论文标题
用布里渊显微镜测量角膜的机械各向异性
Measuring mechanical anisotropy of the cornea with Brillouin microscopy
论文作者
论文摘要
承重组织通常由蛋白质纤维网络加固,通常具有优先取向。该纤维结构以优化的方向依赖机械性能授予组织,以支持特定的外部载荷。为了准确模拟和预测组织的机械响应,必须在微结构尺度上表征各向异性。以前,很难无创地测量完整组织的机械性能。在这里,我们使用Brillouin光学显微镜来可视化和量化角膜组织在不同长度尺度下的各向异性机械性能。我们为胶原原纤维的层状网络得出刚度张量,并使用角度分辨的布里鲁因测量值来确定描述纵向猪角膜的纵向刚度系数(纵向模量)作为横向同位素材料。最后,我们观察到体内人角膜的明显机械各向异性,突出了布里鲁因显微镜外轴应用的潜力。
Load-bearing tissues are typically fortified by networks of protein fibers, often with preferential orientations. This fiber structure imparts the tissues with direction-dependent mechanical properties optimized to support specific external loads. To accurately model and predict tissues' mechanical response, it is essential to characterize the anisotropy on a microstructural scale. Previously, it has been difficult to measure the mechanical properties of intact tissues noninvasively. Here, we use Brillouin optical microscopy to visualize and quantify the anisotropic mechanical properties of corneal tissues at different length scales. We derive the stiffness tensor for a lamellar network of collagen fibrils and use angle-resolved Brillouin measurements to determine the longitudinal stiffness coefficients (longitudinal moduli) describing the ex vivo porcine cornea as a transverse isotropic material. Lastly, we observe significant mechanical anisotropy of the human cornea in vivo, highlighting the potential for clinical applications of off-axis Brillouin microscopy.