首页> 外文期刊>European radiology >Separate visualization of endolymphatic space, perilymphatic space and bone by a single pulse sequence; 3D-inversion recovery imaging utilizing real reconstruction after intratympanic Gd-DTPA administration at 3 Tesla.
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Separate visualization of endolymphatic space, perilymphatic space and bone by a single pulse sequence; 3D-inversion recovery imaging utilizing real reconstruction after intratympanic Gd-DTPA administration at 3 Tesla.

机译:通过单个脉冲序列分别显示内淋巴间隙,淋巴周间隙和骨骼;在3特斯拉给药鼓膜内Gd-DTPA后利用真实重建进行3D反转恢复成像。

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摘要

Twenty-four hours after intratympanic administration of gadolinium contrast material (Gd), the Gd was distributed mainly in the perilymphatic space. Three-dimensional FLAIR can differentiate endolymphatic space from perilymphatic space, but not from surrounding bone. The purpose of this study was to evaluate whether 3D inversion-recovery turbo spin echo (3D-IR TSE) with real reconstruction could separate the signals of perilymphatic space (positive value), endolymphatic space (negative value) and bone (near zero) by setting the inversion time between the null point of Gd-containing perilymph fluid and that of the endolymph fluid without Gd. Thirteen patients with clinically suspected endolymphatic hydrops underwent intratympanic Gd injection and were scanned at 3 T. A 3D FLAIR and 3D-IR TSE with real reconstruction were obtained. In all patients, low signal of endolymphatic space in the labyrinth on 3D FLAIR was observed in the anatomically appropriate position, and it showed negative signal on 3D-IR TSE. The low signal area of surrounding bone on 3D FLAIR showed near zero signal on 3D-IR TSE. Gd-containing perilymphatic space showed high signal on 3D-IR TSE. In conclusion, by optimizing the inversion time, endolymphatic space, perilymphatic space and surrounding bone can be separately visualized on a single image using a 3D-IR TSE with real reconstruction.
机译:鼓室内注射of对比剂(Gd)后二十四小时,Gd主要分布在淋巴间隙。三维FLAIR可以将淋巴管腔与周围淋巴管区分开,但不能与周围骨区分开。这项研究的目的是评估通过真实重建的3D反转恢复涡轮自旋回波(3D-IR TSE)是否可以通过以下方法分离淋巴周空间(正值),内淋巴空间(负值)和骨骼(接近零)的信号在含Gd的淋巴液的零点和不含Gd的内淋巴液的零点之间设置反转时间。十三名临床怀疑有淋巴结积水的患者接受了鼓室内Gd注射,并在3 T下进行了扫描。获得了真正重建的3D FLAIR和3D-IR TSE。在所有患者中,在解剖学上适当的位置都观察到了3D FLAIR上迷宫中的内淋巴间隙的低信号,并且在3D-IR TSE上显示了负信号。 3D FLAIR上周围骨骼的低信号区域在3D-IR TSE上显示接近零信号。含Gd的淋巴间隙在3D-IR TSE上显示高信号。总之,通过优化反转时间,可以使用具有真实重建功能的3D-IR TSE在单个图像上分别可视化内淋巴空间,淋巴周空间和周围骨骼。

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