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3T MRI 下基于化学交换饱和传递的乳酸加权成像:全面的计算机模拟、体外、原位和体内评估。

Chemical Exchange Saturation Transfer for Lactate-Weighted Imaging at 3 T MRI: Comprehensive In Silico, In Vitro, In Situ, and In Vivo Evaluations.

机构信息

Department of Diagnostic and Interventional Radiology, Medical Faculty, University Dusseldorf, D-40225 Dusseldorf, Germany.

Siemens Healthcare GmbH, D-91052 Erlangen, Germany.

出版信息

Tomography. 2022 May 7;8(3):1277-1292. doi: 10.3390/tomography8030106.

Abstract

Based on in silico, in vitro, in situ, and in vivo evaluations, this study aims to establish and optimize the chemical exchange saturation transfer (CEST) imaging of lactate (Lactate-CEST—LATEST). To this end, we optimized LATEST sequences using Bloch−McConnell simulations for optimal detection of lactate with a clinical 3 T MRI scanner. The optimized sequences were used to image variable lactate concentrations in vitro (using phantom measurements), in situ (using nine human cadaveric lower leg specimens), and in vivo (using four healthy volunteers after exertional exercise) that were then statistically analyzed using the non-parametric Friedman test and Kendall Tau-b rank correlation. Within the simulated Bloch−McConnell equations framework, the magnetization transfer ratio asymmetry (MTRasym) value was quantified as 0.4% in the lactate-specific range of 0.5−1 ppm, both in vitro and in situ, and served as the imaging surrogate of the lactate level. In situ, significant differences (p < 0.001) and strong correlations (τ = 0.67) were observed between the MTRasym values and standardized intra-muscular lactate concentrations. In vivo, a temporary increase in the MTRasym values was detected after exertional exercise. In this bench-to-bedside comprehensive feasibility study, different lactate concentrations were detected using an optimized LATEST imaging protocol in vitro, in situ, and in vivo at 3 T, which prospectively paves the way towards non-invasive quantification and monitoring of lactate levels across a broad spectrum of diseases.

摘要

基于计算机模拟、体外、原位和体内评估,本研究旨在建立和优化乳酸的化学交换饱和转移(CEST)成像(Lactate-CEST—LATEST)。为此,我们使用 Bloch-McConnell 模拟优化了 LATEST 序列,以在临床 3T MRI 扫描仪上最佳地检测乳酸。优化后的序列用于在体外(使用体模测量)、原位(使用九个人体小腿尸体标本)和体内(使用四名健康志愿者进行运动后)成像可变的乳酸浓度,然后使用非参数 Friedman 检验和 Kendall Tau-b 秩相关进行统计分析。在模拟的 Bloch-McConnell 方程框架内,在体外和原位,乳酸特异性范围内(0.5-1 ppm)的磁化转移比不对称(MTRasym)值量化为 0.4%,作为乳酸水平的成像替代物。在原位,MTRasym 值与标准化肌内乳酸浓度之间存在显著差异(p < 0.001)和强相关性(τ=0.67)。在体内,运动后检测到 MTRasym 值暂时增加。在这项从实验室到临床的全面可行性研究中,在 3T 下使用优化的 LATEST 成像方案在体外、原位和体内检测到不同的乳酸浓度,为在广泛的疾病中进行非侵入性的乳酸水平定量和监测铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df73/9149919/41216882ad13/tomography-08-00106-g001.jpg

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