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首页> 外文期刊>Biophysical Journal >Ultrahigh-Resolution Optical Coherence Elastography Images Cellular-Scale Stiffness of Mouse Aorta
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Ultrahigh-Resolution Optical Coherence Elastography Images Cellular-Scale Stiffness of Mouse Aorta

机译:超高分辨率光学相干弹性造影图像图像细胞级刚度的小鼠主动脉

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摘要

Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of disease; however, cellular-scale resolution is not readily achievable in intact tissue volumes. Here, we demonstrate volumetric imaging of Young's modulus using ultrahigh-resolution optical coherence elastography, and apply it to characterizing the stiffness of mouse aortas. We achieve isotropic resolution of better than 15 mu m over a 1-mm lateral field of view through the entire depth of an intact aortic wall. We employ a method of quasi-static compression elastography that measures volumetric axial strain and uses a compliant, transparent layer to measure surface axial stress. This combination is used to estimate Young's modulus throughout the volume. We demonstrate differentiation by stiffness of individual elastic lamellae and vascular smooth muscle. We observe stiffening of the aorta in regulator of G protein signaling 5-deficient mice, a model that is linked to vascular remodeling and fibrosis. We observe increased stiffness with proximity to the heart, as well as regions with micro-structural and micro-mechanical signatures characteristic of fibrous and lipid-rich tissue. High-resolution imaging of Young's modulus with optical coherence elastography may become an important tool in vascular biology and in other fields concerned with understanding the role of mechanics within the complex three-dimensional architecture of tissue.
机译:组织机械性能的细胞级成像有助于揭示疾病的起源;然而,在完整的组织体积中,细胞尺度分辨率不容易实现。在这里,我们使用超高分辨率光学相干弹性术展示杨氏模量的体积成像,并将其应用于表征小鼠主动脉的刚度。通过完整的主动脉墙的整个深度实现在1mm的横向视场上实现各向同性分辨率优于15毫米。我们采用了一种准静态压缩弹性摄影的方法,测量体积轴向应变,并使用柔性透明层来测量表面轴向应力。这种组合用于估计整个体积的杨氏模量。我们证明了各种弹性薄片和血管平滑肌的刚度的分化。我们观察到G蛋白信号传导5缺乏小鼠的调节器中主动脉的加强,一种与血管重塑和纤维化有关的模型。我们观察到心脏接近的刚度增加,以及具有纤维和富含脂质组织的微结构和微机械签名的区域。具有光学相干弹性成像的杨氏模量的高分辨率成像可以成为血管生物学中的重要工具,以及关于了解机械师在组织复杂的三维架构内的作用。

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