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首页> 外文期刊>Acta biomaterialia >Micro-indentation and optical coherence tomography for the mechanical characterization of embryos: Experimental setup and measurements on chicken embryos
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Micro-indentation and optical coherence tomography for the mechanical characterization of embryos: Experimental setup and measurements on chicken embryos

机译:微压缩和光学相干断层扫描,用于胚胎的机械表征:鸡胚的实验设置和测量

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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.
机译:预计对胚胎力学性能的调查将提供关于形态发生现象学的有价值的信息。 因此,通过将胚胎的粘弹性特征在不同的生长阶段上映射,可以阐明力学在胚胎发育中的作用。 为了贡献这一领域,我们提供了一种新的仪器,可以在广泛的区域和前所未有的准确度上确定胚胎的机械性能的时空分布。 该方法依赖于组合套圈 - 顶部微压缩,该微压缩提供粘弹性的局部测量,具有光学相干性断层扫描,这可以揭示组织形态的变化并帮助用户识别压痕点。 为了证明工作原理,我们收集了固定和活HH11-HH12鸡胚的粘弹性图。 我们的研究表明,该仪器可以揭示组织形态与机械行为之间的相关性。

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