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面向7-T头部成像的大直径发射线圈:一组发射元件设计概念的详细比较

Towards Large Diameter Transmit Coils for 7-T Head Imaging: A Detailed Comparison of a Set of Transmit Element Design Concepts.

作者信息

Joris Hubmann Max, Orzada Stephan, Kowal Robert, Anton Grimm Johannes, Speck Oliver, Maune Holger

机构信息

Siemens Healthineers AG, Erlangen, Germany.

Faculty of Electrical Engineering and Information Technology, Otto-von-Guericke University, Magdeburg, Germany.

出版信息

NMR Biomed. 2025 May;38(5):e70030. doi: 10.1002/nbm.70030.

Abstract

Many different transmit (Tx) coil concepts and designs for 7-T magnetic resonance imaging of the head have been proposed. Most of them are placed close to the head and in combination with the receive coils creating a helmet-like structure. This limits the space for additional equipment for external stimuli. A large diameter transmit coil can increase the ease using supplementary measurement devices. Therefore, this study systematically evaluated nine different Tx elements regarding their performance within a large diameter transmit coil with a diameter  350 mm. Each Tx element was examined regarding its power and specific absorption rate (SAR) efficiencies, its loading dependence, intrinsic decoupling, and its radio frequency (RF) shimming capability. Additionally, an experimental validation of -maps was performed. The loop-based Tx elements (circular and rectangular loop) provided the highest power and SAR efficiency with at least 15.5% and 21.2% higher efficiencies for a single channel and 22.1% and 18.0% for the eight-channel array, respectively. In terms of voxel-wise power efficiency, the circular loop was the superior Tx element type within most of the head. Looking at the voxel-wise SAR efficiency, the loop-based elements manifest themselves as the most efficient type within most of the central brain. The mutual coupling was lowest for the passively fed dipole ( 31.23 dB). The highest RF shimming capability in terms of sum of normalized singular values was calculated for the rectangular (4.21) and the circular loop (4.36), whereby the L-curve results showed that the arrays have only minor shimming performance differences for the transversal slice. For the hippocampus, the meander element provided the highest overall homogeneity with a minimal coefficient of variation (CoV) of 5.1%. This work provides extensive and unique data for single and eight-channel Tx elements applying common performance benchmarks and enables further discourse on multi-channel evaluations towards large diameter Tx coils at 7-T head imaging. On the bases of the provided results, the preferable Tx element type for this specific application is loop-based.

摘要

针对7T头部磁共振成像,人们提出了许多不同的发射(Tx)线圈概念和设计。其中大多数靠近头部放置,并与接收线圈结合形成类似头盔的结构。这限制了用于外部刺激的附加设备的空间。大直径发射线圈可以增加使用辅助测量设备的便利性。因此,本研究系统地评估了九种不同的Tx元件在直径为350mm的大直径发射线圈中的性能。对每个Tx元件的功率和比吸收率(SAR)效率、负载依赖性、固有去耦及其射频(RF)匀场能力进行了检查。此外,还对B1 + 图进行了实验验证。基于环形的Tx元件(圆形和矩形环)提供了最高的功率和SAR效率,单通道效率至少分别高出15.5%和21.2%,八通道阵列分别高出22.1%和18.0%。就体素功率效率而言,圆形环是头部大部分区域中更优的Tx元件类型。从体素SAR效率来看,基于环形的元件在大脑大部分中央区域表现为最有效的类型。无源馈电偶极子的互耦最低(-31.23dB)。就归一化奇异值之和而言,矩形环(4.21)和圆形环(4.36)的RF匀场能力最高,L曲线结果表明,对于横向切片,阵列的匀场性能差异很小。对于海马体,曲折元件提供了最高的整体均匀性,最小变异系数(CoV)为5.1%。这项工作为单通道和八通道Tx元件应用通用性能基准提供了广泛而独特的数据,并有助于在7T头部成像中进一步探讨大直径Tx线圈的多通道评估。根据提供的结果,这种特定应用中更可取的Tx元件类型是基于环形的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cb0/11971727/beca8e7b1688/NBM-38-e70030-g004.jpg

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