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固定脑组织中大分子质子分数和各向异性分数的发育和区域依赖性。

Developmental and regional dependence of macromolecular proton fraction and fractional anisotropy in fixed brain tissue.

机构信息

Department of Pediatrics, NorthShore University HealthSystem Research Institute, Evanston, IL, USA.

Department of Radiology, University of Washington, Seattle, WA, USA.

出版信息

NMR Biomed. 2023 Jul;36(7):e4915. doi: 10.1002/nbm.4915. Epub 2023 Mar 22.

Abstract

An important advantage of imaging fixed tissue is a gain in signal-to-noise ratio and in resolution due to unlimited scan time. However, the fidelity of quantitative MRI parameters in fixed brain tissue, particularly in developmental settings, requires validation. Macromolecular proton fraction (MPF) and fractional anisotropy (FA) indices are quantitative markers of myelination and axonal integrity relevant to preclinical and clinical research. The goal of this study was to assert the correspondence of MR-derived markers of brain development MPF and FA between in vivo and fixed tissue measures. MPF and FA were compared in several white and gray matter structures of the normal mouse brain at 2, 4, and 12 weeks of age. At each developmental stage, in vivo imaging was performed, followed by paraformaldehyde fixation and a second imaging session. MPF maps were acquired from three source images (magnetization transfer weighted, proton density weighted, and T weighted), and FA was obtained from diffusion tensor imaging. The MPF and FA values, measured in the cortex, striatum, and major fiber tracts, were compared before and after fixation using Bland-Altman plots, regression analysis, and analysis of variance. MPF values of the fixed tissue were consistently greater than those from in vivo measurements. Importantly, this bias varied significantly with brain region and the developmental stage of the tissue. At the same time, FA values were preserved after fixation, across tissue types and developmental stages. The results of this study suggest that MPF and FA in fixed brain tissue can be used as a proxy for in vivo measurements, but additional considerations should be made to correct for the bias in MPF.

摘要

固定组织成像的一个重要优势是由于扫描时间不受限制,因此信号噪声比和分辨率提高。然而,固定脑组织中定量 MRI 参数的准确性,尤其是在发育环境中,需要验证。大分子质子分数 (MPF) 和各向异性分数 (FA) 指数是髓鞘形成和轴突完整性的定量标志物,与临床前和临床研究相关。本研究的目的是证明体内和固定组织测量之间脑发育 MPF 和 FA 的 MR 衍生标志物的一致性。在 2、4 和 12 周龄的正常小鼠脑的几个白质和灰质结构中比较了 MPF 和 FA。在每个发育阶段,进行体内成像,然后进行多聚甲醛固定和第二次成像。从三个源图像(磁化传递加权、质子密度加权和 T 加权)获得 MPF 图,从弥散张量成像获得 FA。使用 Bland-Altman 图、回归分析和方差分析比较皮质、纹状体和主要纤维束中固定组织和体内测量的 MPF 和 FA 值。固定组织的 MPF 值始终大于体内测量值。重要的是,这种偏差随脑区和组织的发育阶段而显著变化。同时,FA 值在固定组织和不同的发育阶段后都能保留。这项研究的结果表明,固定脑组织中的 MPF 和 FA 可以作为体内测量的替代物,但应考虑使用 MPF 进行偏差校正。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ac/11293180/d553deaf4211/nihms-2010173-f0001.jpg

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Formalin tissue fixation biases myelin-sensitive MRI.福尔马林组织固定会使髓鞘敏感 MRI 产生偏差。
Magn Reson Med. 2019 Oct;82(4):1504-1517. doi: 10.1002/mrm.27821. Epub 2019 May 24.

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