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植物和食品的磁共振成像。

MRI of plants and foods.

机构信息

Laboratory of Biophysics, Wageningen University, Dreijenlaan 3, 6703 HA Wageningen, Netherlands.

出版信息

J Magn Reson. 2013 Apr;229:25-34. doi: 10.1016/j.jmr.2012.12.019. Epub 2013 Jan 9.

Abstract

The importance and prospects for MRI as applied to intact plants and to foods are presented in view of one of humanity's most pressing concerns, the sustainable and healthy feeding of a worldwide increasing population. Intact plants and foods have in common that their functionality is determined by complex multiple length scale architectures. Intact plants have an additional level of complexity since they are living systems which critically depend on transport and signalling processes between and within tissues and organs. The combination of recent cutting-edge technical advances and integration of MRI accessible parameters has the perspective to contribute to breakthroughs in understanding complex regulatory plant performance mechanisms. In food science and technology MRI allows for quantitative multi-length scale structural assessment of food systems, non-invasive monitoring of heat and mass transport during shelf-life and processing, and for a unique view on food properties under shear. These MRI applications are powerful enablers of rationally (re)designed food formulations and processes. Limitations and bottlenecks of the present plant and food MRI methods are mainly related to short T2 values and susceptibility artefacts originating from small air spaces in tissues/materials. We envisage cross-fertilisation of solutions to overcome these hurdles in MRI applications in plants and foods. For both application areas we witness a development where MRI is moving from highly specialised equipment to mobile and downscaled versions to be used by a broad user base in the field, greenhouse, food laboratory or factory.

摘要

鉴于人类最紧迫的问题之一,即如何可持续和健康地为全球不断增长的人口提供食物,本文介绍了 MRI 在完整植物和食品中的重要性和应用前景。完整的植物和食品有一个共同之处,即它们的功能是由复杂的多尺度结构决定的。完整的植物具有另外一个复杂程度,因为它们是生命系统,严重依赖于组织和器官之间以及内部的运输和信号传递过程。最近的前沿技术进步的结合以及可用于 MRI 的参数的整合,有望为理解复杂的植物调控性能机制方面的突破做出贡献。在食品科学和技术领域,MRI 允许对食品系统进行定量的多尺度结构评估,在保质期和加工过程中对热和质量传递进行非侵入式监测,并能在剪切下对食品特性进行独特的观察。这些 MRI 应用是合理(重新)设计食品配方和工艺的有力工具。目前植物和食品 MRI 方法的局限性和瓶颈主要与组织/材料中小气隙引起的短 T2 值和磁化率伪影有关。我们设想交叉施肥的解决方案,以克服植物和食品中 MRI 应用中的这些障碍。在这两个应用领域,我们都看到了 MRI 从高度专业化的设备向移动和小型化版本的发展,以便在现场、温室、食品实验室或工厂中更广泛的用户群体使用。

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