肌腱
纤维
干涉测量
胶原纤维
二次谐波产生
材料科学
偏振光显微镜
显微镜
横截面
结缔组织
生物物理学
光学
结晶学
化学
解剖
物理
生物
激光器
遗传学
作者
Maxime Rivard,Konstantin Popov,Mathieu Laliberté,Antony Bertrand‐Grenier,F. Martín,H. Pépin,Christian P. Pfeffer,Cameron Brown,Lora Rammuno,François Légaré
标识
DOI:10.48550/arxiv.1212.5588
摘要
We report the imaging of tendon, a connective tissue rich in collagen type I proteins, with Interferometric Second Harmonic Generation (I-SHG) microscopy. We observed that the noncentrosymmetric structural organization can be maintained along the fibrillar axis over more than 150 {\mu}m, while in the transverse direction it is ~1-15 {\mu}m. Those results are explained by modeling tendon as a heterogeneous distribution of noncentrosymmetric nanocylinders (collagen fibrils) oriented along the fibrillar axis. The preservation of the noncentrosymmetric structural organization over multiple tens of microns reveals that tendon is made of domains in which the fraction occupied by fibrils oriented in one direction is larger than in the other.
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