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基于同步辐射 X 射线断层摄影术的成年斑马鱼主动脉血液动力学的流固耦合建模:一项初步研究。

Fluid-Structure Interaction Modeling of the Aortic Hemodynamics in Adult Zebrafish: A Pilot Study Based on Synchrotron X-Ray Tomography.

出版信息

IEEE Trans Biomed Eng. 2023 Jul;70(7):2101-2110. doi: 10.1109/TBME.2023.3236488. Epub 2023 Jun 19.

Abstract

OBJECTIVE

The zebrafish is increasingly used as a small animal model for cardiovascular disease, including vascular disorders. Nevertheless, a comprehensive biomechanical understanding of the zebrafish cardiovascular circulation is still lacking and possibilities for phenotyping the zebrafish heart and vasculature at adult - no longer optically transparent - stages are limited. To improve these aspects, we developed imaging-based 3D models of the cardiovascular system of wild-type adult zebrafish.

METHODS

In vivo high-frequency echocardiography and ex vivo synchrotron X-ray tomography were combined to build fluid-structure interaction finite element models of the fluid dynamics and biomechanics inside the ventral aorta.

RESULTS

We successfully generated a reference model of the circulation in adult zebrafish. The dorsal side of the most proximal branching region was found as the location of highest first principal wall stress and was also a location of low wall shear stress. Reynolds number and oscillatory shear were very low compared to mice and humans.

SIGNIFICANCE

The presented wild-type results provide a first extensive biomechanical reference for adult zebrafish. This framework can be used for advanced cardiovascular phenotyping of adult genetically engineered zebrafish models of cardiovascular disease, showing disruptions of the normal mechano-biology and homeostasis. By providing reference values for key biomechanical stimuli (including wall shear stress and first principal stress) in wild-type animals, and a pipeline for image-based animal-specific computational biomechanical models, this study contributes to a more comprehensive understanding of the role of altered biomechanics and hemodynamics in heritable cardiovascular pathologies.

摘要

目的

斑马鱼越来越多地被用作心血管疾病(包括血管疾病)的小动物模型。然而,人们对斑马鱼心血管循环的综合生物力学理解仍然缺乏,并且在成年期(不再透明光学)阶段对斑马鱼心脏和脉管系统进行表型分析的可能性有限。为了改善这些方面,我们开发了基于成像的野生型成年斑马鱼心血管系统的 3D 模型。

方法

体内高频超声心动图和体外同步加速器 X 射线断层扫描相结合,构建了腹主动脉内流体动力学和生物力学的流固耦合有限元模型。

结果

我们成功地生成了成年斑马鱼循环的参考模型。在最接近分支区域的背侧,发现了第一主壁应力最高的位置,也是壁切应力较低的位置。与小鼠和人类相比,雷诺数和振荡剪切力非常低。

意义

所呈现的野生型结果为成年斑马鱼提供了第一个广泛的生物力学参考。该框架可用于对成年遗传工程斑马鱼心血管疾病模型进行先进的心血管表型分析,显示正常力学生物学和动态平衡的破坏。通过为野生型动物的关键生物力学刺激(包括壁切应力和第一主应力)提供参考值,以及基于图像的动物特定计算生物力学模型的管道,本研究有助于更全面地了解改变的生物力学和血液动力学在遗传性心血管病变中的作用。

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