Yongxiang Feng
Papers
1
Total Citations
3
H-Index
1
About
Yongxiang Feng is a pioneering researcher in the field of single-cell biophysics and microfluidics, with a focus on developing multimodal characterization platforms for cellular analysis. His most notable contribution is the impedance-based multimodal electrical-mechanical intrinsic flow cytometry framework, published in *Small* (2023), which represents a breakthrough in high-dimensional single-cell analysis. This innovative system functions like an intelligent robotic platform, enabling simultaneous 5D intrinsic characterization of individual cells by integrating electrical and mechanical property measurements. The technology allows researchers to probe cellular biophysical signatures—including impedance, stiffness, and deformability—in a label-free, high-throughput manner, offering unprecedented insights into cell state and heterogeneity. While his most cited work has garnered 3 citations to date, its recency and publication in a top-tier journal signal growing recognition of its potential impact in biomedical diagnostics and cellular phenotyping. Feng’s work bridges engineering and biology, providing a powerful tool for applications ranging from disease detection to drug screening. His contributions are particularly valuable for students and researchers seeking to understand how microfluidic technologies can unlock the intrinsic physical properties of cells, advancing the frontier of single-cell analysis.
Research Focus
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Top Papers
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