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猪半月板 1H 超短 T2* 和 T2 的体外定位图。

In vitro mapping of 1H ultrashort T2* and T2 of porcine menisci.

机构信息

Department of Computer Assisted Clinical Medicine, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.

出版信息

NMR Biomed. 2013 Sep;26(9):1167-75. doi: 10.1002/nbm.2931. Epub 2013 Mar 18.

Abstract

In this study, mapping of ultrashort T2 and T2* of acutely isolated porcine menisci at B0 = 9.4 T was investigated. Maps of T2 were measured from a slice through the pars intermedia with a spin echo-prepared two-dimensional ultrashort-TE T2 mapping technique published previously. T2* mapping was performed by two-dimensional ultrashort-TE MRI with variable acquisition delay. The measured signal decays were fitted by monoexponential, biexponential and Gaussian-exponential fitting functions. The occurrence of Gaussian-like signal decays is outlined theoretically. The quality of the curve fits was visualized by mapping the value δ = abs(1 - χ(2) red). For T2 mapping, the Gaussian-exponential fit showed the best performance, whereas the monoexponential and biexponential fits showed regionally high values of δ (δ > 20). Interpretation of the Gaussian-exponential parameter maps was found to be difficult, because a Gaussian signal component can be related to mesoscopic (collagen texture) or macroscopic (slice profile, shim, sample geometry) magnetic field inhomogeneities and/or residual (1) H dipole-dipole couplings. It seems likely that an interplay of these effects yielded the observed signal decays. Modulation of the T2* signal decay caused by chemical shift was observed and addressed to fat protons by means of histology. In the T2 measurements, no modulation of the signal decay was observed and the biexponential and Gaussian-exponential fits showed the best performance with comparable values of δ. Our results suggest that T2 mapping provides the more robust method for the characterization of meniscal tissue by means of MRI relaxometry. However, mapping of ultrashort T2, as performed in this study, is time consuming and provides less signal-to-noise ratio per time than the mapping of T2*. If T2* mapping is used, pixel-wise monitoring of the fitting quality based on reduced χ(2) should be employed and great care should be taken when interpreting the parameter maps of the fits.

摘要

在这项研究中,我们研究了在 B0 = 9.4 T 下急性分离猪半月板的超短 T2 和 T2的映射。使用先前发表的自旋回波准备二维超短 TE T2 映射技术,从穿过中间部分的切片测量 T2 图。通过二维超短 TE MRI 进行 T2 映射,并具有可变采集延迟。通过单指数、双指数和高斯指数拟合函数拟合测量的信号衰减。从理论上概述了高斯样信号衰减的发生。通过映射值 δ = abs(1 - χ(2) red)可视化曲线拟合的质量。对于 T2 映射,高斯指数拟合表现出最佳性能,而单指数和双指数拟合表现出局部高值的 δ(δ>20)。发现高斯指数参数图的解释很困难,因为高斯信号分量可能与介观(胶原纹理)或宏观(切片轮廓、补偿、样品几何形状)磁场不均匀性和/或残留(1)H 偶极子偶极子耦合有关。似乎这些效应的相互作用产生了观察到的信号衰减。通过组织学观察到化学位移引起的 T2信号衰减的调制,并针对脂肪质子进行了处理。在 T2 测量中,没有观察到信号衰减的调制,双指数和高斯指数拟合表现出最佳性能,δ 值相当。我们的结果表明,T2 映射通过 MRI 弛豫测量为半月板组织的特征提供了更稳健的方法。然而,如本研究中进行的超短 T2 映射既耗时又比 T2 映射提供的信噪比低。如果使用 T2* 映射,则应基于减小的 χ(2)逐像素监测拟合质量,并在解释拟合参数图时应格外小心。

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