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国际磁共振医学学会(ISMRM)扩散研究小组关于临床前扩散磁共振成像的考量与建议:第2部分——离体成像:附加价值与采集

Considerations and recommendations from the ISMRM diffusion study group for preclinical diffusion MRI: Part 2-Ex vivo imaging: Added value and acquisition.

作者信息

Schilling Kurt G, Grussu Francesco, Ianus Andrada, Hansen Brian, Howard Amy F D, Barrett Rachel L C, Aggarwal Manisha, Michielse Stijn, Nasrallah Fatima, Syeda Warda, Wang Nian, Veraart Jelle, Roebroeck Alard, Bagdasarian Andrew F, Eichner Cornelius, Sepehrband Farshid, Zimmermann Jan, Soustelle Lucas, Bowman Christien, Tendler Benjamin C, Hertanu Andreea, Jeurissen Ben, Verhoye Marleen, Frydman Lucio, van de Looij Yohan, Hike David, Dunn Jeff F, Miller Karla, Landman Bennett A, Shemesh Noam, Anderson Adam, McKinnon Emilie, Farquharson Shawna, Dell'Acqua Flavio, Pierpaoli Carlo, Drobnjak Ivana, Leemans Alexander, Harkins Kevin D, Descoteaux Maxime, Xu Duan, Huang Hao, Santin Mathieu D, Grant Samuel C, Obenaus Andre, Kim Gene S, Wu Dan, Le Bihan Denis, Blackband Stephen J, Ciobanu Luisa, Fieremans Els, Bai Ruiliang, Leergaard Trygve B, Zhang Jiangyang, Dyrby Tim B, Johnson G Allan, Cohen-Adad Julien, Budde Matthew D, Jelescu Ileana O

机构信息

Radiology and Radiological Sciences, Vanderbilt University Medical Center, Nashville, Tennessee, USA.

Vanderbilt University Institute of Imaging Science, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

Magn Reson Med. 2025 Jun;93(6):2535-2560. doi: 10.1002/mrm.30435. Epub 2025 Mar 4.

Abstract

The value of preclinical diffusion MRI (dMRI) is substantial. While dMRI enables in vivo non-invasive characterization of tissue, ex vivo dMRI is increasingly being used to probe tissue microstructure and brain connectivity. Ex vivo dMRI has several experimental advantages including higher SNR and spatial resolution compared to in vivo studies, and enabling more advanced diffusion contrasts for improved microstructure and connectivity characterization. Another major advantage of ex vivo dMRI is the direct comparison with histological data, as a crucial methodological validation. However, there are a number of considerations that must be made when performing ex vivo experiments. The steps from tissue preparation, image acquisition and processing, and interpretation of results are complex, with many decisions that not only differ dramatically from in vivo imaging of small animals, but ultimately affect what questions can be answered using the data. This work represents "Part 2" of a three-part series of recommendations and considerations for preclinical dMRI. We describe best practices for dMRI of ex vivo tissue, with a focus on the value that ex vivo imaging adds to the field of dMRI and considerations in ex vivo image acquisition. We first give general considerations and foundational knowledge that must be considered when designing experiments. We briefly describe differences in specimens and models and discuss why some may be more or less appropriate for different studies. We then give guidelines for ex vivo protocols, including tissue fixation, sample preparation, and MR scanning. In each section, we attempt to provide guidelines and recommendations, but also highlight areas for which no guidelines exist (and why), and where future work should lie. An overarching goal herein is to enhance the rigor and reproducibility of ex vivo dMRI acquisitions and analyses, and thereby advance biomedical knowledge.

摘要

临床前扩散磁共振成像(dMRI)的价值巨大。虽然dMRI能够对组织进行体内非侵入性表征,但离体dMRI越来越多地被用于探究组织微观结构和脑连接性。与体内研究相比,离体dMRI具有几个实验优势,包括更高的信噪比和空间分辨率,并且能够实现更先进的扩散对比,以改善微观结构和连接性表征。离体dMRI的另一个主要优势是可以与组织学数据进行直接比较,这是一项关键的方法学验证。然而,在进行离体实验时必须考虑许多因素。从组织制备、图像采集与处理到结果解读的步骤都很复杂,有许多决策不仅与小动物体内成像有很大不同,而且最终会影响利用这些数据能够回答的问题。这项工作是临床前dMRI三部分系列建议与考量中的“第二部分”。我们描述了离体组织dMRI的最佳实践,重点关注离体成像为dMRI领域带来的价值以及离体图像采集方面的考量。我们首先给出设计实验时必须考虑的一般考量和基础知识。我们简要描述样本和模型的差异,并讨论为什么有些可能更适合或不太适合不同的研究。然后我们给出离体实验方案的指导原则,包括组织固定、样本制备和磁共振扫描。在每个部分,我们都试图提供指导原则和建议,但也会突出尚无指导原则的领域(以及原因),以及未来工作的方向。本文的一个总体目标是提高离体dMRI采集和分析的严谨性与可重复性,从而推动生物医学知识的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f63/11971501/75e37907fbea/MRM-93-2535-g004.jpg

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