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用于测量组织类固体大分子成分的质子偶极自旋-晶格弛豫时间(T1D)的改良吉纳固体回波脉冲序列。

Modified Jeener solid-echo pulse sequences for the measurement of the proton dipolar spin-lattice relaxation time (T1D) of tissue solid-like macromolecular components.

作者信息

Yang H, Schleich T

机构信息

Sinsheimer Laboratories, Department of Chemistry and Biochemistry, University of California, Santa Cruz 95064.

出版信息

J Magn Reson B. 1994 Nov;105(3):205-10. doi: 10.1006/jmrb.1994.1126.

Abstract

Modified Jeener solid-echo pulse sequences are proposed for the measurement of the proton dipolar spin-lattice relaxation time, T1D, of motionally restricted (solid-like) components in the presence of mobile molecular species, such as encountered in biological tissue. A phase-cycled composite-pulse sequence was used for detection of the dipolar signal and cancellation of the Zeeman signal. A homospoil gradient pulse was added to the Jeener echo pulse sequence to enhance dephasing of the transverse magnetization components of mobile species, thereby aiding in elimination of the Zeeman signal during dipolar signal acquisition. A modified Jeener echo sequence incorporating water suppression is also proposed as a means to further depress the Zeeman signal arising from mobile components. The modified Jeener echo sequences were successfully used for the measurement of proton T1D values of solid 2,6-dimethylphenol and Sephadex gels of differing degrees of cross linking and hydration.

摘要

提出了改进的吉纳固体回波脉冲序列,用于在存在移动分子物种(如生物组织中遇到的)的情况下,测量运动受限(类固体)成分的质子偶极自旋晶格弛豫时间T1D。使用相位循环复合脉冲序列来检测偶极信号并消除塞曼信号。向吉纳回波脉冲序列中添加了同相破坏梯度脉冲,以增强移动物种横向磁化分量的去相位,从而有助于在偶极信号采集期间消除塞曼信号。还提出了一种结合水抑制的改进吉纳回波序列,作为进一步抑制来自移动成分的塞曼信号的一种手段。改进的吉纳回波序列成功用于测量固体2,6-二甲基苯酚和不同交联度和水合度的葡聚糖凝胶的质子T1D值。

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