Faculty of Civil and Environmental Engineering, Gdańsk University of Technology, Gdańsk, Poland.
Department of Nephrology, Transplantology and Internal Medicine, Medical University of Gdańsk, Gdańsk, Poland.
J Mech Behav Biomed Mater. 2023 Nov;147:106148. doi: 10.1016/j.jmbbm.2023.106148. Epub 2023 Sep 28.
The presented study aims to assess the mechanical behaviour of the anterior abdominal wall based on an in vivo experiment on humans. Full-field measurement of abdominal wall displacement during changes of intra-abdominal pressure is performed using a digital image correlation (DIC) system. Continuous measurement in time enables the observation of changes in the strain field during breathing. The understanding of the mechanical behaviour of a living human abdominal wall is important for the proper design of surgical meshes used for ventral hernia repair, which was also a motivation for the research presented below. The research refers to the strain field of a loaded abdominal wall and presents the evolution of principal strains and their directions in the case of 12 subjects, 8 male and 4 female. Peritoneal dialysis procedure allows for the measurement of intra-abdominal pressure after fluid introduction. High variability among patients is observed, also in terms of principal strain direction. Subjects exhibit intra-abdominal pressure of values from 11 to 21 cmHO. However, the strain values are not strongly correlated with the pressure value, indicating variability of material properties.
本研究旨在基于人体的体内实验评估前腹壁的力学行为。使用数字图像相关(DIC)系统对腹内压变化过程中腹壁位移进行全场测量。连续的时间测量使我们能够观察到呼吸过程中应变场的变化。了解活体人腹壁的力学行为对于用于腹疝修补的外科网片的正确设计很重要,这也是下面呈现的研究的动机之一。该研究涉及加载腹壁的应变场,并呈现了 12 名受试者(8 名男性和 4 名女性)的主应变及其方向的演变。腹膜透析程序允许在引入液体后测量腹内压。在主应变方向上,也观察到患者之间存在很大的可变性。受试者的腹内压值范围为 11 至 21cmH2O。然而,应变值与压力值没有很强的相关性,表明材料特性存在可变性。