电磁线圈
射频线圈
无线电频率
计算机科学
信噪比(成像)
无线
联轴节(管道)
磁共振成像
噪音(视频)
并行通信
超材料
电子工程
声学
物理
电气工程
电信
光电子学
工程类
传输(电信)
人工智能
机械工程
图像(数学)
医学
放射科
作者
Zhiguang Mo,Shao Che,Feng Du,Enhua Xiao,Qiaoyan Chen,Nan Li,Sen Jia,Changjun Tie,Bing Wu,Xiaoliang Zhang,Hairong Zheng,Ye Li
标识
DOI:10.1002/advs.202503481
摘要
Abstract Wireless radiofrequency (RF) coils based on metasurfaces hold great promise for improving clinical magnetic resonance imaging (MRI) workflows by eliminating the need for cable connections to the patient bed and simplifying coil structures. A fundamental requirement for their clinical adoption is the ability to support parallel imaging, which reduces examination time and improves efficiency. Moreover, the implementation of parallel imaging often comes at the expense of image signal‐to‐noise ratio (SNR). Although several wireless RF coils incorporating metamaterials are reported, most do not support parallel imaging and many deliver suboptimal SNR performance. In this work, a novel wireless RF coil architecture is proposed, termed the near‐field coupling array (NFCA), which demonstrates both excellent SNR performance and robust parallel imaging capabilities. A general theoretical framework is presented that establishes a foundation for applying metasurface arrays in magnetic resonance RF coil design. The SNR expression for this architecture is derived from two perspectives, and its fundamental principles are validated through case studies. Experimental results show that the NFCA achieves a 66% SNR improvement over a conventional commercial RF coil architecture (i.e., a wired coil) while its average acceleration factor exceeds 94% of that of the commercial coil.
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