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利用散斑干涉术对羊膜在加载过程中的厚度进行动态测量。

Dynamic measurement of amnion thickness during loading by speckle pattern interferometry.

机构信息

Institute of Solid Mechanics, School of Aeronautics Sciences and Engineering, Beihang University, Beijing, 100083, China.

Obstetrics and Gynecology Department, Peking University Third Hospital, Beijing, 100191, China.

出版信息

Placenta. 2021 Jan 15;104:284-294. doi: 10.1016/j.placenta.2021.01.001. Epub 2021 Jan 7.

Abstract

INTRODUCTION

In previous studies on the mechanical parameters of amnions (AM), there is a limitation due to the lack of an accurate thickness measurement, which is an important parameter for determining AM-specific mechanical properties. As a bottleneck, the characterization of the basic mechanical properties of AM are greatly restricted, even with the proposal of fracture criteria.

METHOD

First, the initial thickness of the AM is estimated by the interpolated-volume-area method. Second, through combinations of our self-developed mini-biaxial tensile device with speckle pattern interferometry, this is the first time that researchers can accurately obtain the AM thickness at each transient moment in the process of loading.

RESULTS

Based on the experimental results, an accurate stress-strain curve could be obtained. Two important mechanical parameters-the fracture energy density and amnion rupture modulus-could be extracted as 0.184±0.036MPa and 108.57±17.32MPa, respectively. The fracture energy density and amnion rupture modulus provide objective criteria and a scientific basis for the evaluation of AM rupture.

DISCUSSION

The tensile stress-strain curve of a normal human amnion shows a distinct J-shape. This proves that the experimental results are basically reliable. Both important parameters --the fracture energy density and amnion rupture modulus, can be calculated from the stress-strain curve. Extracting these two parameters is critical for the evaluation and prediction of ROM, PROM and PPROM.

摘要

简介

在以往关于羊膜(AM)力学参数的研究中,由于缺乏准确的厚度测量,存在一定的局限性,而厚度是确定 AM 特有力学性能的重要参数。这一局限性成为瓶颈,极大地限制了 AM 基本力学性能的特征描述,即使提出了断裂准则也是如此。

方法

首先,通过插值体积面积法估算 AM 的初始厚度。其次,通过我们自主研发的小型双轴拉伸装置与散斑干涉测量技术的组合,研究人员首次可以在加载过程中的每个瞬态时刻准确获取 AM 的厚度。

结果

基于实验结果,可以获得精确的应力-应变曲线。可以提取两个重要的力学参数——断裂能密度和羊膜破裂模量,分别为 0.184±0.036MPa 和 108.57±17.32MPa。断裂能密度和羊膜破裂模量为 AM 破裂的评估提供了客观的标准和科学依据。

讨论

正常人类羊膜的拉伸应力-应变曲线呈现明显的 J 形。这证明了实验结果基本可靠。从应力-应变曲线中可以计算出两个重要参数——断裂能密度和羊膜破裂模量。提取这两个参数对于评估和预测 ROM、PROM 和 PPROM 至关重要。

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