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比较静息状态功能磁共振成像与侵入性电皮质刺激在儿科患者感觉运动映射中的应用。

A comparison of resting state functional magnetic resonance imaging to invasive electrocortical stimulation for sensorimotor mapping in pediatric patients.

机构信息

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

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

出版信息

Neuroimage Clin. 2019;23:101850. doi: 10.1016/j.nicl.2019.101850. Epub 2019 May 4.

Abstract

Localizing neurologic function within the brain remains a significant challenge in clinical neurosurgery. Invasive mapping with direct electrocortical stimulation currently is the clinical gold standard but is impractical in young or cognitively delayed patients who are unable to reliably perform tasks. Resting state functional magnetic resonance imaging non-invasively identifies resting state networks without the need for task performance, hence, is well suited to pediatric patients. We compared sensorimotor network localization by resting state fMRI to cortical stimulation sensory and motor mapping in 16 pediatric patients aged 3.1 to 18.6 years. All had medically refractory epilepsy that required invasive electrographic monitoring and stimulation mapping. The resting state fMRI data were analyzed using a previously trained machine learning classifier that has previously been evaluated in adults. We report comparable functional localization by resting state fMRI compared to stimulation mapping. These results provide strong evidence for the utility of resting state functional imaging in the localization of sensorimotor cortex across a wide range of pediatric patients.

摘要

在临床神经外科中,实现脑内神经功能的定位仍然是一个重大挑战。目前,直接皮质电刺激的侵入性映射是临床金标准,但对于无法可靠执行任务的年轻或认知延迟患者来说,这种方法并不实用。静息态功能磁共振成像无需进行任务执行即可无创地识别静息态网络,因此非常适合儿科患者。我们比较了 16 名年龄在 3.1 至 18.6 岁的儿科患者的静息态 fMRI 与皮质刺激感觉和运动映射的感觉运动网络定位。所有患者均患有药物难治性癫痫,需要进行侵入性脑电图监测和刺激映射。使用先前经过训练的机器学习分类器分析静息态 fMRI 数据,该分类器先前已在成人中进行了评估。我们报告了静息态 fMRI 与刺激映射相比具有可比的功能定位。这些结果为静息态功能成像在广泛的儿科患者中定位感觉运动皮层的应用提供了有力证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f53c/6514367/e92d01251c7f/ga1.jpg

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