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同步加速器断层扫描技术在农业与食品科学研究中的应用:综述

Synchrotron tomography applications in agriculture and food sciences research: a review.

作者信息

Indore Navnath S, Karunakaran Chithra, Jayas Digvir S

机构信息

Biosystem Engineering, University of Manitoba, Winnipeg, MB, R3T 5V6, Canada.

Canadian Light Source Inc., Saskatoon, SK, S7N 2V3, Canada.

出版信息

Plant Methods. 2022 Aug 13;18(1):101. doi: 10.1186/s13007-022-00932-9.

Abstract

Synchrotron imaging is widely used for research in many scientific disciplines. This article introduces the characteristics of synchrotron X-ray imaging and its applications in agriculture and food science research. The agriculture and food sector are a vast area that comprises of plants, seeds, animals, food and their products; soils with thriving microbial communities; and natural resources such as water, fertilizers, and organic matter. These entities have unique internal features, structures and compositions which differentiate them from each other in varieties, species, grades, and types. The use of a bright and tuneable monochromatic source of synchrotron imaging techniques enables researchers to study the internal features and compositions of plants, seeds, soil and food in a quick and non-destructive way to enhance their use, conservation and productivity. Synchrotron's different X-ray imaging techniques offer a wide domain of applications, which make them perfect to enhance the understanding of structures of raw and processed food products to promote food safety and security. Therefore, this paper summarizes the results of major experiments carried out with seeds, plants, soil, food and relevant areas of agricultural sciences with more emphasis on two synchrotron X-ray imaging techniques: absorption and phase-contrast imaging and computed tomography.

摘要

同步辐射成像在许多科学学科的研究中被广泛应用。本文介绍了同步辐射X射线成像的特点及其在农业和食品科学研究中的应用。农业和食品领域是一个广阔的领域,包括植物、种子、动物、食品及其产品;拥有丰富微生物群落的土壤;以及水、肥料和有机物等自然资源。这些实体具有独特的内部特征、结构和组成,它们在品种、物种、等级和类型上相互区别。使用明亮且可调谐的同步辐射成像技术单色光源,使研究人员能够以快速且无损的方式研究植物、种子、土壤和食品的内部特征和组成,以提高它们的利用、保护和生产力。同步辐射的不同X射线成像技术提供了广泛的应用领域,这使得它们非常适合增强对生鲜和加工食品产品结构的理解,以促进食品安全和保障。因此,本文总结了在种子、植物、土壤、食品以及农业科学相关领域进行的主要实验结果,更侧重于两种同步辐射X射线成像技术:吸收成像和相衬成像以及计算机断层扫描。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75ec/9375343/c12a05943225/13007_2022_932_Fig1_HTML.jpg

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