1.
Effects of Fluid Shear Stress on the Expression of IL-8 Receptors in Vascular Endothelial Cells;
流体切应力诱导血管内皮细胞IL-8受体表达变化的研究
2.
Effects of Fluid Shear Stress on Neutrophil-Endothelial Cell Adhesion and Its Mechanism;
流体切应力对中性粒细胞-内皮细胞黏附的影响及其机制探讨
3.
The Effect of Fluid Shear Stress on the mRNA of P-selectin in Human Umbilical Vein Endothelial Cell;
流体切应力对人脐静脉内皮细胞P选择素mRNA表达的影响
4.
A Study on the Expression of HSP70 in Endothelial Cells Pretreated with Ethanol and Fluid Shear Stress;
流体切应力作用下乙醇对血管内皮细胞HSP70表达的影响
5.
Fluid Stress Uses Multiple Mechanisms to Enhance the Cell Cycle Progression of Osteoblastic Cells from G1 to S Phase
流体切应力调控成骨细胞周期G1/S点机制的实验研究
6.
Fluid stress with multiple mechanisms to enhance the cell cycle progression of osteoblastic cells from G1 to S phase
流体切应力促成骨细胞通过细胞周期G1/S调控点机制的研究
7.
The Design of Steady Fluid Stress System and Effect of Fluid Shear Stress on Osteoclast-like Cells Cultured in Vitro;
定常流加载系统的设计制作及流体切应力对体外培养破骨细胞的影响
8.
The reviews will give a brief summary on the advancement of the research in this area.
本文就流体切应力对内皮细胞生理、化影响的研究进展作一简要综述。
9.
Study of the Role and Pathogenesis of Angiopoietins and Shear Stress in the Development and Rupture of the Intracranial Aneurysms;
血管生成素与流体切应力在人颅内动脉瘤形成与破裂中的作用机制
10.
Flow Shear Stress and Vascular Smooth Muscle Cells Promote Endothelial Differentiation of Endothelial Progenitor Cell via Activation of Akt;
流体切应力和血管平滑肌细胞诱导联合培养内皮祖细胞的分化及p-Akt的调控作用
11.
A fluid cannot withstand a shear.
流体不能承受切应力。
12.
The Current Effect and Acceleration When the Conductor Cuts the Magnetic Lines of Force Variably;
导体变速切割磁力线时的电流效应和加速度
13.
magnetohydrodynamic shear heating
磁流体动力剪切加热
14.
Design and Use of Flow Chamber for Fluid Shear Stress on Cells in Vitro
细胞体外流体剪切力加载装置平行平板流室的合理设计与应用
15.
Kinetic Study on Polymer Functional Reaction System under Shear Flow;
剪切流场下高聚物官能团反应体系的动力学研究
16.
The Influence of Low Laminar Shear Stress on the Expression of Scavenger Receptor BⅠ in Endothelial Cells
低层流切应力对内皮细胞表面B族Ⅰ型清道夫受体表达的影响
17.
New Mechanism in Action of Enhanced External Counterpulsation:Improving Shear Stress and Endothelial Function Protection
体外反搏作用的新机制:提高血流切应力与血管内皮功能保护
18.
Effects of fluid shear stress time on carbonic anhydrase in rat osteoclasts
流体剪切应力作用时间对鼠破骨细胞碳酸酐酶的影响