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激光衍射技术:在血管病变中的临床应用

Laser diffractometry technique: clinical applications to vascular pathologies.

作者信息

Riquelme Bibiana, Foresto Patricia, D'Arrigo Mabel, Filippini Fernando, Valverde Juana

机构信息

Area Física, Fac. Cs. Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Argentina.

出版信息

Clin Hemorheol Microcirc. 2006;35(1-2):277-81.

Abstract

Hypertension (HTA) and dyslipidemia (DLP) represent major risk factors for cardiovascular and cerebral-vascular ischemic disease. The mechanisms through which they can induce vascular damage are both metabolic and mechanical. Hemorheological alterations in HTA are result of changes affecting both red cell intrinsic structure and their interactions with the plasmatic components. Several hemorheological determinants (biochemical, ionic, metabolic and rheologic) could influence and produce an impaired erythrocyte deformability determining an increased flow resistance in the microcirculation. The "Erythrodeformeter" allows obtaining the stationary and dynamical linear parameters of erythrocyte membrane by laser diffractometry. Stationary and oscillatory shear-induced elongation of cells leads to an elliptical diffraction pattern, its geometric characteristics being directly related to those of deformed RBC. Erythrocyte stationary parameters (Deformability Index, surface viscosity and elastic modulus) were obtained in stationary regime. Complex viscoelastic parameters (dynamic elasticity, dynamic loss, viscous and elastic components of the complex viscosity) were obtained when operating in oscillating mode. The diffractometric method is sensitive to detect pathological or induced alterations on RBC membrane, which can affect blood flow in vivo. The rheological parameters obtained give important information about the erythrocyte membrane and allow to detect and characterize erythrocyte alterations in vascular pathologies.

摘要

高血压(HTA)和血脂异常(DLP)是心脑血管缺血性疾病的主要危险因素。它们导致血管损伤的机制包括代谢和机械方面。高血压中的血液流变学改变是红细胞内在结构及其与血浆成分相互作用变化的结果。几种血液流变学决定因素(生化、离子、代谢和流变学)可能会影响并导致红细胞变形能力受损,从而导致微循环血流阻力增加。“红细胞变形仪”可通过激光衍射法获得红细胞膜的静态和动态线性参数。细胞在静态和振荡剪切力作用下的伸长会产生椭圆形衍射图案,其几何特征与变形红细胞的几何特征直接相关。在静态状态下获得红细胞静态参数(变形指数、表面粘度和弹性模量)。在振荡模式下操作时可获得复杂的粘弹性参数(动态弹性、动态损耗、复数粘度的粘性和弹性成分)。衍射法对检测红细胞膜上的病理或诱导性改变很敏感,这些改变会影响体内血流。所获得的流变学参数提供了有关红细胞膜的重要信息,并有助于检测和表征血管病变中的红细胞改变。

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