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测量单个人类血细胞的力学特性。

Measuring the mechanical properties of individual human blood cells.

作者信息

Hochmuth R M

机构信息

Department of Mechanical Engineering, Duke University, Durham, NC 27708-0300.

出版信息

J Biomech Eng. 1993 Nov;115(4B):515-9. doi: 10.1115/1.2895533.

Abstract

The largest human blood cells--the red cells (erythrocytes) and white cells (leukocytes)--must undergo a significant amount of deformation as they squeeze through the smallest vessels of the circulation and the small openings between bone, vessel and tissue. This ability to deform in response to external forces shows that cells exhibit material behavior and behave as either elastic solids or viscous liquids. The question then is "how can we measure the deformation and flow of something as small as a blood cell and what kinds of constitutive equations describe cellular deformation"? In this paper the use of the micropipet to measure red cell and white cell, especially neutrophil, deformation will be described and the viscoelastic models used to describe the deformation behavior of red cell membrane and neutrophil cytoplasm will be discussed. Values for the elasticities of a red cell membrane subjected to shear, area expansion and bending will be given. The viscosity of red cell membrane in shear will also be discussed. Finally, the cortical tension of the neutrophil and the Newtonian and Maxwell models used to characterize its apparent viscosity will be discussed even though neither is wholly successful in describing the viscous behavior of the neutrophil. Thus, alternate models will be suggested.

摘要

人体最大的血细胞——红细胞(红血球)和白细胞(白血球)——在挤过循环系统中最细小的血管以及骨骼、血管和组织之间的微小间隙时,必须经历显著的变形。这种响应外力而变形的能力表明,细胞呈现出物质行为,表现为弹性固体或粘性液体。那么问题是:“我们如何测量像血细胞这么小的物体的变形和流动,以及哪些本构方程可以描述细胞变形?”在本文中,将描述使用微量移液器测量红细胞和白细胞,尤其是中性粒细胞变形的方法,并讨论用于描述红细胞膜和中性粒细胞细胞质变形行为的粘弹性模型。还将给出红细胞膜在剪切、面积扩张和弯曲时的弹性值。也将讨论红细胞膜在剪切时的粘度。最后,将讨论中性粒细胞的皮质张力以及用于表征其表观粘度的牛顿模型和麦克斯韦模型,尽管这两种模型在描述中性粒细胞的粘性行为方面都不完全成功。因此,将提出替代模型。

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