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基于血流灌注加权反转恢复(BOLDED AFFAIR)调整的具有血氧水平依赖指数衰减的定量多模态功能磁共振成像。

Quantitative multi-modal functional MRI with blood oxygenation level dependent exponential decays adjusted for flow attenuated inversion recovery (BOLDED AFFAIR).

作者信息

Hyder F, Renken R, Kennan R P, Rothman D L

机构信息

Department of Diagnostic Radiology, Magnetic Resonance Center, PO Box 208043, Yale University, New Haven, CT 06510, USA.

出版信息

Magn Reson Imaging. 2000 Apr;18(3):227-35. doi: 10.1016/s0730-725x(00)00125-9.

Abstract

A magnetic resonance imaging (MRI) method is described that allows interleaved measurements of transverse (R(2)() and R(2)) and longitudinal (R(1)) relaxation rates of tissue water in conjunction with spin labeling. The image-contrasts are intrinsically blood oxygenation level dependent (BOLD) and cerebral blood flow (CBF) weighted, but each contrast is made quantitative by two echo time (TE) and inversion recovery time (TIR) acquisitions with gradient echo (GE) and spin echo (SE) weighted echo-planar imaging (EPI). The EPI data were acquired at 7 Tesla with nominal spatial resolution of 430 x 430 x 1000 microm(3) in rat brain in vivo. The method is termed as blood oxygenation level dependent exponential decays adjusted for flow attenuated inversion recovery (BOLDED AFFAIR) and allows acquisition of R(2)(), R(2), and CBF maps in an interleaved manner within approximately 12 minute. The basic theory of the method, associated experimental/systematic errors, and temporal restrictions are discussed. The method is validated by comparison of multi-modal maps obtained by BOLDED AFFAIR (i.e., two TE and TIR values with GE and SE sequences) and conventional approach (i.e., multiple TE and TIR values with GE and SE sequences) during varied levels of whole brain activity. Preliminary functional data from a rat forepaw stimulation model demonstrate the feasibility of this method for functional MRI (fMRI) studies. It is expected that with appropriate precautions this method in conjunction with contrast agent-based MRI has great potential for quantitative fMRI studies of mammalian cortex.

摘要

本文描述了一种磁共振成像(MRI)方法,该方法能够结合自旋标记对组织水的横向(R(2)()和R(2))以及纵向(R(1))弛豫率进行交错测量。图像对比度本质上依赖于血氧水平依赖(BOLD)和脑血流量(CBF)加权,但每种对比度通过使用梯度回波(GE)和自旋回波(SE)加权的回波平面成像(EPI)进行两次回波时间(TE)和反转恢复时间(TIR)采集而实现量化。EPI数据在7特斯拉下采集,大鼠脑内活体的标称空间分辨率为430×430×1000微米³。该方法被称为血流灌注加权的血氧水平依赖指数衰减(BOLDED AFFAIR),能够在大约12分钟内以交错方式获取R(2)()、R(2)和CBF图。文中讨论了该方法的基本理论、相关实验/系统误差以及时间限制。通过比较在不同全脑活动水平下由BOLDED AFFAIR(即使用GE和SE序列的两个TE和TIR值)和传统方法(即使用GE和SE序列的多个TE和TIR值)获得的多模态图,对该方法进行了验证。来自大鼠前爪刺激模型的初步功能数据证明了该方法用于功能MRI(fMRI)研究的可行性。预计在采取适当预防措施的情况下,该方法结合基于造影剂的MRI在哺乳动物皮层的定量fMRI研究中具有巨大潜力。

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