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首页> 外文期刊>Journal of the Korean Physical Society >7-T Magnetic Resonance Imaging of the Inner Ear's Anatomy by Using Dual Four-element Radiofrequency Coil Arrays and the VIBE Sequence
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7-T Magnetic Resonance Imaging of the Inner Ear's Anatomy by Using Dual Four-element Radiofrequency Coil Arrays and the VIBE Sequence

机译:使用双四元素射频线圈阵列和VIBE序列对内耳解剖结构进行7-T磁共振成像

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摘要

An ultra-high-field magnetic resonance (MR) scanner and a specially-optimized radiofrequency (RF) coil and sequence protocol are required to obtain high-resolution images of the inner ear that can noninvasively confirm pathologic diagnoses. In phantom studies, the MR signal distribution of the gradient echo MR images generated by using a customized RF coil was compared with that of a commercial volume coil. The MR signal intensity of the customized RF coil decreases rapidly from near the RF coil plane toward the exterior of the phantom. However, the signal sensitivity of this coil is superior on both sides of the phantom, corresponding to the petrous pyramid. In in-vivo 7-T MR imaging, a customized RF coil and a volumetric-interpolated breath-hold examination imaging sequence are employed for visualization of the inner ear's structure. The entire membranous portion of the cochlear and the three semicircular canals, including the ductus reunions, oval window, and round window with associated nervous tissue, were clearly depicted with sufficient spatial coverage for adequate inspection of the surrounding anatomy. Developments from a new perspective to inner ear imaging using the 7-T modality could lead to further improved image sensitivity and, thus, enable ultra-structural MR imaging.
机译:需要超高场磁共振(MR)扫描仪以及经过特别优化的射频(RF)线圈和序列协议,以获取可以无创地确认病理诊断的内耳高分辨率图像。在幻像研究中,将使用定制RF线圈生成的梯度回波MR图像的MR信号分布与商用容积线圈进行了比较。定制的RF线圈的MR信号强度从RF线圈平面附近向体模外部迅速减小。但是,该线圈的信号灵敏度在体模的两侧都比较好,对应于小金字塔。在体内7-T MR成像中,使用定制的RF线圈和容积插值的屏气检查成像序列来显示内耳的结构。清楚地描绘了耳蜗的整个膜状部分和三个半规管,包括导管团聚,椭圆形窗口和带有相关神经组织的圆形窗口,并具有足够的空间覆盖范围,可以对周围的解剖结构进行充分的检查。从新角度发展到使用7-T模式的内耳成像技术,可以进一步提高图像灵敏度,从而实现超结构MR成像。

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