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成年斑马鱼脑的磁共振组织学:固定和钆对比增强的优化。

Magnetic resonance histology of the adult zebrafish brain: optimization of fixation and gadolinium contrast enhancement.

机构信息

School of Biomedical Sciences, University of Queensland, Brisbane Qld, Australia.

出版信息

NMR Biomed. 2010 May;23(4):341-6. doi: 10.1002/nbm.1465. Epub 2009 Nov 30.

DOI:10.1002/nbm.1465
PMID:19950106
Abstract

Magnetic resonance histology (MRH) has become a widespread tool to examine brain morphology in situ or ex vivo. Samples are routinely fixed and stained to allow for longer scan times with increased contrast and resolution. Although the zebrafish is an important model for neuroscience, to date most MRH studies have focused almost exclusively on mice. In this paper, we examined, for the first time, the zebrafish brain using MRH. We compared a range of fixatives, contrast agents, and fixation/staining durations to determine optimal imaging of the zebrafish brain. By quantifying the T(1), T(2), and T(2)* relaxation values, we demonstrated that ethanol and potassium permanganate are unviable for imaging and significant differences exist between mono and di-aldehydes. Furthermore, we compared two commercially available gadolinium-based contrast agents, Magnevist® and Optimark®, at five different concentrations. For both contrast agents, a concentration of 0.5% was determined to be ideal as it significantly shortened the T(1) but maintained a relatively long T(2) and T(2). Subsequently, we analyzed the duration of fixation/staining and established a period of 12 h, which best minimized T(1) values but maintained T(2) and T(2) values. Finally, using this optimized fixation and staining protocol, we performed a gradient-echo T(2)*-weighted imaging to obtain an image set of the adult zebrafish brain at an isotropic resolution of 10 µm.

摘要

磁共振组织学(MRH)已成为一种广泛用于原位或离体检查大脑形态的工具。为了增加对比度和分辨率以允许更长的扫描时间,通常对样本进行固定和染色。尽管斑马鱼是神经科学的重要模型,但迄今为止,大多数 MRH 研究几乎都专门针对小鼠。在本文中,我们首次使用 MRH 检查了斑马鱼的大脑。我们比较了一系列固定剂、对比剂和固定/染色时间,以确定斑马鱼大脑的最佳成像方法。通过量化 T(1)、T(2)和 T(2)弛豫值,我们证明乙醇和高锰酸钾不适合成像,并且单醛和二醛之间存在显著差异。此外,我们比较了两种市售的基于钆的对比剂,Magnevist®和Optimark®,在五个不同浓度下。对于这两种对比剂,确定 0.5%的浓度是理想的,因为它显著缩短了 T(1),但保持了相对较长的 T(2)和 T(2)。随后,我们分析了固定/染色的持续时间,并确定了 12 小时的最佳时间,该时间最大限度地减少了 T(1)值,但保持了 T(2)和 T(2)*值。最后,使用这种优化的固定和染色方案,我们进行了梯度回波 T(2)*加权成像,以获得具有 10 µm 各向同性分辨率的成年斑马鱼大脑的图像集。

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