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玻璃化冷冻保存血管的应力-应变测量及粘弹性响应

Stress-strain measurements and viscoelastic response of blood vessels cryopreserved by vitrification.

作者信息

Jimenez Rios Jorge L, Steif Paul S, Rabin Yoed

机构信息

Biothermal Technology Laboratory, Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Ann Biomed Eng. 2007 Dec;35(12):2077-86. doi: 10.1007/s10439-007-9372-0. Epub 2007 Sep 9.

Abstract

To gain increased insight into thermo-mechanical phenomena during cryopreservation, tensile stress relaxation experiments were conducted on vitrified blood vessels (vitreous in Latin means Glassy), and the results compared with various viscoelastic models. Using a recently presented device, isothermal stress-relaxation results were obtained for a bovine carotid artery model, permeated with the cryoprotectant cocktail VS55 and a reference solution of 7.05 M DMSO. After a rapidly applied tensile strain, experimental results display exponential decay of stress with time; the stress at a given time increases with decreasing specimen temperature. Among the viscoelastic models investigated, the Williams-Landel-Ferry model was found to best-fit the variation of the stress relaxation data with temperature, while a Maxwell-Weichert model is used to represent the exponential decay of the stress with time. Blood vessel properties were found to dominate at temperatures above roughly -100 degrees C, while the properties of the cryoprotectant dominate below this temperature. A suitably defined steady-state viscosity displayed a similar behavior for both cryoprotectants, when normalized with respect to the cryoprotectant glass transition temperature.

摘要

为了更深入地了解冷冻保存过程中的热机械现象,对玻璃化血管进行了拉伸应力松弛实验(在拉丁语中,玻璃化意为玻璃状),并将结果与各种粘弹性模型进行了比较。使用最近推出的一种装置,对灌注了冷冻保护剂混合物VS55和7.05 M二甲基亚砜参考溶液的牛颈动脉模型获得了等温应力松弛结果。在快速施加拉伸应变后,实验结果显示应力随时间呈指数衰减;在给定时间的应力随着样品温度的降低而增加。在所研究的粘弹性模型中,发现威廉姆斯-兰德尔-费里模型最能拟合应力松弛数据随温度的变化,而麦克斯韦-魏歇特模型用于表示应力随时间的指数衰减。发现血管特性在大约-100摄氏度以上的温度下占主导地位,而冷冻保护剂的特性在该温度以下占主导地位。当相对于冷冻保护剂玻璃化转变温度进行归一化时,适当定义的稳态粘度对两种冷冻保护剂表现出相似的行为。

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