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Clinical functional MRI of sensorimotor cortex using passive motor and sensory stimulation at 3 Tesla.

机译:在3特斯拉使用被动运动和感觉刺激进行感觉运动皮层的临床功能MRI。

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PURPOSE: To establish a passive motor paradigm for clinical functional MRI (fMRI) that could be beneficial for patients with motor or attention deficits who are not able to perform active motor tasks. MATERIALS AND METHODS: A novel standardized sensorimotor fMRI protocol was applied in 16 healthy volunteers at 3 Tesla (T) using active and passive motor tasks as well as sensory stimulation of hands and feet. Data analysis was carried out individually using a dynamic thresholding routine. RESULTS: Active motor tasks yielded time efficient and robust blood-oxygen-level-dependent (BOLD) signals in primary motor cortex. Noteworthy, it was possible to achieve equal activation levels within identical anatomical localization for passive and active motor tasks with these paradigms. CONCLUSION: Patients unable to perform active movements can benefit from paradigms with passive motor and sensory stimulation. Therefore, we recommend these paradigms for functional somatotopic mapping of the central region at 3T in clinical routine.
机译:目的:建立一种用于临床功能性MRI(fMRI)的被动运动范式,该范式可能对无法执行主动运动任务的运动或注意力缺陷患者有益。材料与方法:一种新颖的标准化感觉运动功能磁共振成像协议已在3 Tesla(T)的16位健康志愿者中使用主动和被动运动任务以及对手和脚的感觉刺激进行了应用。使用动态阈值处理程序分别进行数据分析。结果:主动运动任务在初级运动皮层中产生了时间高效且鲁棒的血氧水平依赖性(BOLD)信号。值得注意的是,使用这些范例,在被动和主动运动任务中,在相同的解剖结构定位范围内可以达到相同的激活水平。结论:无法进行主动运动的患者可以受益于被动运动和感觉刺激的范例。因此,我们建议在临床常规操作中将这些范例用于3T中心区域的功能性体位贴图。

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