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Zhiteng Ma

Showing results (1-10 of 11) with videos related to

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Journal of Clinical Medicine|September 9, 2022
The Effects of Scanning Speed and Standoff Distance of the Fiber on Dusting Efficiency during Short Pulse Holmium: YAG Laser LithotripsyJunqin Chen, Daiwei Li, Wenjun Yu, et al.
Science Advances|January 2, 2026
Precision acoustofluidics for high-throughput mechanobiology in suspension cellsKaichun Yang, Ruoyu Zhong, Ke Li, et al.
Science Advances|December 17, 2025
Programmable acoustofluidic engineering for creating gradient biomaterialsYujing Lu, Ye He, Jianping Xia, et al.
Microsystems & Nanoengineering|November 20, 2024
Sound innovations for biofabrication and tissue engineeringMengxi Wu, Zhiteng Ma, Zhenhua Tian, et al.
Nature Communications|November 22, 2023
Acoustofluidic Interfaces for the Mechanobiological Secretome of MSCsYe He, Shujie Yang, Pengzhan Liu, et al.
Science Advances|April 29, 2026
Space-time acoustofluidic tweezers for dynamic and selective manipulation of microparticlesQian Wu, Zhiteng Ma, Kaichun Yang, et al.
Lab on a Chip|June 16, 2026
Integrated microfluidic biosensors: shaping the future of quantitative life sciences and on-chip molecular diagnosticsTy Naquin, Chloe Naquin, Qian Wu, et al.
Science Advances|December 22, 2023
Cellular immunity analysis by a modular acoustofluidic platform: CIAMAPRuoyu Zhong, Matthew Sullivan, Neil Upreti, et al.
Science Advances|August 13, 2025
Nanoscale acoustic oscillator for mechanoimmunology: NAOMIYe He, Ke Jin, Bo Pan, et al.
Nature Communications|August 10, 2024
Acoustofluidic-based therapeutic apheresis systemMengxi Wu, Zhiteng Ma, Xianchen Xu, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Journal of Clinical Medicine|September 9, 2022
The Effects of Scanning Speed and Standoff Distance of the Fiber on Dusting Efficiency during Short Pulse Holmium: YAG Laser LithotripsyJunqin Chen, Daiwei Li, Wenjun Yu, et al.
Science Advances|January 2, 2026
Precision acoustofluidics for high-throughput mechanobiology in suspension cellsKaichun Yang, Ruoyu Zhong, Ke Li, et al.
Science Advances|December 17, 2025
Programmable acoustofluidic engineering for creating gradient biomaterialsYujing Lu, Ye He, Jianping Xia, et al.
Microsystems & Nanoengineering|November 20, 2024
Sound innovations for biofabrication and tissue engineeringMengxi Wu, Zhiteng Ma, Zhenhua Tian, et al.
Nature Communications|November 22, 2023
Acoustofluidic Interfaces for the Mechanobiological Secretome of MSCsYe He, Shujie Yang, Pengzhan Liu, et al.
Science Advances|April 29, 2026
Space-time acoustofluidic tweezers for dynamic and selective manipulation of microparticlesQian Wu, Zhiteng Ma, Kaichun Yang, et al.
Lab on a Chip|June 16, 2026
Integrated microfluidic biosensors: shaping the future of quantitative life sciences and on-chip molecular diagnosticsTy Naquin, Chloe Naquin, Qian Wu, et al.
Science Advances|December 22, 2023
Cellular immunity analysis by a modular acoustofluidic platform: CIAMAPRuoyu Zhong, Matthew Sullivan, Neil Upreti, et al.
Science Advances|August 13, 2025
Nanoscale acoustic oscillator for mechanoimmunology: NAOMIYe He, Ke Jin, Bo Pan, et al.
Nature Communications|August 10, 2024
Acoustofluidic-based therapeutic apheresis systemMengxi Wu, Zhiteng Ma, Xianchen Xu, et al.
Pageof 2