globalchange  > 影响、适应和脆弱性
项目编号: 1436082
项目名称:
Cell distribution and segregation phenomena in blood flow: biomechanical aspects and impacts
作者: Michael Graham
承担单位: University of Wisconsin-Madison
批准年: 2013
开始日期: 2014-09-01
结束日期: 2018-08-31
资助金额: USD356770
资助来源: US-NSF
项目类别: Standard Grant
国家: US
语种: 英语
特色学科分类: Engineering - Chemical, Bioengineering, Environmental, and Transport Systems
英文关键词: cell ; blood ; vessel ; cell free layer ; flow ; polymer ; blood cell ; red blood cell margination ; white blood cell ; turbulent flow ; flow rate ; red blood cell ; laminar blood flow ; cell migration ; biomechanical aspect ; blood flow
英文摘要: CBET 1436082

This project will use numerical methods and computer simulation to examine blood flow in the vascular system and in extracorporeal channels, including microfluidic devices that process blood for diagnostic purposes. The project will focus on analyzing and predicting the migration of cells during flow. Red blood cells tend to migrate toward the center of a vessel or channel, while white blood cells and platelets are displaced toward vessel or channel walls. The project will investigate how cell migration is affected by the geometry of the vessel cross-section, hematocrit, flow rate through the vessel, and interactions among the cells. In addition, the proposal will consider the effects of small amount of polymers added to the blood. These polymers are known to reduce energy losses in turbulent flow, but recent evidence suggests they may also affect laminar blood flow in ways that have physiological benefits.

A computational and mathematical framework will be developed for predicting migration of blood cells during flow through a vessel. Red blood cell margination and the formation of cell free layers at the vessel walls will be examined for flow geometries characteristic of the circulation and microfluidic devices. The role of long-chain drag reducing polymers will be examined to resolve the mechanism by which they affect margination and the development of a cell free layer. The results of the computer simulations will be compared with experiments carried out by the investigator?s colleagues. The results will improve our understanding of the biomechanical aspects of various hematological disorders.
资源类型: 项目
标识符: http://119.78.100.158/handle/2HF3EXSE/95547
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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Michael Graham. Cell distribution and segregation phenomena in blood flow: biomechanical aspects and impacts. 2013-01-01.
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