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首页> 外文期刊>Journal of Microscopy >Comparison of optical projection tomography and light‐sheet fluorescence microscopy
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Comparison of optical projection tomography and light‐sheet fluorescence microscopy

机译:光投射断层扫描和光纸荧光显微镜的比较

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Summary We present a numerical analysis and experimental characterisation of spatial resolution in optical projection tomography (OPT) and light‐sheet fluorescence microscopy (LSFM) using their ‘standard’ systems. Although both techniques provide spatial resolution at the micrometre scale for mesoscopic (millimetre to centimetre) samples, LSFM provides higher lateral (~3 μm, ~34% of OPT) but lower axial (~25.8 μm, 295% of OPT) resolution as compared to OPT (~8.75 μm, 100%) when imaging the same sample (~2 mm). Moreover, OPT provides isotropic spatial resolution due to its rotational scanning which may reduce the ambiguity in 3D analysis, so it is more practically appropriate for relatively large samples. We also demonstrate the application performances of both techniques by imaging various biological tissues, illustrating their imaging ability at different spatial scales. Lay Description Optical projection tomography (OPT) and light‐sheet fluorescence microscopy (LSFM) are generally used to extract 3D information from relatively large biological tissues/organs/embryos or even some small animals. Both techniques have made a great progress in recent decades and have been widely applied in life science, medical research and so on. The different implementation features of these two techniques results in isotropic and anisotropic spatial resolution respectively, making a dilemma for the researchers to choose the appropriate system when imaging the samples with different size. So far, there is no study to numerically discuss the differences between their image formation properties and to adequately quantify their own strengths and limitations. In our work, we quantified the imaging behaviour in ‘standard’ OPT and LSFM using both numerical analysis and experimental characterisations, showing the relationship between spatial resolution and sample size in each system. We also demonstrated the detailed structure differences when imaging various biological tissues. We believe this work will be useful and can provide a reference for the 3D fluorescence‐imaging‐based researchers.
机译:发明内容我们使用其“标准”系统介绍了光投影断层扫描(OPT)和光纸荧光显微镜(LSFM)的空间分辨率的数值分析和实验表征。尽管两种技术都提供了介术(毫米至厘米)样品的微流量分辨率,但LSFM相比,LSFM提供更高的横向(〜3μm,〜34%的选择),但相比,轴向下降(〜25.8μm,295%的选择)分辨率在成像相同的样品(〜2mm)时选择(〜8.75μm,100%)。此外,由于其旋转扫描,opt提供各向同性空间分辨率,这可以降低3D分析中的模糊性,因此对于相对较大的样品,它更加适当。我们还通过成像各种生物组织来证明两种技术的应用性能,示出了它们在不同空间尺度处的成像能力。放置描述光学投影断层扫描(OPT)和光片荧光显微镜(LSFM)通常用于从相对大的生物组织/器官/胚胎或甚至一些小动物中提取3D信息。近几十年来,这两种技术都取得了巨大的进展,并已广泛应用于生命科学,医学研究等。这两种技术的不同实现特征分别导致各向同性和各向异性的空间分辨率,为研究人员进行困境,以在以不同尺寸的成像时选择适当的系统。到目前为止,没有研究以在数值上讨论其图像形成性质之间的差异,并充分量化自己的优势和局限性。在我们的工作中,我们使用数值分析和实验特征量化“标准”OPT和LSFM中的成像行为,显示了每个系统中空间分辨率和样本大小之间的关系。我们还在成像各种生物组织时展示了详细的结构差异。我们认为这项工作将是有用的,可以为基于3D荧光成像的研究人员提供参考。

著录项

  • 来源
    《Journal of Microscopy》 |2019年第1期|共8页
  • 作者单位

    College of Health Science and Environmental EngineeringShenzhen Technology UniversityShenzhen China;

    College of Health Science and Environmental EngineeringShenzhen Technology UniversityShenzhen China;

    College of Health Science and Environmental EngineeringShenzhen Technology UniversityShenzhen China;

    College of Health Science and Environmental EngineeringShenzhen Technology UniversityShenzhen China;

    College of Health Science and Environmental EngineeringShenzhen Technology UniversityShenzhen China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

    Light‐sheet fluorescence microscopy; optical projection tomography; spatial resolution;

    机译:光纸荧光显微镜;光投射断层扫描;空间分辨率;

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