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计算机生成的卵巢用于辅助卵泡计数实验。

Computer-generated ovaries to assist follicle counting experiments.

作者信息

Skodras Angelos, Marcelli Gianluca

机构信息

German Centre for Neurodegenerative Diseases (DZNE), Tübingen, Germany.

School of Engineering and Digital Arts, University of Kent, Canterbury, United Kingdom.

出版信息

PLoS One. 2015 Mar 26;10(3):e0120242. doi: 10.1371/journal.pone.0120242. eCollection 2015.

Abstract

Precise estimation of the number of follicles in ovaries is of key importance in the field of reproductive biology, both from a developmental point of view, where follicle numbers are determined at specific time points, as well as from a therapeutic perspective, determining the adverse effects of environmental toxins and cancer chemotherapeutics on the reproductive system. The two main factors affecting follicle number estimates are the sampling method and the variation in follicle numbers within animals of the same strain, due to biological variability. This study aims at assessing the effect of these two factors, when estimating ovarian follicle numbers of neonatal mice. We developed computer algorithms, which generate models of neonatal mouse ovaries (simulated ovaries), with characteristics derived from experimental measurements already available in the published literature. The simulated ovaries are used to reproduce in-silico counting experiments based on unbiased stereological techniques; the proposed approach provides the necessary number of ovaries and sampling frequency to be used in the experiments given a specific biological variability and a desirable degree of accuracy. The simulated ovary is a novel, versatile tool which can be used in the planning phase of experiments to estimate the expected number of animals and workload, ensuring appropriate statistical power of the resulting measurements. Moreover, the idea of the simulated ovary can be applied to other organs made up of large numbers of individual functional units.

摘要

精确估计卵巢中的卵泡数量在生殖生物学领域至关重要,这既从发育的角度来看,卵泡数量在特定时间点被确定,也从治疗的角度来看,确定环境毒素和癌症化疗药物对生殖系统的不良影响。影响卵泡数量估计的两个主要因素是采样方法以及由于生物变异性导致的同一品系动物体内卵泡数量的变化。本研究旨在评估这两个因素在估计新生小鼠卵巢卵泡数量时的影响。我们开发了计算机算法,这些算法生成新生小鼠卵巢模型(模拟卵巢),其特征源自已发表文献中现有的实验测量数据。模拟卵巢用于基于无偏立体学技术进行计算机模拟计数实验;所提出的方法给出了在特定生物变异性和期望的准确度下实验中要使用的卵巢数量和采样频率。模拟卵巢是一种新颖、通用的工具,可用于实验的规划阶段,以估计预期的动物数量和工作量,确保所得测量结果具有适当的统计效力。此外,模拟卵巢的概念可应用于由大量单个功能单元组成的其他器官。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29b5/4374836/f710e771e2cc/pone.0120242.g001.jpg

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