首页> 外文期刊>American Journal of Neuroradiology >3-T Imaging of the Cochlear Nerve and Labyrinth in Cochlear-Implant Candidates: 3D Fast Recovery Fast Spin-Echo versus 3D Constructive Interference in the Steady State Techniques
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3-T Imaging of the Cochlear Nerve and Labyrinth in Cochlear-Implant Candidates: 3D Fast Recovery Fast Spin-Echo versus 3D Constructive Interference in the Steady State Techniques

机译:人工耳蜗候选者的耳蜗神经和迷宫的3-T成像:稳态技术中的3D快速恢复,快速自旋回波与3D建设性干扰

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BACKGROUND AND PURPOSE: High-resolution imaging of the internal auditory canal and labyrinth at 1.5 T is often performed by using three-dimensional (3D) fast spin-echo or T2* techniques. We evaluated both techniques at 3 T in the preoperative assessment of patients being considered for cochlear implants. METHODS: Sagittal 3D fast recovery fast spin-echo (FRFSE) and 3D constructive interference in the steady state (CISS) images were acquired in eight patients at 3.0 T by using dual surface coils. Contrast-to-noise ratios (CNRs) for the intracanalicular nerve and CSF were measured in the internal auditory canal. Two neuroradiologists reviewed the images to determine whether the techniques provided images of diagnostic quality. RESULTS: CNRs for 3D CISS were twice those obtained with 3D FRFSE. Both techniques provided images of diagnostic quality, though spurious signal intensity loss at the apex of the superior semicircular canals was encountered on 3D FRFSE images in four of eight patients. CONCLUSION: Both 3D FRFSE and 3D CISS provide high-resolution images of the internal auditory canal and labyrinth at 3.0 T. We predict that the superior CNRs obtained with 3D CISS will prove advantageous as we move to smaller fields of view at higher field strength.
机译:背景与目的:通常通过使用三维(3D)快速自旋回波或T2 *在1.5 T时对内听道和迷路进行高分辨率成像 我们在考虑接受人工耳蜗植入的患者的术前评估 中对这两种技术进行了评估。 方法:矢状3D快速恢复快速旋转通过使用双重表面 在3.0 T下获得了8位患者在稳定状态(CISS)图像中产生的-echo(FRFSE)和 3D构造性干扰 线圈。在内听道中测量了小管内神经和脑脊液的对比噪声比(CNR)。 两名神经放射科医生对图像进行了检查,以确定是否为 FRFSE获得的CNR的两倍。两种技术都提供了诊断质量的图像,尽管在四个 的3D FRFSE图像上遇到了 上半圆管的顶点的杂散信号强度损失,结论:3D FRFSE和3D CISS均可提供3.0 T时内耳道和迷宫的高分辨率图像。 我们可以预见,随着我们以更高的场强移到较小的视场,使用3D CISS获得的卓越CNR将证明是有利的。

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