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Wall Shear Stress Distribution Inside Induced Cerebral Aneurysm on Rabbit

机译:兔诱发性脑动脉瘤内壁剪切应力的分布

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摘要

Introduction: Cerebral aneurysm is a cere-brovascular disease resulting to subarachnoid hemorrhage. The generation, development and finally rupture of cerebral aneurysm could be related to hemodynamie stimulate, especially wall shear stress (WSS). WSS have been considered to play a role on the expression of such enzymes as iNOS, MMP-2 and MMP-9 leading to weakening of the arterial wall. However, detailed WSS distribution contributing to the enzyme expression has not been clarified inside cerebral artery. The purpose of our study is to clarify the WSS distribution corresponding to the enzyme expressions. Materials and Methods: We tried to induce cerebral aneurysm on rabbits, and created the realistic silicone model of the induced aneurysm. The flow field and WSS were measured using PIV (particle image ve-locimetry) and LDV (laser Doppler velocimeter) inside the realistic model. Furthermore, histological structure and enzyme expression were evaluated on the image of elastica van Gieson stain and on the immunostaining images. Results: Induced cerebral aneurysms were found in posterior circulation; the arterial bifurcation at basilar artery or posterior communicating artery. The induced cerebral aneurysm had an arterial wall structure with thinned media and lacked IEL. The thinned media was observed at the bulge top area wth low WSS distribution. On the other hand, lacked IEL was observed near the aneurysm neck area. Although WSS was not so low at the area of lacked IEL, the WSS spatial gradient appeared with high value at this area. The lack of occurs before the thinning of media on the process of aneurysm formation. In addition, MMP-2 and MMP-9 showed similar trend as the WSS spatial gradient. From these findings, high WSS gradient seems to have an effect on the early stage of cerebral aneurysm generation, stimulating the enzymes expression which leads to the destruction of the IEL.
机译:简介:脑动脉瘤是一种由于蛛网膜下腔出血导致的脑血管疾病。脑动脉瘤的产生,发展和最终破裂可能与血液动力学刺激,尤其是壁切应力(WSS)有关。已经认为WSS在诸如iNOS,MMP-2和MMP-9的酶的表达中起作用,导致动脉壁的削弱。然而,尚不清楚在脑动脉内有助于酶表达的详细WSS分布。我们研究的目的是阐明与酶表达相对应的WSS分布。材料和方法:我们试图在兔上诱发脑动脉瘤,并创建了诱导性动脉瘤的逼真的硅胶模型。使用真实模型内的PIV(粒子图像测速仪)和LDV(激光多普勒测速仪)测量流场和WSS。此外,在Elastica van Gieson染色图像和免疫染色图像上评估了组织学结构和酶表达。结果:后循环中发现诱发的脑动脉瘤;基底动脉或后交通动脉的动脉分叉。诱发的脑动脉瘤具有动脉壁结构,介质变薄,并且缺乏IEL。在WSS分布较低的凸起顶部区域观察到变薄的介质。另一方面,在动脉瘤颈部附近观察到缺乏IEL。尽管在缺少IEL的区域WSS并不是那么低,但是在该区域WSS空间梯度似乎具有很高的价值。缺乏发生在动脉瘤形成过程中介质变薄之前。此外,MMP-2和MMP-9的趋势与WSS空间梯度相似。从这些发现,高WSS梯度似乎对脑动脉瘤生成的早期有影响,刺激了导致IEL破坏的酶表达。

著录项

  • 来源
  • 会议地点 Singapore(SG);Singapore(SG);Singapore(SG);Singapore(SG);Singapore(SG);Singapore(SG)
  • 作者单位

    School of Integrated Design Engineering, Keio University Graduate School of Science and Technology, Yokohama, Japan;

    Department of Radiological Sciences, University of California, Los Angeles, California, Los Angeles, United States;

    Department of Neurosurgery, School of Medicine, St. Marianna University, Kawasaki, Japan;

    Department of Radiological Sciences, University of California, Los Angeles, California, Los Angeles, United States;

    School of Integrated Design Engineering, Keio University Graduate School of Science and Technology, Yokohama, Japan;

    School of Integrated Design Engineering, Keio University Graduate School of Science and Technology, Yokohama, Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

    cerebral aneurysm; hemodynamie; wall shear stress;

    机译:脑动脉瘤血液动力学壁剪应力;

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