Zhong J, Kwok E, Chen Z
Department of Radiology, University of Rochester Medical Center, Rochester, New York 14642-8648, USA.
Magn Reson Med. 2001 Mar;45(3):356-64. doi: 10.1002/1522-2594(200103)45:3<356::aid-mrm1046>3.0.co;2-5.
An intermolecular double-quantum coherence (iDQC) imaging technique was used to study auditory activation in the human brain at 1.5T with a dual temporal lobe surface phased array coil and a quadrature head coil. Preliminary results demonstrate that it is feasible to obtain auditory activation maps using iDQC imaging at 1.5T, both in individual subjects using the surface coil array and with multisubject averaging of data using the head coil. The most robust activation map was obtained when a spin-echo (SE) acquisition was combined with an iDQC excitation. Since SE with conventional single quantum coherence (SQC) and similar parameters showed much reduced activation in spite of its higher signal-to-noise ratio (SNR), it was determined that activation resulting from the SE-iDQC acquisition almost entirely originates from iDQCs. In addition, the fact that the robust activation was obtained using signals at an evolution time more sensitive to changes in magnetic susceptibilities also suggests the sensitivity of iDQCs to the BOLD effect upon activation. iDQCs provide a novel MRI method which is potentially more sensitive to the BOLD effect traditionally measured with SQC. Magn Reson Med 45:356-364, 2001.
采用分子间双量子相干(iDQC)成像技术,通过双颞叶表面相控阵线圈和正交头线圈,在1.5T磁场下对人脑听觉激活进行研究。初步结果表明,使用表面线圈阵列对个体受试者以及使用头线圈对数据进行多受试者平均,在1.5T磁场下采用iDQC成像获取听觉激活图是可行的。当自旋回波(SE)采集与iDQC激发相结合时,可获得最强健的激活图。由于具有常规单量子相干(SQC)且参数相似的SE尽管信噪比(SNR)较高,但激活程度却大大降低,因此确定SE-iDQC采集产生的激活几乎完全源自iDQC。此外,在对磁化率变化更敏感的演化时间使用信号获得强健激活这一事实,也表明iDQC对激活时的血氧水平依赖(BOLD)效应具有敏感性。iDQC提供了一种新的MRI方法,它可能对传统上用SQC测量的BOLD效应更敏感。《磁共振医学》45:356 - 364,2001年。