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在 1.5 特斯拉场强下使用头部发射射频线圈进行功能磁共振成像时颅内脑电图检查的安全性:组织病理学和热休克免疫组化观察。

Safety of intracranial electroencephalography during functional electromagnetic resonance imaging in humans at 1.5 tesla using a head transmit RF coil: Histopathological and heat-shock immunohistochemistry observations.

机构信息

Department of Clinical and Experimental Epilepsy, UCL Queen Square Institute of Neurology, Queen Square, London WC1N 3BG, United Kingdom; Division of Neuropathology, National Hospital of Neurology and Neurosurgery, Queen Square, London WC1N 3BG, United Kingdom; School of Life Sciences, University of Westminster, London W1W 6UW, United Kingdom.

Department of Clinical and Experimental Epilepsy, UCL Queen Square Institute of Neurology, Queen Square, London WC1N 3BG, United Kingdom; Administration of Medical Physics, King Abdullah Medical City (KAMC), Makkah, Saudi Arabia.

出版信息

Neuroimage. 2022 Jul 1;254:119129. doi: 10.1016/j.neuroimage.2022.119129. Epub 2022 Mar 22.

Abstract

OBJECTIVES

Simultaneous intracranial EEG and functional MRI (icEEG-fMRI) recordings in humans, whereby EEG is recorded from electrodes implanted inside the cranium during fMRI scanning, were made possible following safety studies on test phantoms and our specification of a rigorous data acquisition protocol. In parallel with this work, other investigations in our laboratory revealed the damage caused by the EEG electrode implantation procedure at the cellular level. The purpose of this report is to further explore the safety of performing MRI, including simultaneous icEEG-fMRI data acquisitions, in the presence of implanted intra-cranial EEG electrodes, by presenting some histopathological and heat-shock immunopositive labeling observations in surgical tissue samples from patients who underwent the scanning procedure.

METHODS

We performed histopathology and heat shock protein expression analyses on surgical tissue samples from nine patients who had been implanted with icEEG electrodes. Three patients underwent icEEG-fMRI and structural MRI (sMRI); three underwent sMRI only, all at similar time points after icEEG implantation; and three who did not undergo functional or sMRI with icEEG electrodes.

RESULTS

The histopathological findings from the three patients who underwent icEEG-fMRI were similar to those who did not, in that they showed no evidence of additional damage in the vicinity of the electrodes, compared to cases who had no MRI with implanted icEEG electrodes. This finding was similar to our observations in patients who only underwent sMRI with implanted icEEG electrodes.

CONCLUSION

This work provides unique evidence on the safety of functional MRI in the presence of implanted EEG electrodes. In the cases studied, icEEG-fMRI performed in accordance with our protocol based on low-SAR (≤0.1 W/kg) sequences at 1.5T using a head-transmit RF coil, did not result in measurable additional damage to the brain tissue in the vicinity of implanted electrodes. Furthermore, while one cannot generalize the results of this study beyond the specific electrode implantation and scanning conditions described herein, we submit that our approach is a useful framework for the post-hoc safety assessment of MR scanning with brain implants.

摘要

目的

在对测试模型进行安全性研究,并制定严格的数据采集协议之后,人类可进行颅内脑电图(icEEG)和功能磁共振成像(fMRI)的同步记录,即在 fMRI 扫描期间,从植入颅骨内的电极记录 EEG。与此同时,我们实验室的其他研究揭示了 EEG 电极植入过程在细胞水平上造成的损伤。本报告的目的是进一步探索在存在颅内植入 EEG 电极的情况下进行 MRI(包括同步 icEEG-fMRI 数据采集)的安全性,通过展示一些接受扫描程序的患者手术组织样本中的组织病理学和热休克免疫阳性标记观察结果来实现。

方法

我们对 9 名植入 icEEG 电极的患者的手术组织样本进行了组织病理学和热休克蛋白表达分析。其中 3 名患者接受了 icEEG-fMRI 和结构磁共振成像(sMRI)检查;3 名患者仅接受了 sMRI 检查,且均在 icEEG 植入后类似的时间点进行;另外 3 名患者没有进行功能或 sMRI 检查。

结果

接受 icEEG-fMRI 检查的 3 名患者的组织病理学结果与未接受 MRI 检查的患者相似,即与未进行植入 icEEG 电极 MRI 的患者相比,电极附近没有发现额外损伤的证据。这一发现与仅进行植入 icEEG 电极 sMRI 的患者的观察结果相似。

结论

这项工作提供了关于在植入 EEG 电极的情况下进行功能磁共振成像安全性的独特证据。在所研究的病例中,根据低 SAR(≤0.1 W/kg)序列(在 1.5T 下使用头部传输 RF 线圈)并按照我们的协议进行 icEEG-fMRI,未导致植入电极附近脑组织出现可测量的额外损伤。此外,虽然不能将本研究的结果推广到本文所述的特定电极植入和扫描条件之外,但我们认为我们的方法是对具有脑植入物的磁共振扫描进行事后安全性评估的有用框架。

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