Rajkumar Ravichandran, Rota Kops Elena, Mauler Jörg, Tellmann Lutz, Lerche Christoph, Herzog Hans, Shah N Jon, Neuner Irene
Institute of Neuroscience and Medicine 4 (INM4), Forschungszentrum Juelich, Juelich, Germany.
Department of Psychiatry, Psychotherapy and Psychosomatics, RWTH Aachen University, Aachen, Germany.
PLoS One. 2017 Sep 13;12(9):e0184743. doi: 10.1371/journal.pone.0184743. eCollection 2017.
Trimodal simultaneous acquisition of positron emission tomography (PET), magnetic resonance imaging (MRI), and electroencephalography (EEG) has become feasible due to the development of hybrid PET-MR scanners. To capture the temporal dynamics of neuronal activation on a millisecond-by-millisecond basis, an EEG system is appended to the quantitative high resolution PET-MR imaging modality already established in our institute. One of the major difficulties associated with the development of simultaneous trimodal acquisition is that the components traditionally used in each modality can cause interferences in its counterpart. The mutual interferences of MRI components and PET components on PET and MR images, and the influence of EEG electrodes on functional MRI images have been studied and reported on. Building on this, this study aims to investigate the influence of the EEG cap on the quality and quantification of PET images acquired during simultaneous PET-MR measurements. A preliminary transmission scan study on the ECAT HR+ scanner, using an Iida phantom, showed visible attenuation effect due to the EEG cap. The BrainPET-MR emission images of the Iida phantom with [18F]Fluordeoxyglucose, as well as of human subjects with the EEG cap, did not show significant effects of the EEG cap, even though the applied attenuation correction did not take into account the attenuation of the EEG cap itself.
由于混合型正电子发射断层扫描(PET)-磁共振成像(MRI)扫描仪的发展,PET、MRI和脑电图(EEG)的三模态同步采集已变得可行。为了逐毫秒捕捉神经元激活的时间动态,在我们研究所已建立的定量高分辨率PET-MR成像模式上附加了一个EEG系统。与同步三模态采集发展相关的一个主要困难是,传统上在每种模式中使用的组件会对其对应模式产生干扰。MRI组件和PET组件对PET和MR图像的相互干扰,以及EEG电极对功能MRI图像的影响已得到研究并报告。在此基础上,本研究旨在调查EEG帽对PET-MR同步测量期间采集的PET图像质量和定量分析的影响。使用饭田模体在ECAT HR+扫描仪上进行的初步透射扫描研究显示,EEG帽有明显的衰减效应。带有[18F]氟脱氧葡萄糖的饭田模体以及佩戴EEG帽的人类受试者的BrainPET-MR发射图像,即使应用的衰减校正没有考虑EEG帽本身的衰减,也未显示出EEG帽的显著影响。