Krohn Sebastian, Gersdorff Nikolaus, Wassmann Torsten, Merboldt Klaus-Dietmar, Joseph Arun A, Buergers Ralf, Frahm Jens
Department of Prosthodontics, University Medical Center, Göttingen, Germany.
Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut für Biophysikalische Chemie, Göttingen, Germany.
Eur J Radiol. 2016 Dec;85(12):2225-2230. doi: 10.1016/j.ejrad.2016.10.020. Epub 2016 Oct 19.
The purpose of this study was to develop and evaluate a novel method for real-time MRI of TMJ function at high temporal resolution and with two different contrasts. Real-time MRI was based on undersampled radial fast low angle shot (FLASH) acquisitions with iterative image reconstruction by regularized nonlinear inversion. Real-time MRI movies with T1 contrast were obtained with use of a radiofrequency-spoiled FLASH sequence, while movies with T2/T1 contrast employed a gradient-refocused FLASH version. TMJ function was characterized in 40 randomly selected volunteers by sequential 20s acquisitions of both the right and left joint during voluntary opening and closing of the mouth (in a medial, central and lateral oblique sagittal section perpendicular to the long axis of the condylar head). All studies were performed on a commercial MRI system at 3T using the standard head coil, while online reconstruction was achieved with a bypass computer fully integrated into the MRI system. As a first result, real-time MRI studies of the right and left TMJ were successfully performed in all 40 subjects (80 joints) within a total examination time per subject of only 15min. Secondly, at an in-plane resolution of 0.75mm and 5mm section thickness, the achieved temporal resolution was 66.7ms per image or 15 frames per second. Thirdly, both T1-weighted and T2/T1-weighted real-time MRI movies provided information about TMJ function such as disc position, condyle mobility and disc-condyle relationship. While T1 contrast offers a better delineation of structures during rapid jaw movements, T2/T1 contrast was rated superior for characterizing the articular disc. In conclusion, the proposed real-time MRI method may become a robust and efficient tool for the clinical assessment of TMJ function.
本研究的目的是开发并评估一种新方法,用于在高时间分辨率下以两种不同的对比度对颞下颌关节(TMJ)功能进行实时磁共振成像(MRI)。实时MRI基于欠采样径向快速低角度激发(FLASH)采集,并通过正则化非线性反演进行迭代图像重建。使用射频扰相FLASH序列获得具有T1对比度的实时MRI电影,而具有T2/T1对比度的电影则采用梯度重聚FLASH版本。在40名随机选择的志愿者中,通过在自愿张口和闭口过程中(在垂直于髁突头长轴的内侧、中央和外侧斜矢状面)对左右关节连续采集20秒来表征TMJ功能。所有研究均在3T的商用MRI系统上使用标准头部线圈进行,同时通过完全集成到MRI系统中的旁路计算机实现在线重建。作为第一个结果,在所有40名受试者(80个关节)中成功进行了左右TMJ的实时MRI研究,每个受试者的总检查时间仅为15分钟。其次,在平面分辨率为0.75mm和切片厚度为5mm的情况下,实现的时间分辨率为每幅图像66.7ms或每秒15帧。第三,T1加权和T2/T1加权实时MRI电影均提供了有关TMJ功能的信息,如盘状位置、髁突活动度和盘-髁关系。虽然T1对比度在快速颌骨运动期间能更好地描绘结构,但T2/T1对比度在表征关节盘方面被评为更优。总之,所提出的实时MRI方法可能成为临床评估TMJ功能的一种强大而有效的工具。