Karimi Alireza, Shojaei Ahmad, Tehrani Pedram
a Department of Mechanical Engineering , Kyushu University , Fukuoka , Japan.
b Basir Eye Health Research Center , Tehran , Iran.
J Med Eng Technol. 2017 Oct;41(7):541-545. doi: 10.1080/03091902.2017.1366561. Epub 2017 Aug 29.
Gallbladder is a small organ of the body which is located in the right side of the liver. It is responsible of storing the bile and releasing it to the intestine. The gallbladder can subject to the mechanical deformation/loading as a result of the cholecystitis, cholesterolosis of the gallbladder, etc. However, so far the mechanical properties of the human gallbladder have not been measured. This study was aimed at conducting an experimental study to measure the mechanical properties of the human gallbladder under the axial and transversal tensile loadings. To do that, the gallbladder tissue of 16 male individuals was excised during the autopsy and subjected to a series of axial and transversal loadings under the strain rate of 5 mm/min. The amount of elastic modulus as well as the maximum/failure stress of the tissues were calculated via the resulted stress-strain diagrams and reported. The results revealed that the axial and transversal elastic modulus were 641.20 ± 28.12 (mean ± SD) and 255 ± 24.55 kPa, respectively. The amount of maximum stresses was also 1240 ± 99.94 and 348 ± 66.75 kPa under the axial and transversal loadings, respectively. The results revealed a significantly higher axial stiffness (p < .05, post hoc Scheffe method) compared to the transversal one. These findings have implications not only for understanding the axial and transversal mechanical properties of the human gallbladder tissue, but also for providing a diagnosis tool for the doctors to have a suitable threshold value of the healthy gallbladder tissue.
胆囊是人体的一个小器官,位于肝脏右侧。它负责储存胆汁并将其释放到肠道。由于胆囊炎、胆囊胆固醇沉着症等原因,胆囊会受到机械变形/负荷。然而,到目前为止,人体胆囊的力学性能尚未得到测量。本研究旨在进行一项实验研究,以测量人体胆囊在轴向和横向拉伸载荷下的力学性能。为此,在尸检过程中切除了16名男性个体的胆囊组织,并在5毫米/分钟的应变率下对其进行了一系列轴向和横向载荷试验。通过所得的应力-应变图计算并报告了组织的弹性模量以及最大/破坏应力。结果显示,轴向和横向弹性模量分别为641.20±28.12(平均值±标准差)和255±24.55千帕。轴向和横向载荷下的最大应力分别为1240±99.94和348±66.75千帕。结果显示,轴向刚度明显高于横向刚度(p<0.05,事后Scheffe法)。这些发现不仅有助于理解人体胆囊组织的轴向和横向力学性能,还为医生提供了一种诊断工具,以便获得健康胆囊组织的合适阈值。