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从垂直切片估计颗粒形状的体视学方法。

Stereological estimation of particle shape from vertical sections.

机构信息

Centre for Stochastic Geometry and Advanced Bioimaging, Aarhus University, Aarhus, Denmark.

Core Centre for Molecular Morphology, Section for Stereology and Microscopy, Department of Clinical Medicine, Aarhus University, Aarhus, Denmark.

出版信息

J Microsc. 2019 Sep;275(3):183-194. doi: 10.1111/jmi.12826. Epub 2019 Aug 8.

Abstract

In the present paper, we describe a new simple stereological method of estimating volume tensors in 3D from vertical sections. The volume tensors provide information about particle shape in 3D. In a model-based setting, the method requires that the particle distribution is invariant under rotations around the vertical axis. In a design-based approach, where the vertical section is uniformly rotated around the vertical axis, the method provides information about an index of elongation of the particles in the direction of the vertical axis. The method has been implemented on human brain tissue for the analysis of neurons in layer III of the medial frontal gyrus of Brodmann Area 46. In the actual implementation, the new estimator shows similar precision as an earlier estimator, based on an optical rotator design, but it is a factor 3 faster to collect the measurements for the new estimator. Furthermore, the calculations needed for determining the new estimator are much simpler. LAY DESCRIPTION: A new method is described for estimating volume tensors in 3 dimensions based on the stereological method: planar rotator. In general, volume tensors may provide information about particle volume, shape and direction. The new estimator was implemented on human brain tissue for the analysis of neurons in layer III of the medial frontal gyrus on Brodmann Area 46 and compared to a previous published method, based on an optical rotator design. The new estimator shows similar precision as the earlier estimator, but it is a factor 3 faster to collect the measurements. Besides, the calculations behind the new estimator are simpler and easier to implement to a software program.

摘要

在本文中,我们描述了一种从垂直切片估计 3D 中体张量的新的简单体视学法。体张量提供了关于 3D 中颗粒形状的信息。在基于模型的方法中,该方法要求颗粒分布在垂直轴周围的旋转下保持不变。在基于设计的方法中,当垂直切片在垂直轴周围均匀旋转时,该方法提供了关于颗粒在垂直轴方向上伸长指数的信息。该方法已应用于人类脑组织,用于分析布罗德曼 46 区额内侧回第 III 层的神经元。在实际实施中,新的估计器显示出与基于光学旋转器设计的早期估计器类似的精度,但新估计器收集测量值的速度要快 3 倍。此外,确定新估计器所需的计算要简单得多。描述:本文描述了一种基于体视学法:平面旋转器的新方法,用于估计三维体张量。一般来说,体张量可以提供关于颗粒体积、形状和方向的信息。新的估计器已应用于人类脑组织,用于分析布罗德曼 46 区额内侧回第 III 层的神经元,并与基于光学旋转器设计的先前发表的方法进行了比较。新的估计器显示出与早期估计器类似的精度,但收集测量值的速度要快 3 倍。此外,新估计器背后的计算更简单,更容易实现到软件程序中。

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