屏蔽电缆
足迹
超材料
灵敏度(控制系统)
可穿戴计算机
电磁线圈
响铃
声学
计算机科学
握手
超材料天线
电磁屏蔽
无线
电磁干扰
天线(收音机)
电子工程
材料科学
工程类
电信
物理
光电子学
电气工程
计算机硬件
全向天线
嵌入式系统
古生物学
GSM演进的增强数据速率
复合材料
缝隙天线
生物
作者
Xia Zhu,Ke Wu,Stephan W. Anderson,Xin Zhang
标识
DOI:10.1002/adma.202313692
摘要
Recent advancements in metamaterials have yielded the possibility of a wireless solution to improve signal-to-noise ratio (SNR) in magnetic resonance imaging (MRI). Unlike traditional closely packed local coil arrays with rigid designs and numerous components, these lightweight, cost-effective metamaterials eliminate the need for radio frequency cabling, baluns, adapters, and interfaces. However, their clinical adoption is limited by their low sensitivity, bulky physical footprint, and limited, specific use cases. Herein, a wearable metamaterial developed using commercially available coaxial cable, designed for a 3.0 T MRI system is introduced. This metamaterial inherits the coaxially-shielded structure of its constituent cable, confining the electric field within and mitigating coupling to its surroundings. This ensures safer clinical adoption, lower signal loss, and resistance to frequency shifts. Weighing only 50 g, the metamaterial maximizes its sensitivity by conforming to the anatomical region of interest. MRI images acquired using this metamaterial with various pulse sequences achieve an SNR comparable or even surpass that of a state-of-the-art 16-channel knee coil. This work introduces a novel paradigm for constructing metamaterials in the MRI environment, paving the way for the development of next-generation wireless MRI technology.
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