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首页> 外文期刊>Journal of Microscopy >A review of techniques for visualising soft tissue microstructure deformation and quantifying strain Ex Vivo Ex Vivo
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A review of techniques for visualising soft tissue microstructure deformation and quantifying strain Ex Vivo Ex Vivo

机译:用于可视化软组织微观结构变形和量化菌株的技术综述exVivo

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摘要

Summary Many biological tissues have a complex hierarchical structure allowing them to function under demanding physiological loading conditions. Structural changes caused by ageing or disease can lead to loss of mechanical function. Therefore, it is necessary to characterise tissue structure to understand normal tissue function and the progression of disease. Ideally intact native tissues should be imaged in 3D and under physiological loading conditions. The current published in situ imaging methodologies demonstrate a compromise between imaging limitations and maintaining the samples native mechanical function. This review gives an overview of in situ imaging techniques used to visualise microstructural deformation of soft tissue, including three case studies of different tissues (tendon, intervertebral disc and artery). Some of the imaging techniques restricted analysis to observational mechanics or discrete strain measurement from invasive markers. Full‐field local surface strain measurement has been achieved using digital image correlation. Volumetric strain fields have successfully been quantified from in situ X‐ray microtomography (micro‐CT) studies of bone using digital volume correlation but not in soft tissue due to low X‐ray transmission contrast. With the latest developments in micro‐CT showing in‐line phase contrast capability to resolve native soft tissue microstructure, there is potential for future soft tissue mechanics research where 3D local strain can be quantified. These methods will provide information on the local 3D micromechanical environment experienced by cells in healthy, aged and diseased tissues. It is hoped that future applications of in situ imaging techniques will impact positively on the design and testing of potential tissue replacements or regenerative therapies. Lay Description The soft tissues in our bodies, such as tendons, intervertebral discs and arteries, have evolved to have complicated structures which deform and bear load during normal function. Small changes in these structures can occur with age and disease which then leads to loss of function. Therefore, it is important to image tissue microstructure in 3D and under functional conditions. This paper gives an overview of imaging techniques used to record the deformation of soft tissue microstructures. Commonly there are compromises between obtaining the best imaging result and retaining the samples native structure and function. For example, invasive markers and dissecting samples damages the tissues natural structure, and staining or clearing (making the tissue more transparent) can distort tissue structure. Structural deformation has been quantified from 2D imaging techniques (digital image correlation) to create surface strain maps which help identify local tissue mechanics. When extended to 3D (digital volume correlation), deformation measurement has been limited to bone samples using X‐ray micro‐CT. Recently it has been possible to image the 3D structure of soft tissue using X‐ray micro‐CT meaning that there is potential for internal soft tissue mechanics to be mapped in 3D. Future application of micro‐CT and digital volume correlation will be important for soft tissue mechanics studies particularly to understand normal function, progression of disease and in the design of tissue replacements.
机译:发明内容许多生物组织具有复杂的分层结构,使其能够在苛刻的生理负载条件下起作用。老化或疾病引起的结构变化可能导致机械功能丧失。因此,有必要表征组织结构以了解正常组织功能和疾病的进展。理想地,完整的本地组织应在3D和生理负载条件下成像。现场成像方法发表的目前在成像限制和维持样品本地机械功能之间表现出折衷。该综述概述了用于可视化软组织的微观结构变形的原位成像技术,包括对不同组织的三种情况(肌腱,椎间盘和动脉)。一些成像技术限制了对侵入性标记的观察力学或离散应变测量的分析。使用数字图像相关性实现了全场局部表面应变测量。体积应变场已经成功地从原位X射线微观图(Micro-CT)研究使用数字体积相关性而是由于低X射线传输对比度而不是软组织。随着Micro-CT的最新动态显示在线相位对比度来解决本地软组织微观结构,有可能量化3D局部应变的未来软组织力学研究。这些方法将提供有关健康,年龄和患病组织中细胞所经历的局部3D微机械环境的信息。希望原位成像技术的未来应用将对潜在组织替代或再生疗法的设计和测试产生积极影响。 Lay描述我们身体中的软组织,例如肌腱,椎间盘和动脉,已经进化成具有在正常功能期间变形和承载负载的复杂结构。这些结构的微小变化可以随着年龄和疾病而发生,然后导致功能丧失。因此,对3D和功能条件下的组织微观结构非常重要。本文概述了用于记录软组织微观结构的变形的成像技术。通常在获得最佳成像结果和保留样品天然结构和功能之间存在妥协。例如,侵入性标记和解剖样品损害组织自然结构,染色或清除(使组织更透明)可以扭曲组织结构。结构变形已从2D成像技术(数字图像相关)量化以创建有助于识别局部组织力学的表面应变映射。当扩展到3D(数字体积相关)时,变形测量仅限于使用X射线微型CT的骨骼样品。最近,可以使用X射线微型CT来映射软组织的3D结构,这意味着存在在3D中映射内部软组织力学的潜力。微型CT和数字体积相关的未来应用对于软组织力学研究非常重要,特别是了解正常功能,疾病进展和组织替代的设计。

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