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使用具有射频偏移和弛豫翻转角变化(FAVOR)的超极化3He对大鼠肺区域通气进行快速高效映射。

Rapid and efficient mapping of regional ventilation in the rat lung using hyperpolarized 3He with Flip Angle Variation for Offset of RF and Relaxation (FAVOR).

作者信息

Santyr Giles E, Lam Wilfred W, Ouriadov Alexei

机构信息

Imaging Research Laboratories, Robarts Research Institute, London, Ontario, Canada.

出版信息

Magn Reson Med. 2008 Jun;59(6):1304-10. doi: 10.1002/mrm.21582.

Abstract

A novel imaging method is presented, Flip Angle Variation for Offset of RF and Relaxation (FAVOR), for rapid and efficient measurement of rat lung ventilation using hyperpolarized helium-3 (3He) gas. The FAVOR technique utilizes variable flip angles to remove the cumulative effect of RF pulses and T1 relaxation on the hyperpolarized gas signal and thereby eliminates the need for intervening air wash-out breaths and multiple cycles of 3He wash-in breaths before each image. The former allows an improvement in speed (by a factor of approximately 30) while the latter reduces the cost of each measurement (by a factor of approximately 5). The FAVOR and conventional ventilation methods were performed on six healthy male Brown Norway rats (190-270 g). Lobar measurements of ventilation, r, obtained with the FAVOR method were not significantly different from those obtained with the conventional method for the right middle and caudal and left lobes (P>0.05 by a Wilcoxon matched pairs test). A methacholine challenge test was also administered to an animal and reduction and recovery of r was detected by the FAVOR method. The reduced 3He consumption and the improvement in speed provided by FAVOR suggest that it may allow measurement of ventilation in human subjects not previously possible.

摘要

本文介绍了一种用于使用超极化氦 - 3(³He)气体快速高效测量大鼠肺通气的新型成像方法——射频与弛豫偏移的翻转角变化法(FAVOR)。FAVOR技术利用可变翻转角来消除射频脉冲和T1弛豫对超极化气体信号的累积效应,从而无需在每次成像前进行中间的空气冲洗呼吸以及多个³He冲洗进气呼吸周期。前者可提高速度(约30倍),而后者可降低每次测量的成本(约5倍)。对六只健康雄性挪威棕色大鼠(190 - 270克)进行了FAVOR和传统通气方法的操作。通过FAVOR方法获得的肺叶通气测量值r与通过传统方法获得的右中叶、尾叶和左叶的测量值无显著差异(Wilcoxon配对检验,P>0.05)。还对一只动物进行了乙酰甲胆碱激发试验,并通过FAVOR方法检测到r的降低和恢复。FAVOR减少的³He消耗和提高的速度表明,它可能允许对以前无法进行的人类受试者的通气进行测量。

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