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微压痕和光学相干断层扫描技术在胚胎力学特性表征中的应用:鸡胚实验装置和测量。

Micro-indentation and optical coherence tomography for the mechanical characterization of embryos: Experimental setup and measurements on chicken embryos.

机构信息

Department of Physics and Astronomy, Laser-LaB Amsterdam, Vrije Universiteit Amsterdam, The Netherlands.

Department of Physics and Astronomy, Laser-LaB Amsterdam, Vrije Universiteit Amsterdam, The Netherlands.

出版信息

Acta Biomater. 2019 Oct 1;97:524-534. doi: 10.1016/j.actbio.2019.07.056. Epub 2019 Aug 1.

DOI:10.1016/j.actbio.2019.07.056
PMID:31377425
Abstract

The investigation of the mechanical properties of embryos is expected to provide valuable information on the phenomenology of morphogenesis. It is thus believed that, by mapping the viscoelastic features of an embryo at different stages of growth, it may be possible to shed light on the role of mechanics in embryonic development. To contribute to this field, we present a new instrument that can determine spatiotemporal distributions of mechanical properties of embryos over a wide area and with unprecedented accuracy. The method relies on combining ferrule-top micro-indentation, which provides local measurements of viscoelasticity, with Optical Coherence Tomography, which can reveal changes in tissue morphology and help the user identify the indentation point. To prove the working principle, we have collected viscoelasticity maps of fixed and live HH11-HH12 chicken embryos. Our study shows that the instrument can reveal correlations between tissue morphology and mechanical behavior. STATEMENT OF SIGNIFICANCE: Local mechanical properties of soft biological tissue play a crucial role in several biological processes, including cell differentiation, cell migration, and body formation; therefore, measuring tissue properties at high resolution is of great interest in biology and tissue engineering. To provide an efficient method for the biomechanical characterization of soft biological tissues, we introduce a new tool in which the combination of non-invasive Optical Coherence Tomography imaging and depth-controlled indentation measurements allows one to map the viscoelastic properties of biological tissue and investigate correlations between local mechanical features and tissue morphology with unprecedented resolution.

摘要

研究胚胎的力学性能有望为形态发生学的现象学提供有价值的信息。因此,人们相信,通过绘制胚胎在不同生长阶段的黏弹性特征图,就有可能揭示力学在胚胎发育中的作用。为了推动这一领域的发展,我们提出了一种新的仪器,可以在广泛的区域内以空前的精度确定胚胎力学性能的时空分布。该方法依赖于将套圈顶端微压痕法(可提供黏弹性的局部测量)与光学相干断层扫描(可以揭示组织形态的变化并帮助用户识别压痕点)相结合。为了验证工作原理,我们已经收集了固定和活体 HH11-HH12 鸡胚胎的黏弹性图谱。我们的研究表明,该仪器可以揭示组织形态和力学行为之间的相关性。

意义声明

软生物组织的局部力学性质在包括细胞分化、细胞迁移和身体形成在内的几个生物学过程中起着至关重要的作用;因此,在生物学和组织工程中,以高分辨率测量组织特性具有重要意义。为了提供软生物组织生物力学特性的有效方法,我们引入了一种新工具,其中非侵入性光学相干断层扫描成像与深度控制压痕测量相结合,允许对生物组织的黏弹性特性进行映射,并以前所未有的分辨率研究局部力学特征与组织形态之间的相关性。

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