Mengfan Zhou
Huazhong University of Science and Technology
7 Papers
5 Citations
Mengfan Zhou is an academic researcher from Huazhong University of Science and Technology. The author has contributed to research in topics: Computer science & Medicine. The author has an hindex of 1, co-authored 2 publications.
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Papers
Smartphone-based platforms implementing microfluidic detection with image-based artificial intelligence
Bangfeng Wang,Yiwei Li,Mengfan Zhou,Yulong Han,Mingyu Zhang,Zhaolong Gao,Zetai Liu,Peng Chen,Wei Du,Jing Zhang,Xiao Jun Feng,Bi-Feng Liu +11 more
TL;DR: In this article , the authors summarize recent progress in mobile health platforms, including the aspects of microfluidic chips, imaging modalities, supporting components, and the development of software algorithms.
A magnet-actuated microfluidic array chip for high-throughput pretreatment and amplification and detection of multiple pathogens.
TL;DR: In this paper, a magnet-actuated microfluidic array chip (MMAC) is developed with integrated sample processing and nucleic acid amplification for the rapid detection of multiple pathogens by loop-mediated isothermal amplification.
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Fully integrated and automated centrifugal microfluidic chip for point-of-care multiplexed molecular diagnostics.
Yujin Xiao,Mengfan Zhou,Changgen Liu,Siyu Gao,Chao Wan,Shunji Li,Chenxi Dai,Wei Du,Xiao Jun Feng,Yiwei Li,Peng Chen,Bi Feng Liu +11 more
TL;DR: Researchers developed a fully automated centrifugal microfluidic chip for point-of-care multiplexed molecular diagnostics, achieving exceptional sensitivity and specificity in detecting pathogens within 40 minutes, with potential applications in precision medicine and high-throughput biochemical analysis.
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On-Line Dual-Active Valves Based Centrifugal Microfluidic Chip for Fully Automated Point-of-Care Immunoassay.
Chungen Qian,Chao Wan,Shunji Li,Yujin Xiao,Huijuan Yuan,Siyu Gao,Liqiang Wu,Mengfan Zhou,Xiao Jun Feng,Yiwei Li,Peng Chen,Bi-Feng Liu +11 more
TL;DR: A novel online dual-active valve-based centrifugal microfluidic chip, termed DAVM, for fully automatic point-of-care immunoassay, which mitigates the challenges of hydrophilic/hydrophobic modifications and unstable valve control performance commonly observed in passive valve controls.
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A high-throughput ultrasonic spraying inoculation method promotes colony cultivation of rare microbial species
Xizhi Huang,Pengjie Li,Mengfan Zhou,Yiwei Li,Xiaowen Ou,Peng Chen,Georg Guggenberger,Bi-Feng Liu +7 more
TL;DR: In this paper, an ultrasonic spraying inoculation (USI) method was proposed that disperses microbial suspensions into millions of aerosols containing single cells, which can be deposited freely on a gel plate to achieve high-throughput culturing of colonies.
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