Flexible array coil for cervical and extraspinal (FACE) MRI at 3.0 Tesla
作者:Frederik Abel, Ek T. Tan, Martijn Lunenburg, Carel van Leeuwen, Thijs van Hooren, Mark van Uden, Catalina Arteaga, Jana Vincent, Fraser Robb, Darryl B. Sneag · 发表于:Physics in Medicine and Biology · 年份:2023 · DOI:10.1088/1361-6560/ad0217 · 被引用次数:13 · 研究领域:Advanced MRI Techniques and Applications、Atomic and Subatomic Physics Research、Advanced NMR Techniques and Applications
Abstract Objective. 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. Approach. This work describes the design, implementation, and preliminary in vivo testing 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 ( g -factors) in a phantom compared to a conventional 21-channel head-neck-unit (HNU). In vivo imaging was performed in healthy human volunteers and patients using high-resolution c-spine and neck MRI protocols at 3T, including MR neurography (MRN). Main results. 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 ( R ) = 2 × 2 between the two coils, but improved for R = 3 × 3 with mean g -factors ranging from 1.46–2.15 with the FACE co...