Nakasato T, Ehara S
Iwate Medical University School of Medicine, Center for Radiological Sciences.
Nihon Igaku Hoshasen Gakkai Zasshi. 1992 Sep 25;52(9):1247-57.
Magnetic resonance (MR) imaging of the temporomandibular joint (TMJ) has now been established as a procedure of choice in the evaluation of TMJ disorders. In this study, we evaluated the dynamics of TMJ motion on MR imaging, which resembles arthrography. Sixty-eight TMJs in 38 symptomatic patients and one healthy volunteer were examined using pseudodynamic images with gradient echo sequences using a 0.5 Tesla MR unit and 8 cm circular planar surface coil. For depiction of each compartment of the meniscus, the optimum sequence was 200/15/2 (TR/TE/excitations) with 50 degrees or 60 degrees flip angle in gradient refocused acquisition in steady-state (GRASS) sequences. Three contiguous slices on sagittal MR images were routinely obtained at 14-18 different phases of the opening cycle and displayed in closed-loop cine fashion. Internal derangement was observed in 57% of 68 joints. The most common type was anterior meniscal displacement without reduction. Sideway and rotational displacements, observed in 10% each, were noted on both sagittal multislice images and axial reference images. As a pseudodynamic MR technique, jaw movement specifically designed to check bite procedure to adjust splints is useful for detecting the exact time of meniscal redisplacement on the second click. After conservative therapy for arthrosis, pseudodynamic MR provided information on changes in the meniscus and condylar relationship. Pseudodynamic MR with multiple phases is suitable for evaluating subtle motion abnormality of the meniscus and for post-therapeutic monitoring.
颞下颌关节(TMJ)的磁共振(MR)成像现已成为评估颞下颌关节紊乱病的首选检查方法。在本研究中,我们评估了MR成像上颞下颌关节运动的动态情况,其类似于关节造影。使用0.5特斯拉MR设备和8厘米圆形平面表面线圈,通过梯度回波序列的伪动态图像,对38例有症状患者的68个颞下颌关节和1名健康志愿者进行了检查。为描绘半月板的每个腔室,在稳态梯度重聚采集(GRASS)序列中,最佳序列为200/15/2(重复时间/回波时间/激励次数),翻转角为50度或60度。在矢状面MR图像上,常规在开口周期的14 - 18个不同阶段获取三个连续切片,并以闭环电影方式显示。68个关节中有57%观察到内部紊乱。最常见的类型是半月板前移位未复位。在矢状面多层图像和轴向参考图像上均观察到侧向和旋转移位,各占10%。作为一种伪动态MR技术,专门设计用于检查咬合程序以调整夹板的下颌运动,有助于检测第二次弹响时半月板重新移位的确切时间。在对关节病进行保守治疗后,伪动态MR可提供半月板和髁突关系变化的信息。多阶段伪动态MR适用于评估半月板的细微运动异常以及治疗后监测。