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HYDRODYNAMICS AND LEUKOCYTE ADHESION IN MICROVESSELS: STATE OF THE ART

机译:微孔丝流体动力学和白细胞粘附性:现有技术

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Leukocyte rolling and adhesion are complex physiological processes that have received a great deal of attention over the past decade. Significant increases in the knowledge base related to how leukocytes adhere in shear flows have occurred as a result of the development of novel experimental and computational techniques. Micro- and nano-fabrication techniques have enabled the development of novel flow devices for studying leukocyte adhesion in simple and complex geometries. Improvements in computer technology have enabled simulations of complex flow processes to be developed. As a result of these advances in knowledge related to leukocyte adhesion, numerous novel devices have been developed that mimic the leukocyte rolling and adhesion process. Examples of these devices include cell separation and enrichment devices and targeted ultrasound contrast agents. Future advances related to leukocyte rolling and adhesion processes hold great promise for advancing our knowledge of disease processes as well as development of novel therapeutic devices.
机译:白细胞轧制和粘附性是在过去十年中获得了大量关注的复杂生理过程。由于新型实验和计算技术的发展,涉及与白细胞如何在剪切流中粘附在剪切流中有关的知识基础的显着增加。微型和纳米制造技术使得开发了用于研究简单和复杂的几何形状的白细胞粘附的新型流动装置。计算机技术的改进使得能够进行待开发的复杂流程的模拟。由于与白细胞粘附相关的知识进展,已经开发了许多新型器件,以模仿白细胞轧制和粘合过程。这些装置的实例包括细胞分离和富集装置和靶向超声造影剂。与白细胞轧制和粘附过程有关的未来进展对于推进我们对疾病过程的知识以及新颖的治疗装置的发展具有巨大的希望。

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