FUJIFILM VisualSonics, Inc, Amsterdam, The Netherlands.
Institute for Laboratory Animal Science, Hannover Medical School, Hannover, Germany.
Methods Mol Biol. 2021;2216:109-130. doi: 10.1007/978-1-0716-0978-1_7.
Noninvasive, robust, and reproducible methods to image kidneys are provided by different imaging modalities. A combination of modalities (multimodality) can give better insight into structure and function and to understand the physiology of the kidney. Magnetic resonance imaging can be complemented by a multimodal imaging approach to obtain additional information or include interventional procedures. In the clinic, renal ultrasound has been essential for the diagnosis and management of kidney disease and for the guidance of invasive procedures for a long time. Adapting ultrasound to preclinical requirements and for translational research, the combination with photoacoustic imaging expands the capabilities to obtain anatomical, functional, and molecular information from animal models. This chapter describes the basic concepts of how to image kidneys using different and most appropriate modalities.This chapter is based upon work from the COST Action PARENCHIMA, a community-driven network funded by the European Cooperation in Science and Technology (COST) program of the European Union, which aims to improve the reproducibility and standardization of renal MRI biomarkers. This introduction chapter is complemented by two separate chapters describing the experimental procedure and data analysis.
不同的成像方式为肾脏成像提供了非侵入性、稳健且可重复的方法。多种模式的结合(多模态)可以更好地了解结构和功能,并理解肾脏的生理学。磁共振成像可以通过多模态成像方法来补充,以获得额外的信息或包括介入程序。在临床上,肾脏超声长期以来一直是诊断和治疗肾脏疾病以及指导有创程序的重要手段。为了适应临床前的要求和转化研究,将超声与光声成像相结合,扩展了从动物模型获取解剖学、功能和分子信息的能力。本章描述了使用不同且最合适的方式对肾脏进行成像的基本概念。
本章基于 COST 行动 PARENCHIMA 的工作,这是一个由欧洲合作科学技术(COST)计划资助的社区驱动网络,旨在提高肾脏 MRI 生物标志物的可重复性和标准化。这篇引言章节由另外两章补充,分别描述了实验程序和数据分析。