Soustelle Lucas, Antal Maria Cristina, Lamy Julien, Harsan Laura-Adela, Loureiro de Sousa Paulo
ICube, Université de Strasbourg, CNRS, Strasbourg, France.
Aix Marseille University, CNRS, CRMBM, Marseille, France.
Magn Reson Med. 2021 Jan;85(1):369-379. doi: 10.1002/mrm.28397. Epub 2020 Jul 27.
To determine optimal constrained tissue parameters and off-resonance sequence parameters for single-point macromolecular proton fraction (SP-MPF) mapping based on a comprehensive quantitative magnetization transfer (qMT) protocol in healthy and demyelinated living mice at 7T.
Using 3D spoiled gradient echo-based sequences, a comprehensive qMT protocol is performed by sampling the Z-spectrum of mice brains, in vivo. Provided additional T , and B maps allow for the estimation of qMT tissue parameters, among which three will be constrained, namely the longitudinal and transverse relaxation characteristics of the free pool (R T ), the cross-relaxation rate (R) and the bound pool transverse relaxation time (T ). Different sets of constrained parameters are investigated to reduce the bias between the SP-MPF and its reference based on the comprehensive protocol.
Based on a whole-brain histogram analysis about the constrained parameters, the optimal experimental parameters that minimize the global bias between reference and SP-MPF maps consist of a 600° and 6 kHz off-resonance irradiation pulse. Following a Bland-Altman analysis over regions of interest, optimal constrained parameters were R T = 0.0129, R = 26.5 s , and T = 9.1 µs, yielding an overall MPF bias of 10 (limits of agreement [-0.0068;0.0070]) and a relative variation of 0.64% ± 5.95% between the reference and the optimal single-point method across all mice.
The necessity of estimating animal model- and field-dependent constrained parameters was demonstrated. The single-point MPF method can be reliably applied at 7T, as part of routine preclinical in vivo imaging protocol in mice.
基于全面定量磁化转移(qMT)协议,确定在7T条件下健康和脱髓鞘活体小鼠中用于单点大分子质子分数(SP-MPF)成像的最佳受限组织参数和失谐序列参数。
使用基于三维扰相梯度回波的序列,通过在体采样小鼠脑的Z谱来执行全面的qMT协议。提供额外的T、 和B图以估计qMT组织参数,其中三个参数将受到限制,即自由池的纵向和横向弛豫特性(R T)、交叉弛豫率(R)和结合池横向弛豫时间(T)。研究不同组的受限参数,以基于全面协议减少SP-MPF与其参考值之间的偏差。
基于对受限参数的全脑直方图分析,使参考图和SP-MPF图之间的整体偏差最小化的最佳实验参数包括600°和6kHz的失谐照射脉冲。在感兴趣区域进行Bland-Altman分析后,最佳受限参数为R T = 0.0129,R = 26.5 s ,T = 9.1 μs,在所有小鼠中,参考值与最佳单点方法之间的总体MPF偏差为10(一致性界限[-0.0068;0.0070]),相对变化为0.64%±5.95%。
证明了估计动物模型和场强相关受限参数的必要性。单点MPF方法可在7T条件下可靠应用,作为小鼠常规临床前体内成像协议的一部分。