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Relaxation-compensated fast multislice amide proton transfer (APT) imaging of acute ischemic stroke.急性缺血性卒中的弛豫补偿快速多层酰胺质子转移(APT)成像
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First ex-vivo MRI co-localization of two LIPOCEST agents.首次对两种脂质子化学交换饱和转移(LIPOCEST)造影剂进行体外磁共振成像(MRI)共定位。
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pH imaging. A review of pH measurement methods and applications in cancers.pH成像:癌症中pH测量方法及应用综述
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一种用于化学交换饱和转移(CEST)成像的多层梯度回波脉冲序列。

A multislice gradient echo pulse sequence for CEST imaging.

作者信息

Dixon W Thomas, Hancu Ileana, Ratnakar S James, Sherry A Dean, Lenkinski Robert E, Alsop David C

机构信息

GE Global Research, Niskayuna, New York 12309, USA.

出版信息

Magn Reson Med. 2010 Jan;63(1):253-6. doi: 10.1002/mrm.22193.

DOI:10.1002/mrm.22193
PMID:19918889
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2925508/
Abstract

Chemical exchange-dependent saturation transfer and paramagnetic chemical exchange-dependent saturation transfer are agent-mediated contrast mechanisms that depend on saturating spins at the resonant frequency of the exchangeable protons on the agent, thereby indirectly saturating the bulk water. In general, longer saturating pulses produce stronger chemical and paramagnetic exchange-dependent saturation transfer effects, with returns diminishing for pulses longer than T1. This could make imaging slow, so one approach to chemical exchange-dependent saturation transfer imaging has been to follow a long, frequency-selective saturation period by a fast imaging method. A new approach is to insert a short frequency-selective saturation pulse before each spatially selective observation pulse in a standard, two-dimensional, gradient-echo pulse sequence. Being much less than T1 apart, the saturation pulses have a cumulative effect. Interleaved, multislice imaging is straightforward. Observation pulses directed at one slice did not produce observable, unintended chemical exchange-dependent saturation transfer effects in another slice. Pulse repetition time and signal-to noise ratio increase in the normal way as more slices are imaged simultaneously.

摘要

化学交换依赖饱和转移(CEST)和顺磁化学交换依赖饱和转移(PARACEST)是由造影剂介导的对比机制,其依赖于在造影剂上可交换质子的共振频率处饱和自旋,从而间接饱和主体水。一般来说,较长的饱和脉冲会产生更强的化学交换和顺磁交换依赖饱和转移效应,对于长于T1的脉冲,这种效应的增加会逐渐减小。这可能会使成像速度变慢,因此一种用于CEST成像的方法是在长的频率选择性饱和期之后采用快速成像方法。一种新方法是在标准的二维梯度回波脉冲序列中,在每个空间选择性观测脉冲之前插入一个短的频率选择性饱和脉冲。由于饱和脉冲之间的间隔远小于T1,它们具有累积效应。交错式多层成像很简单。针对一个层面的观测脉冲不会在另一个层面产生可观测的、意外的化学交换依赖饱和转移效应。随着同时成像的层面增多,脉冲重复时间和信噪比会以正常方式增加。