Institute of Neuroscience and Medicine-4, Forschungszentrum Juelich, Juelich, Germany.
Faculty of Medicine, Department of Neurology, RWTH Aachen University, JARA, Aachen, Germany.
PLoS One. 2018 Oct 11;13(10):e0205325. doi: 10.1371/journal.pone.0205325. eCollection 2018.
Functional MRI (fMRI) is a well-established method used to investigate localised brain activation by virtue of the blood oxygen level dependent (BOLD) effect. It often relies on visual presentations using beam projectors, liquid crystal display (LCD) screens, and goggle systems. In this study, we designed an MR compatible, low-cost display unit based on organic light-emitting diodes (OLED) and demonstrated its performance.
A 3.8" dual OLED module and an MIPI-to-HDMI converter board were used. The OLED module was enclosed using a shielded box to prevent noise emission from the display module and the potentially destructive absorption of high power RF from the MRI transmit pulses. The front of the OLED module was covered by a conductive, transparent mesh. Power was supplied from a non-magnetic battery. The shielding of the display was evaluated by directly measuring the electromagnetic emission with the aid of a pickup loop and a low noise amplifier, as well as by examining the signal-to-noise ratio (SNR) of phantom MRI data. The visual angle of the display was calculated and compared to standard solutions. As a proof of concept of the OLED display for fMRI, a healthy volunteer was presented with a visual block paradigm.
The OLED unit was successfully installed inside a 3 T MRI scanner bore. Operation of the OLED unit did not degrade the SNR of the phantom images. The fMRI data suggest that visual stimulation can be effectively delivered to subjects with the proposed OLED unit without any significant interference between the MRI acquisitions and the display module itself.
We have constructed and evaluated the MR compatible, dual OLED display for fMRI studies. The proposed OLED display provides the benefits of high resolution, wide visual angle, and high contrast video images during fMRI exams.
功能磁共振成像(fMRI)是一种成熟的方法,通过血氧水平依赖(BOLD)效应来研究局部脑激活。它通常依赖于使用光束投影仪、液晶显示屏和护目镜系统的视觉呈现。在这项研究中,我们设计了一种基于有机发光二极管(OLED)的兼容磁共振的低成本显示单元,并展示了其性能。
使用了 3.8 英寸双 OLED 模块和 MIPI 到 HDMI 转换器板。OLED 模块被封闭在一个屏蔽盒中,以防止显示模块发出噪声,并防止 MRI 发射脉冲的高功率 RF 产生潜在的破坏性吸收。OLED 模块的前面覆盖着导电透明网。电源由非磁性电池提供。通过使用拾波线圈和低噪声放大器直接测量电磁辐射,并检查幻影 MRI 数据的信噪比(SNR),评估了显示的屏蔽效果。计算了显示的视角,并与标准解决方案进行了比较。作为 OLED 显示器在 fMRI 中的概念验证,对一名健康志愿者进行了视觉块范式的呈现。
OLED 单元成功安装在 3T MRI 扫描仪孔内。OLED 单元的操作并未降低幻影图像的 SNR。fMRI 数据表明,使用所提出的 OLED 单元可以有效地向受试者提供视觉刺激,而 MRI 采集和显示模块本身之间没有任何显著干扰。
我们已经构建并评估了用于 fMRI 研究的兼容磁共振的双 OLED 显示器。所提出的 OLED 显示器在 fMRI 检查期间提供了高分辨率、宽视角和高对比度视频图像的优点。