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X‐ray computed tomography and its potential in ecological research: A review of studies and optimization of specimen preparation

机译:X射线计算机断层扫描及其在生态学研究中的潜力:研究综述和标本制备的优化

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摘要

Imaging techniques are a cornerstone of contemporary biology. Over the last decades, advances in microscale imaging techniques have allowed fascinating new insights into cell and tissue morphology and internal anatomy of organisms across kingdoms. However, most studies so far provided snapshots of given reference taxa, describing organs and tissues under “idealized” conditions. Surprisingly, there is an almost complete lack of studies investigating how an organism′s internal morphology changes in response to environmental drivers. Consequently, ecology as a scientific discipline has so far almost neglected the possibilities arising from modern microscale imaging techniques. Here, we provide an overview of recent developments of X‐ray computed tomography as an affordable, simple method of high spatial resolution, allowing insights into three‐dimensional anatomy both in vivo and ex vivo. We review ecological studies using this technique to investigate the three‐dimensional internal structure of organisms. In addition, we provide practical comparisons between different preparation techniques for maximum contrast and tissue differentiation. In particular, we consider the novel modality of phase contrast by self‐interference of the X‐ray wave behind an object (i.e., phase contrast by free space propagation). Using the cricket Acheta domesticus (L.) as model organism, we found that the combination of FAE fixative and iodine staining provided the best results across different tissues. The drying technique also affected contrast and prevented artifacts in specific cases. Overall, we found that for the interests of ecological studies, X‐ray computed tomography is useful when the tissue or structure of interest has sufficient contrast that allows for an automatic or semiautomatic segmentation. In particular, we show that reconstruction schemes which exploit phase contrast can yield enhanced image quality. Combined with suitable specimen preparation and automated analysis, X‐ray CT can therefore become a promising quantitative 3D imaging technique to study organisms′ responses to environmental drivers, in both ecology and evolution.
机译:成像技术是当代生物学的基石。在过去的几十年中,微尺度成像技术的进步使人们对整个王国的生物的细胞和组织形态以及内部解剖学有了新的认识。但是,到目前为止,大多数研究都提供了给定参考分类单元的快照,描述了“理想化”条件下的器官和组织。令人惊讶的是,几乎没有研究来研究生物的内部形态如何响应环境驱动因素而变化的研究。因此,迄今为止,作为一门科学学科的生态学几乎忽略了现代微尺度成像技术带来的可能性。在此,我们概述了X射线计算机断层摄影技术的最新进展,它是一种可负担的,简单的高空间分辨率方法,可深入了解体内和体外的三维解剖结构。我们审查了使用这种技术的生态学研究,以研究生物的三维内部结构。此外,我们提供了不同制备技术之间的实际比较,以实现最大的对比度和组织分化。特别是,我们通过对象背后的X射线波的自干涉(即自由空间传播的相衬)来考虑相衬的新颖形式。使用the Acheta domesticus(L.)作为模型生物,我们发现FAE固定剂和碘染色的结合在不同组织中提供了最佳结果。干燥技术还影响对比度,并在特定情况下防止了伪影。总体而言,我们发现出于生态学研究的目的,当感兴趣的组织或结构具有足够的对比度以允许自动或半自动分割时,X射线计算机断层扫描非常有用。特别地,我们表明利用相位对比的重建方案可以产生增强的图像质量。因此,结合适当的标本制备和自动分析,X射线CT可以成为一种有前途的定量3D成像技术,用于研究生物在生态和进化方面对环境驱动因素的响应。

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