Topological analysis of the three-dimensional radiodensity distribution of fish otoliths: Point sampling effects on dimensionality reduction

IF 2.5 3区 工程技术 Q1 MICROSCOPY Micron Pub Date : 2024-10-23 DOI:10.1016/j.micron.2024.103731
João Valerio , Jonas E. Vasconcelos-Filho , Borko Stosic , Wilson R. de Oliveira , Francisco M. Santana , Antonio C.D. Antonino , Paulo J. Duarte-Neto
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Abstract

Otoliths are calcified structures found in the inner ears of teleost fish, pivotal in marine biology for studies on metabolism, age, growth, and the identification of fish stocks, potentially leading to sustainable management practices. An important feature of this structure is its density, as it corresponds to modifications in the crystalline form of calcium carbonate during the fish's lifetime, resulting in variations in its final shape. The internal and external 3D radiodensity of otoliths from different species was obtained utilizing micro-computed tomography, however, an appropriate methodology for describing and conducting comparative studies on these data appears to be absent in the current body of literature. Therefore, we study otolith density variations from 3D computed tomography images, employing the Ball Mapper technique of Topological Data Analysis. We focus on reducing the computational cost of this analysis by applying probabilistic sampling and assessing its effects on the density variations provided by the Ball Mapper graph. To determine the sample size, we used the topology to establish what we term "Topological Sample Validation", which provided the minimum resolution with the same density information as raw data. Sample representativeness was validated through non-parametric statistical tests on the density variable. Based on the network's structural characteristics, network properties allowed for evaluating similarity between graphs. Besides the small sample size, remarkable correlations were obtained between age and network variables. Additionally, the Ball Mapper technique proved effective as a preprocessing algorithm for tomographic images, enabling the segmentation of undesired features in the object of interest.
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鱼耳石三维辐射强度分布的拓扑分析:点取样对降维的影响
耳石是在跃层鱼类内耳中发现的钙化结构,在海洋生物学中对新陈代谢、年龄、生长和鱼类种群鉴定等方面的研究至关重要,有可能促进可持续管理实践。这种结构的一个重要特征是其密度,因为它与鱼类一生中碳酸钙结晶形式的变化相对应,从而导致其最终形状的变化。利用微型计算机断层扫描技术获得了不同物种耳石的内部和外部三维放射密度,但是,目前的文献中似乎还没有一种适当的方法来描述这些数据并对其进行比较研究。因此,我们采用拓扑数据分析中的球形映射器技术,研究三维计算机断层扫描图像中的耳石密度变化。我们的重点是通过应用概率采样来降低该分析的计算成本,并评估其对 Ball Mapper 图形提供的密度变化的影响。为了确定样本大小,我们利用拓扑结构建立了所谓的 "拓扑样本验证",它提供了与原始数据相同密度信息的最小分辨率。样本的代表性通过密度变量的非参数统计检验来验证。根据网络的结构特征,网络属性可以评估图形之间的相似性。除了样本量较小之外,年龄和网络变量之间也存在显著的相关性。此外,Ball Mapper 技术作为断层扫描图像的预处理算法被证明是有效的,可以分割感兴趣对象中不需要的特征。
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来源期刊
Micron
Micron 工程技术-显微镜技术
CiteScore
4.30
自引率
4.20%
发文量
100
审稿时长
31 days
期刊介绍: Micron is an interdisciplinary forum for all work that involves new applications of microscopy or where advanced microscopy plays a central role. The journal will publish on the design, methods, application, practice or theory of microscopy and microanalysis, including reports on optical, electron-beam, X-ray microtomography, and scanning-probe systems. It also aims at the regular publication of review papers, short communications, as well as thematic issues on contemporary developments in microscopy and microanalysis. The journal embraces original research in which microscopy has contributed significantly to knowledge in biology, life science, nanoscience and nanotechnology, materials science and engineering.
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