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静息态功能磁共振成像整合到临床实践中 - 一项大型单机构经验。

Integration of resting state functional MRI into clinical practice - A large single institution experience.

机构信息

Department of Neurological Surgery, Washington University School of Medicine, St. Louis, MO, United States of America.

Center for Innovation in Neuroscience and Technology, Washington University School of Medicine, St. Louis, MO, United States of America.

出版信息

PLoS One. 2018 Jun 22;13(6):e0198349. doi: 10.1371/journal.pone.0198349. eCollection 2018.

Abstract

Functional magnetic resonance imaging (fMRI) is an important tool for pre-surgical evaluation of eloquent cortex. Classic task-based paradigms require patient participation and individual imaging sequence acquisitions for each functional domain that is being assessed. Resting state fMRI (rs-fMRI), however, enables functional localization without patient participation and can evaluate numerous functional domains with a single imaging session. To date, post-processing of this resting state data has been resource intensive, which limits its widespread application for routine clinical use. Through a novel automated algorithm and advanced imaging IT structure, we report the clinical application and the large-scale integration of rs-fMRI into routine neurosurgical practice. One hundred and ninety one consecutive patients underwent a 3T rs-fMRI, 83 of whom also underwent both motor and language task-based fMRI. Data were processed using a novel, automated, multi-layer perceptron algorithm and integrated into stereotactic navigation using a streamlined IT imaging pipeline. One hundred eighty-five studies were performed for intracranial neoplasm, 14 for refractory epilepsy and 33 for vascular malformations or other neurological disorders. Failure rate of rs-fMRI of 13% was significantly better than that for task-based fMRI (38.5%,) (p <0.001). In conclusion, at Washington University in St. Louis, rs-fMRI has become an integral part of standard imaging for neurosurgical planning. Resting state fMRI can be used in all patients, and due to its lower failure rate than task-based fMRI, it is useful for patients who are unable to cooperate with task-based studies.

摘要

功能磁共振成像(fMRI)是术前评估语言功能区的重要工具。经典的任务态范式需要患者参与并为每个评估的功能域单独采集影像序列。然而,静息态 fMRI(rs-fMRI)无需患者参与即可实现功能定位,并且可以单次成像会话评估多个功能域。迄今为止,这种静息态数据的后处理需要大量资源,这限制了其在常规临床应用中的广泛应用。通过一种新颖的自动化算法和先进的影像学 IT 结构,我们报告了 rs-fMRI 的临床应用和在常规神经外科实践中的大规模整合。191 例连续患者接受了 3T rs-fMRI 检查,其中 83 例还接受了运动和语言任务态 fMRI 检查。数据使用一种新颖的自动化多层感知器算法进行处理,并使用简化的 IT 成像管道集成到立体定向导航中。185 项研究用于颅内肿瘤,14 项用于难治性癫痫,33 项用于血管畸形或其他神经疾病。rs-fMRI 的失败率为 13%,明显优于任务态 fMRI(38.5%)(p<0.001)。总之,在圣路易斯华盛顿大学,rs-fMRI 已成为神经外科计划标准成像的一个组成部分。静息态 fMRI 可用于所有患者,并且由于其失败率低于任务态 fMRI,因此对于无法配合任务态研究的患者很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12fd/6014724/93e905fa9e55/pone.0198349.g001.jpg

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