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Imaging and modeling collagen architecture from the nano to micro scale

机译:从纳米级到微米级的胶原结构的成像和建模

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The collagen meshwork plays a central role in the functioning of a range of tissues including cartilage, tendon, arteries, skin, bone and ligament. Because of its importance in function, it is of considerable interest for studying development, disease and regeneration processes. Here, we have used second harmonic generation (SHG) to image human tissues on the hundreds of micron scale, and developed a numerical model to quantitatively interpret the images in terms of the underlying collagen structure on the tens to hundreds of nanometer scale. Focusing on osteoarthritic changes in cartilage, we have demonstrated that this combination of polarized SHG imaging and numerical modeling can estimate fibril diameter, filling fraction, orientation and bundling. This extends SHG microscopy from a qualitative to quantitative imaging technique, providing a label-free and non-destructive platform for characterizing the extracellular matrix that can expand our understanding of the structural mechanisms in disease.
机译:胶原网在包括软骨,肌腱,动脉,皮肤,骨骼和韧带在内的一系列组织的功能中起着核心作用。由于它在功能上的重要性,因此对于研究发育,疾病和再生过程具有极大的兴趣。在这里,我们已经使用二次谐波生成(SHG)在数百微米尺度上对人体组织进行成像,并开发了一种数值模型来根据数十到数百纳米尺度下的潜在胶原结构定量解释图像。着眼于软骨的骨关节炎变化,我们证明了极化SHG成像和数值模型的这种结合可以估计原纤维直径,填充率,方向和束缚。这将SHG显微镜技术从定性成像技术扩展到定量成像技术,为表征细胞外基质提供了无标记且无损的平台,可以扩展我们对疾病结构机制的了解。

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