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模拟斑马鱼尾静脉丛中红细胞的行为。

Modeling the Behavior of Red Blood Cells within the Caudal Vein Plexus of Zebrafish.

作者信息

Djukic Tijana R, Karthik Swapna, Saveljic Igor, Djonov Valentin, Filipovic Nenad

机构信息

Research and Development Center for Bioengineering, BioIRCKragujevac, Serbia; Faculty of Mechanical Engineering, University of KragujevacKragujevac, Serbia.

Topographic and Clinical Anatomy, Institute of Anatomy, University of BernBern, Switzerland; Graduate School for Cellular and Biomedical Sciences, University of BernBern, Switzerland.

出版信息

Front Physiol. 2016 Oct 7;7:455. doi: 10.3389/fphys.2016.00455. eCollection 2016.

Abstract

Due to the important biological role of red blood cells (RBCs) in vertebrates, the analysis of reshaping and dynamics of RBCs motion is a critical issue in physiology and biomechanics. In this paper the behavior of RBCs within the immature capillary plexus during embryonic development of zebrafish has been analyzed. Relying on the fact that zebrafish embryos are small and optically transparent, it is possible to image the blood flow. In this way the anatomy of blood vessels is monitored along with the circulation throughout their development. Numerical simulations were performed using a specific numerical model that combines fluid flow simulation, modeling of the interaction of individual RBCs immersed in blood plasma with the surrounding fluid and modeling the deformation of individual cells. The results of numerical simulations are in accordance with the observed region of interest within the caudal vein plexus of the zebrafish embryo. Good agreement of results demonstrates the capabilities of the developed numerical model to predict and analyze the motion and deformation of RBCs in complex geometries. The proposed model (methodology) will help to elucidate different rheological and hematological related pathologies and finally to design better treatment strategies.

摘要

由于红细胞(RBCs)在脊椎动物中具有重要的生物学作用,分析红细胞重塑和运动动力学是生理学和生物力学中的关键问题。本文分析了斑马鱼胚胎发育过程中未成熟毛细血管丛内红细胞的行为。基于斑马鱼胚胎体积小且光学透明这一事实,可以对血流进行成像。通过这种方式,在血管发育过程中对其解剖结构和血液循环进行监测。使用特定的数值模型进行了数值模拟,该模型结合了流体流动模拟、浸入血浆中的单个红细胞与周围流体相互作用的建模以及单个细胞变形的建模。数值模拟结果与斑马鱼胚胎尾静脉丛内观察到的感兴趣区域一致。结果的良好一致性证明了所开发的数值模型能够预测和分析复杂几何形状中红细胞的运动和变形。所提出的模型(方法)将有助于阐明不同的流变学和血液学相关病理,并最终设计出更好的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ab/5054008/b39b87e6b488/fphys-07-00455-g0001.jpg

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