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Ten Key Insights into the Use of Spinal Cord fMRI

机译:使用脊髓功能磁共振成像的十大关键见解

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摘要

A comprehensive review of the literature-to-date on functional magnetic resonance imaging (fMRI) of the spinal cord is presented. Spinal fMRI has been shown, over more than two decades of work, to be a reliable tool for detecting neural activity. We discuss 10 key points regarding the history, development, methods, and applications of spinal fMRI. Animal models have served a key purpose for the development of spinal fMRI protocols and for experimental spinal cord injury studies. Applications of spinal fMRI span from animal models across healthy and patient populations in humans using both task-based and resting-state paradigms. The literature also demonstrates clear trends in study design and acquisition methods, as the majority of studies follow a task-based, block design paradigm, and utilize variations of single-shot fast spin-echo imaging methods. We, therefore, discuss the similarities and differences of these to resting-state fMRI and gradient-echo EPI protocols. Although it is newly emerging, complex connectivity and network analysis is not only possible, but has also been shown to be reliable and reproducible in the spinal cord for both task-based and resting-state studies. Despite the technical challenges associated with spinal fMRI, this review identifies reliable solutions that have been developed to overcome these challenges.
机译:提出了迄今为止有关脊髓功能磁共振成像(fMRI)的文献的综述。在超过二十年的工作中,脊柱功能磁共振成像已被证明是检测神经活动的可靠工具。我们讨论了有关脊柱功能磁共振成像的历史,发展,方法和应用的10个关键点。动物模型已经为开发脊柱功能磁共振成像协议和进行实验性脊髓损伤研究发挥了重要作用。脊柱功能磁共振成像的应用跨越了使用基于任务和静态模式的人类和健康人群的动物模型。文献还证明了研究设计和获取方法的明显趋势,因为大多数研究遵循基于任务的块设计范例,并利用了单次快速自旋回波成像方法的变化。因此,我们讨论了这些与静止状态fMRI和梯度回波EPI协议的异同。尽管它是新兴技术,但复杂的连接和网络分析不仅是可能的,而且在基于任务的研究和静息状态研究中也被证明在脊髓中是可靠且可重现的。尽管存在与脊柱功能磁共振成像相关的技术挑战,但本综述还是确定了为克服这些挑战而开发的可靠解决方案。

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