng, Zhu Hui, Zhai Le-le, Jiang Xue-li

机构信息

Department of Neurosurgery, Beijing Hospital, Beijing 100730, China.

出版信息

Zhonghua Wai Ke Za Zhi. 2008 Nov 1;46(21):1658-61.

Abstract

OBJECTIVES

To establish a theoretical model for the tortuosity of internal carotid artery and summarize the hemodynamic rule of blood flow in a tortuous artery. To explore the relationship of cerebral ischemia and tortuous internal carotid artery.

METHODS

Taking the internal carotid artery as a prototype, a geometric model of a tortuous artery was constructed according to the normal physiological and anatomical parameters of internal carotid artery. The boundary conditions and calculation conditions of blood flow are proposed. The numerical simulation of the blood flow in the tortuous artery is carried out with finite element method. Hemodynamic parameters of internal carotid artery were measured in 15 cases with the tortuosity of internal carotid artery and in 15 cases of normal control group. Blood pressure was measured by microcatheter connecting a pressure transducer at internal carotid artery, pre-tortuous and post-tortuous artery. The diameter and length of the above artery were measured and calculated by DSA machine.

RESULTS

Numerical simulation results indicated pressure drop of blood flow and elongated length of artery is increased with diminution of the angle of tortuous artery. Clinical measurement data disclosed the same trend in the same curve as numerical simulation.

CONCLUSION

The elongation and tortuosity of internal carotid artery results in decrease of blood pressure in the distal segment of tortuous internal carotid artery, kinking of internal carotid artery may be one of factors related to attack of cerebral ischemia on certain conditions.

摘要

目的

建立颈内动脉迂曲的理论模型,总结迂曲动脉内血流的血流动力学规律。探讨脑缺血与颈内动脉迂曲的关系。

方法

以颈内动脉为原型,根据颈内动脉正常生理和解剖参数构建迂曲动脉几何模型。提出血流的边界条件和计算条件。采用有限元法对迂曲动脉内血流进行数值模拟。对15例颈内动脉迂曲患者和15例正常对照组进行颈内动脉血流动力学参数测量。通过微导管连接颈内动脉、迂曲前和迂曲后动脉处的压力传感器测量血压。上述动脉的直径和长度通过数字减影血管造影机测量和计算。

结果

数值模拟结果表明,随着迂曲动脉角度减小,血流压力降和动脉伸长长度增加。临床测量数据在同一曲线上显示出与数值模拟相同的趋势。

结论

颈内动脉的伸长和迂曲导致迂曲颈内动脉远端血压降低,在某些情况下,颈内动脉扭曲可能是与脑缺血发作相关的因素之一。

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