Papke K, Hellmann T, Renger B, Morgenroth C, Knecht S, Schuierer G, Reimer P
Institute for Clinical Radiology, University of Münster, Germany.
Eur Radiol. 1999;9(2):211-20. doi: 10.1007/s003300050658.
In this article we describe clinical applications of functional MRI (fMRI) at 1.0 T. All experiments were performed on a commercially available 1.0-T system (Magnetom Impact Expert, Siemens AG, Erlangen, Germany) using a blood oxygen level-dependent (BOLD)-sensitive multi-slice EPI technique (TE 66 ms, 4 mm slice thickness, 210 mm field of view, 64 x 64 acquisition matrix). Different paradigms for localization of the motor cortex and for language lateralization were tested in healthy subjects and patients. Methodological considerations concerning the development of the paradigms are also described. In all healthy subjects, motor activation elicited BOLD signal changes in the sensorimotor cortex, permitting identification of primary motor and sensory cortical areas. Furthermore, focal activation of different cortical areas by a language task was possible in 6 of 10 subjects. Nineteen motor studies were performed in 18 patients with supratentorial lesions, in most cases prior to neurosurgical procedures. In 14 studies, fMRI results demonstrated the localization of the motor hand areas relative to the lesion. The results proved valuable for preoperative planning and contributed to therapeutical decisions. We conclude that functional MRI for clinically relevant applications, such as localization of motor and language function, is feasible even at a field strength of 1.0 T without dedicated equipment.
在本文中,我们描述了1.0 T场强下功能磁共振成像(fMRI)的临床应用。所有实验均在一台商用1.0-T系统(Magnetom Impact Expert,西门子公司,德国埃尔朗根)上进行,采用基于血氧水平依赖(BOLD)的多层面回波平面成像(EPI)技术(回波时间66 ms,层厚4 mm,视野210 mm,采集矩阵64×64)。在健康受试者和患者中测试了用于运动皮层定位和语言功能区定位的不同模式。文中还描述了有关这些模式开发的方法学考量。在所有健康受试者中,运动激活在感觉运动皮层引发了BOLD信号变化,从而能够识别初级运动皮层和感觉皮层区域。此外,10名受试者中有6名通过语言任务实现了不同皮层区域的局灶性激活。对18例幕上病变患者进行了19项运动相关研究,多数研究在神经外科手术前进行。在14项研究中,fMRI结果显示了运动手区相对于病变的位置。这些结果对术前规划很有价值,并有助于做出治疗决策。我们得出结论,即使在1.0 T场强且无专用设备的情况下,用于运动和语言功能定位等临床相关应用的功能磁共振成像也是可行的。