IF 1.5 4区 工程技术 Q3 MICROSCOPY
Julien Guizetti
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引用次数: 0

摘要

疾病是由细胞水平引起的这一观点对我们来说是如此重要,以至于我们可能会忘记显微镜在产生和发展这一观点时所发挥的关键作用。从视觉上识别病变或受感染的细胞,为遏制人类病变奠定了基础。自从发现导致疟疾的疟原虫感染红细胞以来,显微镜技术经历了令人印象深刻的发展,现在已经能够解析单个分子。这篇综述探讨了广阔的光学显微镜领域,重点是它在疟疾研究中的应用。成像技术改变了我们对生物系统的认识,然而,要驾驭复杂且不断增长的各种技术却令人望而生畏。本综述通过提供历史背景以及选择正确成像方法的实用建议,为研究人员,尤其是从事疟疾研究的人员提供了指南。综述提倡采用综合方法,在考虑样本制备、荧光团选择、成像模式和数据分析等关键因素的同时,优先考虑研究问题。除了介绍显微镜的开创性研究和创新应用外,该综述还突出了从白光显微镜等传统技术到超分辨率显微镜和延时成像等先进方法的广泛主题。该综述探讨了显微镜新出现的挑战,包括光毒性以及分辨率和速度之间的权衡,并对可能影响疟疾研究的未来技术提出了见解。这篇综述结合了历史视角、技术进步和实用指南,对显微镜新手和高级研究人员都有吸引力。它旨在激励疟疾研究人员探索可以丰富其研究的成像技术,从而通过加强对寄生虫的跨尺度和跨时间的视觉探索来推动这一领域的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Imaging malaria parasites across scales and time.

The idea that disease is caused at the cellular level is so fundamental to us that we might forget the critical role microscopy played in generating and developing this insight. Visually identifying diseased or infected cells lays the foundation for any effort to curb human pathology. Since the discovery of the Plasmodium-infected red blood cells, which cause malaria, microscopy has undergone an impressive development now literally resolving individual molecules. This review explores the expansive field of light microscopy, focusing on its application to malaria research. Imaging technologies have transformed our understanding of biological systems, yet navigating the complex and ever-growing landscape of techniques can be daunting. This review offers a guide for researchers, especially those working on malaria, by providing historical context as well as practical advice on selecting the right imaging approach. The review advocates an integrated methodology that prioritises the research question while considering key factors like sample preparation, fluorophore choice, imaging modality, and data analysis. In addition to presenting seminal studies and innovative applications of microscopy, the review highlights a broad range of topics, from traditional techniques like white light microscopy to advanced methods such as superresolution microscopy and time-lapse imaging. It addresses the emerging challenges of microscopy, including phototoxicity and trade-offs in resolution and speed, and offers insights into future technologies that might impact malaria research. This review offers a mix of historical perspective, technological progress, and practical guidance that appeal to novice and advanced microscopists alike. It aims to inspire malaria researchers to explore imaging techniques that could enrich their studies, thus advancing the field through enhanced visual exploration of the parasite across scales and time.

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来源期刊
Journal of microscopy
Journal of microscopy 工程技术-显微镜技术
CiteScore
4.30
自引率
5.00%
发文量
83
审稿时长
1 months
期刊介绍: The Journal of Microscopy is the oldest journal dedicated to the science of microscopy and the only peer-reviewed publication of the Royal Microscopical Society. It publishes papers that report on the very latest developments in microscopy such as advances in microscopy techniques or novel areas of application. The Journal does not seek to publish routine applications of microscopy or specimen preparation even though the submission may otherwise have a high scientific merit. The scope covers research in the physical and biological sciences and covers imaging methods using light, electrons, X-rays and other radiations as well as atomic force and near field techniques. Interdisciplinary research is welcome. Papers pertaining to microscopy are also welcomed on optical theory, spectroscopy, novel specimen preparation and manipulation methods and image recording, processing and analysis including dynamic analysis of living specimens. Publication types include full papers, hot topic fast tracked communications and review articles. Authors considering submitting a review article should contact the editorial office first.
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