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一种用于在体内观察脱氧肌红蛋白信号的简化序列:采用动态去激发以及水和脂肪饱和的肌红蛋白激发(MEDUSA)。

A simplified sequence for observing deoxymyoglobin signals in vivo: myoglobin excitation with dynamic unexcitation and saturation of water and fat (MEDUSA).

作者信息

Noyszewski E A, Chen E L, Reddy R, Wang Z, Leigh J S

机构信息

MMRRCC, Department of Radiology, University of Pennsylvania, Philadelphia 19104-6100, USA.

出版信息

Magn Reson Med. 1997 Nov;38(5):788-92. doi: 10.1002/mrm.1910380515.

Abstract

This paper describes a new, simplified pulse sequence for observing NMR signals from deoxymyoglobin in vivo. Paramagnetically shifted resonances from deoxymyoglobin can be exploited to noninvasively calculate intracellular oxygen tension in striated muscle. However, special sequences are required to observe these weak signals against the larger water and fat signals encountered in vivo. The pulse sequence described here, which is based on inversion recovery sequences, efficiently suppresses both water and fat resonances and can be implemented with short repetition rates. Moreover, it is perfectly suited for studies with surface coils, where RF inhomogeneities render other popular suppression sequences ineffective.

摘要

本文描述了一种用于在体内观测脱氧肌红蛋白核磁共振信号的新型简化脉冲序列。脱氧肌红蛋白的顺磁位移共振可用于无创计算横纹肌中的细胞内氧张力。然而,要在体内较大的水和脂肪信号背景下观测到这些微弱信号,需要特殊的序列。这里描述的脉冲序列基于反转恢复序列,能有效抑制水和脂肪共振,且可采用短重复率来实现。此外,它非常适合使用表面线圈的研究,因为射频不均匀性会使其他常用的抑制序列失效。

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