The development of a functional cardiovascular system ensures a sustainable oxygen, nutrient and hormone delivery system for successful embryonic development and homeostasis in adulthood. While early vessels are formed by biochemical signaling and genetic programming, the onset of blood flow provides mechanical cues that participate in vascular remodeling of the embryonic vascular system. The zebrafish is a prolific animal model for studying the quantitative relationship between blood flow and vascular morphogenesis due to a combination of favorable factors including blood flow visualization in optically transparent larvae. In this study, we have developed a cell-and-plasma blood transport model using computational fluid dynamics (CFD) to u...
The zebrafish has emerged to become a powerful vertebrate animal model for cardiovascular research i...
(A) Representative maximum intensity time-stack projection images of RBC flow in the ISV networks of...
(A to D) Diameters of aISV: p = 0.046 (A), vISV: p = 0.036 (B), CA: p = 0.63 (C) and CV: p = 0.56 (D...
The development of a functional cardiovascular system ensures a sustainable oxygen, nutrient and hor...
Physiological functions of vascular endothelial cells (ECs) vary depending on wall shear stress (WSS...
(A) Morphology of zebrafish trunk network in the caudal vein plexus region obtained using microangio...
© 2016 Djukic, Karthik, Saveljic, Djonov and Filipovic. Due to the important biological role of red ...
Due to the important biological role of red blood cells (RBCs) in vertebrates, the analysis of resha...
Wall shear stress (WSS) contributes to the mechanotransduction underlying microvascular development ...
Over the past few decades, Zebrafish has become a widely used vertebrate model for cardiovascular re...
Supplementary text for A cell-and-plasma numerical model reveals hemodynamic stress and flow adaptat...
<p>Hydraulic models for the network predict that the first of these SeA will short circuit flow thro...
All blood cells originate from hematopoietic stem/progenitor cells (HSPCs). HSPCs are formed from en...
Pulsatile flow is a universal feature of the blood circulatory system in vertebrates and can lead to...
<div><p>Although atherosclerosis is a multifactorial disease, the role of hemodynamic information ha...
The zebrafish has emerged to become a powerful vertebrate animal model for cardiovascular research i...
(A) Representative maximum intensity time-stack projection images of RBC flow in the ISV networks of...
(A to D) Diameters of aISV: p = 0.046 (A), vISV: p = 0.036 (B), CA: p = 0.63 (C) and CV: p = 0.56 (D...
The development of a functional cardiovascular system ensures a sustainable oxygen, nutrient and hor...
Physiological functions of vascular endothelial cells (ECs) vary depending on wall shear stress (WSS...
(A) Morphology of zebrafish trunk network in the caudal vein plexus region obtained using microangio...
© 2016 Djukic, Karthik, Saveljic, Djonov and Filipovic. Due to the important biological role of red ...
Due to the important biological role of red blood cells (RBCs) in vertebrates, the analysis of resha...
Wall shear stress (WSS) contributes to the mechanotransduction underlying microvascular development ...
Over the past few decades, Zebrafish has become a widely used vertebrate model for cardiovascular re...
Supplementary text for A cell-and-plasma numerical model reveals hemodynamic stress and flow adaptat...
<p>Hydraulic models for the network predict that the first of these SeA will short circuit flow thro...
All blood cells originate from hematopoietic stem/progenitor cells (HSPCs). HSPCs are formed from en...
Pulsatile flow is a universal feature of the blood circulatory system in vertebrates and can lead to...
<div><p>Although atherosclerosis is a multifactorial disease, the role of hemodynamic information ha...
The zebrafish has emerged to become a powerful vertebrate animal model for cardiovascular research i...
(A) Representative maximum intensity time-stack projection images of RBC flow in the ISV networks of...
(A to D) Diameters of aISV: p = 0.046 (A), vISV: p = 0.036 (B), CA: p = 0.63 (C) and CV: p = 0.56 (D...