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3.0 特斯拉颈椎和脊髓外(FACE)MRI 的柔性阵列线圈。

Flexible array coil for cervical and extraspinal (FACE) MRI at 3.0 Tesla.

机构信息

Hospital for Special Surgery, 535 East 70th Street, NY 10021, United States of America.

Tesla Dynamic Coils, Schimminck 12, 5301 Zaltbommel, The Netherlands.

出版信息

Phys Med Biol. 2023 Oct 26;68(21). doi: 10.1088/1361-6560/ad0217.

Abstract

High-resolution MRI of the cervical spine (c-spine) and extraspinal neck region requires close-fitting receiver coils to maximize the signal-to-noise ratio (SNR). Conventional, rigid C-spine receiver coils do not adequately contour to the neck to accommodate varying body shapes, resulting in suboptimal SNR. Recent innovations in flexible surface coil array designs may provide three-dimensional (3D) bendability and conformability to optimize SNR, while improving capabilities for higher acceleration factors.This work describes the design, implementation, and preliminarytesting of a novel, conformal 23-channel receive-only flexible array for cervical and extraspinal (FACE) MRI at 3-Tesla (T), with use of high-impedance elements to enhance the coil's flexibility. Coil performance was tested by assessing SNR and geometry factors (-factors) in a phantom compared to a conventional 21-channel head-neck-unit (HNU).imaging was performed in healthy human volunteers and patients using high-resolution c-spine and neck MRI protocols at 3T, including MR neurography (MRN).Mean SNR with the FACE was 141%-161% higher at left, right, and posterior off-isocenter positions and 4% higher at the isocenter of the phantom compared to the HNU. Parallel imaging performance was comparable for an acceleration factor () = 2 × 2 between the two coils, but improved for= 3 × 3 with mean-factors ranging from 1.46-2.15 with the FACE compared to 2.36-3.62 obtained with the HNU. Preliminary human volunteer and patient testing confirmed that equivalent or superior image quality could be obtained for evaluation of osseous and soft tissue structures of the cervical region with the FACE.A conformal and highly flexible cervical array with high-impedance coil elements can potentially enable higher-resolution imaging for cervical imaging.

摘要

颈椎(C 脊柱)和颈部脊柱外区域的高分辨率 MRI 需要紧密贴合的接收线圈,以最大限度地提高信噪比(SNR)。传统的刚性 C 脊柱接收线圈不能很好地贴合颈部以适应不同的体型,导致 SNR 不理想。最近在柔性表面线圈阵列设计方面的创新可能提供三维(3D)可弯曲性和可贴合性,以优化 SNR,同时提高更高加速因子的能力。这项工作描述了一种新颖的、贴合的 23 通道仅接收柔性阵列的设计、实现和初步测试,用于 3 特斯拉(T)的颈椎和脊柱外(FACE)MRI,使用高阻抗元件来增强线圈的灵活性。通过在体模中评估 SNR 和几何因子(-因子)与传统的 21 通道头颈部单元(HNU)进行比较,测试了线圈的性能。在 3T 下,使用高分辨率 C 脊柱和颈部 MRI 协议对健康志愿者和患者进行成像,包括磁共振神经成像(MRN)。与 HNU 相比,在左侧、右侧和后离轴位置,FACE 的平均 SNR 提高了 141%-161%,在体模的等中心位置提高了 4%。对于两个线圈之间的加速因子()= 2 × 2,并行成像性能相当,但对于= 3 × 3,FACE 的平均因子范围为 1.46-2.15,而 HNU 的平均因子为 2.36-3.62,性能有所提高。初步的志愿者和患者测试证实,对于评估颈椎区域的骨和软组织结构,FACE 可以获得等效或更高质量的图像。具有高阻抗线圈元件的贴合和高度灵活的颈椎阵列有可能实现更高分辨率的颈椎成像。

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