activity
20232026
most citedConformal Metamaterials with Active Tunability and Self-adaptivity for Magnetic Resonance Imaging

1 citations · 1 across the 6 of their papers we have counts for

collaborators

8 papers

physics.med-ph2026

A Wireless Volumetric Metamaterial Resonator for Breast MRI

Yuhan Liu, Xia Zhu, Christina A. LeBedis +2

High-performance breast magnetic resonance imaging (MRI) remains limited by the availability, geometry, and cost of dedicated receive coils. In contrast, spine coils are widely ins…

physics.med-ph2026

A Wireless Reconfigurable Metasurface for Enhanced Parallel Magnetic Resonance Imaging

Yuhan Liu, Xia Zhu, Ke Wu +4

Modern magnetic resonance imaging (MRI) relies on application-specific multi-channel receive coils to achieve high performance, but these coils are typically costly, rigid, and dif…

physics.med-ph2026

Circularly polarized metamaterial cage for homogeneous signal-to-noise ratio enhancement in magnetic resonance imaging

Yuhan Liu, Xia Zhu, Ke Wu +2

The signal-to-noise ratio (SNR) in magnetic resonance imaging (MRI) governs the quality of signal detection and directly impacts the clarity and reliability of the acquired images.…

physics.app-ph2024

A robust near-field body area network based on coaxially-shielded textile metamaterial

Xia Zhu, Ke Wu, Xiaohang Xie +2

A body area network (BAN) involving wearable sensors populated around the human body can continuously monitor physiological signals, finding applications in personal healthcare and…

physics.med-ph2023

Wireless, Customizable Coaxially-shielded Coils for Magnetic Resonance Imaging

Ke Wu, Xia Zhu, Stephan W. Anderson +1

Anatomy-specific RF receive coil arrays routinely adopted in magnetic resonance imaging (MRI) for signal acquisition, are commonly burdened by their bulky, fixed, and rigid configu…

physics.med-ph2023

Wearable Coaxially-shielded Metamaterial for Magnetic Resonance Imaging

Xia Zhu, Ke Wu, Stephan W. Anderson +1

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 traditio…