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使用激光和CPMG采集对T2rho横向弛豫模型进行实验验证。

Experimental validation of a T2rho transverse relaxation model using LASER and CPMG acquisitions.

作者信息

Nikolova Simona, Bowen Chris V, Bartha Robert

机构信息

Imaging Research Laboratories, Robarts Research Institute, London, Ont., Canada N6A 5K8.

出版信息

J Magn Reson. 2006 Jul;181(1):35-44. doi: 10.1016/j.jmr.2006.03.013. Epub 2006 Apr 17.

Abstract

The transverse relaxation rate (R2=1/T2) of many biological tissues are altered by endogenous magnetized particles (i.e., ferritin, deoxyhemoglobin), and may be sensitive to the pathological progression of neurodegenerative disorders associated with altered brain-iron stores. R2 measurements using Carr-Purcell-Meiboom-Gill (CPMG) acquisitions are sensitive to the refocusing pulse interval (2taucp), and have been modeled as a chemical exchange (CE) process, while R2 measurements using a localization by adiabatic selective refocusing (LASER) sequence have an additional relaxation rate contribution that has been modeled as a R2rho process. However, no direct comparison of the R2 measured using these two sequences has been described for a controlled phantom model of magnetized particles. The three main objectives of this study were: (1) to compare the accuracy of R2 relaxation rate predictions from the CE model with experimental data acquired using a conventional CPMG sequence, (2) to compare R2 estimates obtained using LASER and CPMG acquisitions, and (3) to determine whether the CE model, modified to account for R2rho relaxation, adequately describes the R2 measured by LASER for a full range of taucp values. In all cases, our analysis was confined to spherical magnetic particles that satisfied the weak field regime. Three phantoms were produced that contained spherical magnetic particles (10 microm diameter polyamide powders) suspended in Gd-DTPA (1.0, 1.5, and 2.0 mmol/L) doped gel. Mono-exponential R2 measurements were made at 4T as a function of refocusing pulse interval. CPMG measurements of R2 agreed with CE model predictions while significant differences in R2 estimates were observed between LASER and CPMG measurements for short taucp acquisitions. The discrepancy between R2 estimates is shown to be attributable to contrast enhancement in LASER due to T2rho relaxation.

摘要

许多生物组织的横向弛豫率(R2 = 1/T2)会因内源性磁化颗粒(即铁蛋白、脱氧血红蛋白)而改变,并且可能对与脑铁储备改变相关的神经退行性疾病的病理进展敏感。使用Carr-Purcell-Meiboom-Gill(CPMG)采集进行的R2测量对重聚焦脉冲间隔(2taucp)敏感,并已被建模为化学交换(CE)过程,而使用绝热选择性重聚焦定位(LASER)序列进行的R2测量有一个额外的弛豫率贡献,已被建模为R2rho过程。然而,对于磁化颗粒的受控体模模型,尚未描述使用这两种序列测量的R2的直接比较。本研究的三个主要目标是:(1)将CE模型预测的R2弛豫率准确性与使用传统CPMG序列获取的实验数据进行比较,(2)比较使用LASER和CPMG采集获得的R2估计值,(3)确定修改后考虑R2rho弛豫的CE模型是否能充分描述在整个taucp值范围内LASER测量的R2。在所有情况下,我们的分析仅限于满足弱场条件的球形磁性颗粒。制备了三个体模,其中包含悬浮在掺杂Gd-DTPA(1.0、1.5和2.0 mmol/L)的凝胶中的球形磁性颗粒(直径10微米的聚酰胺粉末)。在4T下,作为重聚焦脉冲间隔的函数进行单指数R2测量。R2的CPMG测量结果与CE模型预测一致,而在短taucp采集时,LASER和CPMG测量的R2估计值存在显著差异。R2估计值之间的差异表明归因于LASER中由于T2rho弛豫导致的对比度增强。

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