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首页> 外文期刊>Journal of magnetic resonance >Water diffusion-exchange effect on the paramagnetic relaxation enhancement in off-resonance rotating frame
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Water diffusion-exchange effect on the paramagnetic relaxation enhancement in off-resonance rotating frame

机译:水扩散交换对失谐旋转框架中顺磁弛豫增强的影响

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The off-resonance rotating frame technique based on the spin relaxation properties of off-resonance T-1p can significantly increase the sensitivity of detecting paramagnetic labeling at high magnetic fields by MRI. However, the in vivo detectable dimension for labeled cell clusters/tissues in T-1p-weighted images is limited by the water diffusion-exchange between mesoscopic scale compartments. An experimental investigation of the effect of water diffusion-exchange between compartments on the paramagnetic relaxation enhancement of paramagnetic agent compartment is presented for in vitro/in vivo models. In these models, the size of paramagnetic agent compartment is comparable to the mean diffusion displacement of water molecules during the long RF pulses that are used to generate the off-resonance rotating frame. The three main objectives of this study were: (1) to qualitatively correlate the effect of water diffusion-exchange with the RF parameters of the long pulse and the rates of water diffusion, (2) to explore the effect of water diffusion-exchange on the paramagnetic relaxation enhancement in vitro, and (3) to demonstrate the paramagnetic relaxation enhancement it? vivo. The in vitro models include the water permeable dialysis tubes or water permeable hollow fibers embedded in cross-linked proteins gels. The MWCO of the dialysis tubes was chosen from 0.1 to 15 kDa to control the water diffusion rate. Thin hollow fibers were chosen to provide sub-millimeter scale compartments for the paramagnetic agents. The in vivo model utilized the rat cerebral vasculatures as a paramagnetic agent compartment, and intravascular agents (Gd-DTPA)(30)-BSA were administrated into the compartment via bolus injections. Both in vitro and in vivo results demonstrate that the paramagnetic relaxation enhancement is predominant in the T-1p-weighted image in the presence of water diffusion-exchange. The T-1p contrast has substantially higher sensitivity than the conventional T-1p contrast in detecting paramagnetic agents, especially at low paramagnetic agent volumetric fractions, low paramagnetic agent concentrations, and low RF amplitudes. Short pulse duration, short pulse recycle delay and efficient paramagnetic relaxation can reduce the influence of water diffusion-exchange on the paramagnetic enhancement. This study paves the way for the design of off-resonance rotating experiments to detect labeled cell clusters/tissue compartments in vivo at a sub-millimeter scale. (c) 2007 Elsevier Inc. All rights reserved.
机译:基于非共振T-1p自旋弛豫特性的非共振旋转框架技术可以显着提高MRI检测高磁场下顺磁性标记的灵敏度。但是,T-1p加权图像中标记细胞簇/组织的体内可检测尺寸受到介观尺度隔室之间水扩散交换的限制。对于体外/体内模型,提出了隔室之间水扩散交换对顺磁性试剂隔室的顺磁性弛豫增强的影响的实验研究。在这些模型中,顺磁性试剂隔室的大小可与水分子在长RF脉冲期间的平均扩散位移相比较,该长RF脉冲用于生成失谐旋转框架。这项研究的三个主要目标是:(1)定性地将水扩散交换的效果与长脉冲的RF参数和水扩散速率相关联;(2)探索水扩散交换对水的影响(3)证明顺磁弛豫增强吗?体内。体外模型包括嵌入交联蛋白凝胶中的透水透析管或透水中空纤维。将透析管的MWCO选择为0.1至15kDa以控制水扩散速率。选择细空心纤维以为顺磁性试剂提供亚毫米级的隔室。该体内模型利用大鼠脑血管作为顺磁性药物隔室,并通过推注将血管内药物(Gd-DTPA)(30)-BSA注入该隔室。体外和体内结果均表明,在存在水扩散交换的情况下,T-1p加权图像中顺磁弛豫增强是主要的。在检测顺磁性剂时,T-1p对比具有比常规T-1p对比更高的灵敏度,尤其是在低顺磁性剂的体积分数,低顺磁性剂浓度和低RF振幅的情况下。较短的脉冲持续时间,较短的脉冲循环延迟和有效的顺磁弛豫可以减少水扩散交换对顺磁增强的影响。这项研究为非共振旋转实验的设计铺平了道路,以在亚毫米尺度上检测体内标记的细胞簇/组织区室。 (c)2007 Elsevier Inc.保留所有权利。

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