High-Field MR Center, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Department for Biomedical Magnetic Resonance, University of Tübingen, Tübingen, Germany.
NMR Biomed. 2022 Oct;35(10):e4773. doi: 10.1002/nbm.4773. Epub 2022 Jun 23.
Important issues in designing radiofrequency (RF) coils for human head imaging at ultra-high field (UHF; ≥7 T) are the inhomogeneity and longitudinal coverage (along the magnet axis) of the transmit (Tx) RF field. Both the homogeneity and coverage produced by Tx volume coils can be improved by means of three-dimensional (3D) RF shimming, which requires the use of multirow Tx-arrays. In addition, according to recent findings of the ultimate intrinsic signal-to-noise ratio (UISNR) theory, the loop-only receive (Rx) arrays do not provide optimal SNR near the brain center at UHF. The latter can be obtained by combining complementary conductive structures carrying different current patterns (e.g., loops and dipole antennas). In this work, we developed, constructed, and evaluated a novel 32-element hybrid array design for human head imaging at 7 T. The array consists of 16 transceiver loops placed in two rows circumscribing the head and 16 folded-end Rx-only dipoles positioned in the centers of loops. By placing all elements in a single layer, we increased RF power deposition into the tissue and, thus, preserved the Tx-efficiency. Using this hybrid design also simplifies the coil structure by minimizing the total number of array elements. The array demonstrated whole brain coverage, 3D RF shimming capability, and high SNR. It provided ~15% higher SNR near the brain center and, depending on the RF shim mode, from 20% to 40% higher Tx-efficiency than a common commercial head array coil.
在超高场(UHF;≥7 T)进行人体头部成像时,设计射频(RF)线圈的重要问题是发射(Tx)RF 场的不均匀性和纵向覆盖范围(沿磁体轴)。Tx 容积线圈产生的均匀性和覆盖范围可以通过三维(3D)RF 调谐来改善,这需要使用多排 Tx 阵列。此外,根据最近的终极固有信噪比(UISNR)理论的发现,仅环路接收(Rx)阵列在 UHF 时在大脑中心附近不能提供最佳 SNR。后者可以通过结合携带不同电流模式的互补导电结构(例如,环路和偶极天线)来实现。在这项工作中,我们开发、构建和评估了一种用于 7 T 人体头部成像的新型 32 元件混合阵列设计。该阵列由放置在头部周围的两排中的 16 个收发器环路和放置在环路中心的 16 个折叠端 Rx 仅偶极子组成。通过将所有元件放置在单个层中,我们增加了RF 功率向组织中的沉积,从而保持了 Tx 效率。使用这种混合设计还通过最小化阵列元件的总数简化了线圈结构。该阵列具有全脑覆盖范围、3D RF 调谐能力和高 SNR。它在大脑中心附近提供了约 15%的更高 SNR,并且根据 RF 调谐模式,Tx 效率比普通商用头部阵列线圈高 20%至 40%。