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3T条件下组织中的T1、T2弛豫及磁化传递

T1, T2 relaxation and magnetization transfer in tissue at 3T.

作者信息

Stanisz Greg J, Odrobina Ewa E, Pun Joseph, Escaravage Michael, Graham Simon J, Bronskill Michael J, Henkelman R Mark

机构信息

Imaging Research, Sunnybrook & Women's College Health Sciences Centre, Toronto, ON, Canada.

出版信息

Magn Reson Med. 2005 Sep;54(3):507-12. doi: 10.1002/mrm.20605.

Abstract

T1, T2, and magnetization transfer (MT) measurements were performed in vitro at 3 T and 37 degrees C on a variety of tissues: mouse liver, muscle, and heart; rat spinal cord and kidney; bovine optic nerve, cartilage, and white and gray matter; and human blood. The MR parameters were compared to those at 1.5 T. As expected, the T2 relaxation time constants and quantitative MT parameters (MT exchange rate, R, macromolecular pool fraction, M0B, and macromolecular T2 relaxation time, T2B) at 3 T were similar to those at 1.5 T. The T1 relaxation time values, however, for all measured tissues increased significantly with field strength. Consequently, the phenomenological MT parameter, magnetization transfer ratio, MTR, was lower by approximately 2 to 10%. Collectively, these results provide a useful reference for optimization of pulse sequence parameters for MRI at 3 T.

摘要

在3T和37摄氏度的条件下,对多种组织进行了体外T1、T2和磁化传递(MT)测量,这些组织包括:小鼠肝脏、肌肉和心脏;大鼠脊髓和肾脏;牛视神经、软骨、白质和灰质;以及人体血液。将这些磁共振参数与1.5T时的参数进行了比较。正如预期的那样,3T时的T2弛豫时间常数和定量MT参数(MT交换率、R、大分子池分数、M0B和大分子T2弛豫时间、T2B)与1.5T时相似。然而,所有测量组织的T1弛豫时间值均随场强显著增加。因此,现象学MT参数磁化传递率MTR降低了约2%至10%。总体而言,这些结果为优化3T磁共振成像的脉冲序列参数提供了有用的参考。

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