关于成核器的精度

IF 0.8 4区 计算机科学 Q4 IMAGING SCIENCE & PHOTOGRAPHIC TECHNOLOGY Image Analysis & Stereology Pub Date : 2017-06-23 DOI:10.5566/IAS.1671
Javier González-Villa, M. Cruz, L. Cruz-Orive
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引用次数: 5

摘要

核子是一种局部立体学的设计无偏方法,用于估计有界物体的体积。唯一需要的信息是物体与从与物体相关的固定点(称为枢纽点)发出的各向同性随机射线的交点。例如,神经元的体积可以通过从其核仁发出的随机射线来估计。成核剂因其高效、易于应用而广泛应用于生物科学领域。估计器的方差可以通过增加射线的数量来减小。在较早的一篇论文中,提出了系统抽样设计,并推导了相应体积估计的理论方差预测因子。作为迄今为止唯一可用于成核器的方差预测器,我们的基本目标是通过对真实物体的计算机重建进行蒙特卡罗重采样来检查它们的统计性能。另外,体积估计器的经验分布揭示了实际相关的统计特性。
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ON THE PRECISION OF THE NUCLEATOR
The nucleator is a design unbiased method of local stereology for estimating the volume of a bounded object. The only information required lies in the intersection of the object with an isotropic random ray emanating from a fixed point (called the pivotal point) associated with the object. For instance, the volume of a neuron can be estimated from a random ray emanating from its nucleolus. The nucleator is extensively used in biosciences because it is efficient and easy to apply. The estimator variance can be reduced by increasing the number of rays. In an earlier paper a systematic sampling design was proposed, and theoretical variance predictors were derived, for the corresponding volume estimator. Being the only variance predictors hitherto available for the nucleator, our basic goal was to check their statistical performance by means of Monte Carlo resampling on computer reconstructions of real objects. As a plus, the empirical distribution of the volume estimator revealed statistical properties of practical relevance.
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来源期刊
Image Analysis & Stereology
Image Analysis & Stereology MATERIALS SCIENCE, MULTIDISCIPLINARY-MATHEMATICS, APPLIED
CiteScore
2.00
自引率
0.00%
发文量
7
审稿时长
>12 weeks
期刊介绍: Image Analysis and Stereology is the official journal of the International Society for Stereology & Image Analysis. It promotes the exchange of scientific, technical, organizational and other information on the quantitative analysis of data having a geometrical structure, including stereology, differential geometry, image analysis, image processing, mathematical morphology, stochastic geometry, statistics, pattern recognition, and related topics. The fields of application are not restricted and range from biomedicine, materials sciences and physics to geology and geography.
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