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D 带应变低估了低应变下扭曲胶原纤维的原纤维应变。

D-band strain underestimates fibril strain for twisted collagen fibrils at low strains.

机构信息

Department of Physics and Atmospheric Science, Dalhousie University, Halifax, B3H 4R2, Nova Scotia, Canada; Department of Physics, Simon Fraser University, Burnaby, V5A 1S6, British Columbia, Canada.

Department of Physics and Atmospheric Science, Dalhousie University, Halifax, B3H 4R2, Nova Scotia, Canada.

出版信息

J Mech Behav Biomed Mater. 2021 Dec;124:104854. doi: 10.1016/j.jmbbm.2021.104854. Epub 2021 Sep 25.

Abstract

Collagen fibrils are the main structural component of load-bearing tissues such as tendons, ligaments, skin, the cornea of the eye, and the heart. The D-band of collagen fibrils is an axial periodic density modulation that can be easily characterized by tissue-level X-ray scattering. During mechanical testing, D-band strain is often used as a proxy for fibril strain. However, this approach ignores the coupling between strain and molecular tilt. We examine the validity of this approximation using an elastomeric collagen fibril model that includes both the D-band and a molecular tilt field. In the low strain regime, we show that the D-band strain substantially underestimates fibril strain for strongly twisted collagen fibrils - such as fibrils from skin or corneal tissue.

摘要

胶原纤维是承担负荷的组织(如肌腱、韧带、皮肤、眼角膜和心脏)的主要结构成分。胶原纤维的 D 带是轴向周期性密度调制,可以通过组织水平的 X 射线散射轻松表征。在机械测试中,D 带应变通常被用作纤维应变的替代物。然而,这种方法忽略了应变和分子倾斜之间的耦合。我们使用包括 D 带和分子倾斜场的弹性胶原纤维模型来检验这种近似的有效性。在低应变范围内,我们发现对于强烈扭曲的胶原纤维(如皮肤或角膜组织中的纤维),D 带应变大大低估了纤维应变。

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