Liu Yehe, Ballarini Roberto, Eppell Steven J
Department of Biomedical Engineering , Case Western Reserve University , Cleveland, OH , USA.
Department of Civil and Environmental Engineering , University of Houston , Houston, TX , USA.
Interface Focus. 2016 Feb 6;6(1):20150080. doi: 10.1098/rsfs.2015.0080.
A brief overview of isolated collagen fibril mechanics testing is followed by presentation of the first results testing fibrils isolated from load-bearing mammalian tendons using a microelectromechanical systems platform. The in vitro modulus (326 ± 112 MPa) and fracture stress (71 ± 23 MPa) are shown to be lower than previously measured on fibrils extracted from sea cucumber dermis and tested with the same technique. Scanning electron microscope images show the fibrils can fail with a mechanism that involves circumferential rupture, whereas the core of the fibril stays at least partially intact.
在简要概述了分离胶原纤维力学测试之后,介绍了使用微机电系统平台对从承重哺乳动物肌腱中分离出的纤维进行测试的首批结果。体外模量(326±112兆帕)和断裂应力(71±23兆帕)低于先前使用相同技术对从海参真皮中提取并测试的纤维所测得的值。扫描电子显微镜图像显示,纤维的失效机制涉及周向破裂,而纤维的核心至少部分保持完整。