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Investigation of flow in the models of intracranial lateral aneurysms by particle image velocimetry

机译:颅内外侧动脉瘤模型血流的粒子图像测速研究

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Cranial aneurysms are known to cause cerebral hematoma or hemorrhage by rupture. Hemodynamic forces can significantly contribute to the rupture of an aneurysm and measurements of flow velocities in the vicinity of an aneurysm may help predict the causes of an aneurysmal rupture. The authors developed a 2-D particle image velocimetry system to find the velocities in-vitro in glass models of lateral aneurysms. Seven models of different shape and ostium widths were tested in the experiments. Reynolds numbers of 100, 400 and 700 were considered in order to characterize the flow of blood in cranial arteries. Results suggest that rupture in the dome area is possible due to the high shear values and (or) the impact of the flowing blood on the walls of aneurysma. Results also indicate that ostium widths, the presence of a neck and the shape of the aneurysm play an important role in directing the fluid into the aneurysmal area.
机译:已知颅内动脉瘤会引起脑血肿或破裂出血。血流动力学力可显着促进动脉瘤的破裂,测量动脉瘤附近的流速可有助于预测动脉瘤破裂的原因。作者开发了一种二维粒子图像测速系统,以在外侧动脉瘤的玻璃模型中找到体外速度。在实验中测试了七个不同形状和口宽度的模型。为了表征颅动脉中的血流,考虑了雷诺数分别为100、400和700。结果表明,由于高剪切值和/或流动的血液对动脉瘤壁的影响,圆顶区域可能破裂。结果还表明,口宽度,颈部的存在和动脉瘤的形状在将液体引导至动脉瘤区域中起着重要作用。

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