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Super-multiplexed imaging and coding in the range of radio frequency
by
Lin, Hongyu
, Jiang, Yuhang
, Gao, Jinhao
, Fan, Yifan
, Chen, Limin
in
140/131
/ 639/301/1005/1008
/ 639/638/11/878
/ 639/638/11/942
/ Ammonium
/ Choline
/ Coding
/ Counterfeit
/ Data processing
/ Encryption
/ Fluorination
/ Humanities and Social Sciences
/ Information processing
/ Information storage
/ Magnetic resonance imaging
/ multidisciplinary
/ Multiplexing
/ Platforms
/ Science
/ Science (multidisciplinary)
2025
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Super-multiplexed imaging and coding in the range of radio frequency
by
Lin, Hongyu
, Jiang, Yuhang
, Gao, Jinhao
, Fan, Yifan
, Chen, Limin
in
140/131
/ 639/301/1005/1008
/ 639/638/11/878
/ 639/638/11/942
/ Ammonium
/ Choline
/ Coding
/ Counterfeit
/ Data processing
/ Encryption
/ Fluorination
/ Humanities and Social Sciences
/ Information processing
/ Information storage
/ Magnetic resonance imaging
/ multidisciplinary
/ Multiplexing
/ Platforms
/ Science
/ Science (multidisciplinary)
2025
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Do you wish to request the book?
Super-multiplexed imaging and coding in the range of radio frequency
by
Lin, Hongyu
, Jiang, Yuhang
, Gao, Jinhao
, Fan, Yifan
, Chen, Limin
in
140/131
/ 639/301/1005/1008
/ 639/638/11/878
/ 639/638/11/942
/ Ammonium
/ Choline
/ Coding
/ Counterfeit
/ Data processing
/ Encryption
/ Fluorination
/ Humanities and Social Sciences
/ Information processing
/ Information storage
/ Magnetic resonance imaging
/ multidisciplinary
/ Multiplexing
/ Platforms
/ Science
/ Science (multidisciplinary)
2025
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Super-multiplexed imaging and coding in the range of radio frequency
Journal Article
Super-multiplexed imaging and coding in the range of radio frequency
2025
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Overview
The era of the Internet has led to an information explosion, creating significant challenges for current techniques in information storage and access. High-performance strategies that expand existing methods offer a promising solution. Imaging-based approaches are vital for information perception but remain underexplored for information processing due to limited multiplexity. Here, we introduce
19
F magnetic resonance imaging-Empowered information Assess and Storage Technique (FEAST), enabled by 22 fluorinated quaternary ammonium derivatives with distinct
19
F chemical shifts. We developed three coding platforms for FEAST: fluorinated choline analog solutions, fluorinated deep eutectic solvents, and fluorinated ionogels. These platforms allow 2-spatial-dimensional applications, such as 16-bit encoding, “dual-color” watermarking, multiplexed Colorcodes, and encrypted QR codes, as well as 3-spatial-dimensional applications like “cubic” information storage, implanted anti-counterfeit labels, and FEAST-guided encryption. This work highlights FEAST’s potential for advanced information storage and access, which is inspiring for further developments with versatile and robust coding platforms.
Imaging-based approaches have potential in information storage but achieving the required multiplexity can be challenging. Here, the authors report the development of an MRI-based technique using 22 fluorinated quaternary ammonium derivatives with distinct
19
F chemical shifts.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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