Krombach G A, Di Martino E, Nolte-Ernsting C, Schmitz-Rode T, Prescher A, Westhofen M, Günther R W
Klinik für Radiologische Diagnostik, Universitätskliniken der Rheinisch-Westfälischen Technischen Hochschule Aachen.
Rofo. 2000 Sep;172(9):748-52. doi: 10.1055/s-2000-7220.
To develop and evaluate a protocol for the anatomic depiction and functional testing of the auditory tube with the use of MR imaging.
Eleven volunteers were included into this study. For the morphological assessment, the imaging protocol included axial and coronal T2-weighted turbo-spin echo sequences (TR/TE = 3194/100 ms) and a T1-weighted gradient echo sequence (TR/TE = 42/4.6 ms). For the functional test a dynamic turbo-gradient echo sequence (TFE) with spectral fat suppression (TR/TE = 15/6.2 ms; 4 sec) was obtained using the single slice technique before and during the Valsalva manoeuvre.
With multi-slice sequences, the osseous part of the auditory tube, the tubal cartilage (middle and lateral lamina), the ciliated epithelium, Ostmann's adipose body and the levator and tensor veli palatini muscles were delineated in all cases. During the Valsalva test, opening of the auditory tube was demonstrated in 20 of the 22 investigated sides using the dynamic TFE single slice sequence.
The introduced MRI protocol allow visualization of the opening of the auditory tube and provides detailed anatomical information of the nasopharynx. Comprehensive morphological and functional evaluation of the auditory tube becomes possible within a single examination'.
制定并评估一种使用磁共振成像(MRI)对咽鼓管进行解剖学描绘和功能测试的方案。
11名志愿者纳入本研究。形态学评估的成像方案包括轴位和冠状位T2加权快速自旋回波序列(TR/TE = 3194/100毫秒)以及T1加权梯度回波序列(TR/TE = 42/4.6毫秒)。功能测试采用单层技术,在瓦尔萨尔瓦动作前和动作过程中获取带有频谱脂肪抑制的动态快速梯度回波序列(TFE,TR/TE = 15/6.2毫秒;4秒)。
使用多层序列时,在所有病例中均能清晰显示咽鼓管的骨性部分、咽鼓管软骨(中间层和外层)、纤毛上皮、奥氏脂肪体以及腭帆提肌和腭帆张肌。在瓦尔萨尔瓦测试中,使用动态TFE单层序列,在22个被检查侧中的20个侧显示出咽鼓管开放。
所引入的MRI方案能够显示咽鼓管的开放情况,并提供鼻咽部的详细解剖信息。在一次检查中即可对咽鼓管进行全面的形态学和功能评估。