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Min Chen

Researcher at Huazhong University of Science and Technology

Publications -  1005
Citations -  42531

Min Chen is an academic researcher from Huazhong University of Science and Technology. The author has contributed to research in topics: Cloud computing & Computer science. The author has an hindex of 85, co-authored 843 publications receiving 33439 citations. Previous affiliations of Min Chen include Peking University & Institute of Molecular and Cell Biology.

Papers
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Big Data: A Survey

TL;DR: The background and state-of-the-art of big data are reviewed, including enterprise management, Internet of Things, online social networks, medial applications, collective intelligence, and smart grid, as well as related technologies.
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The mental health of medical workers in Wuhan, China dealing with the 2019 novel coronavirus.

TL;DR: The present work provides a rationale based approach for the selection of drugs with potential antiviral activity for SARS-CoV-2 infection better than the investigational drug/divdivRemdesivir and other antiviral drugs/drug combinations being evaluated.
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Body Area Networks: A Survey

TL;DR: This paper provides a detailed investigation of sensor devices, physical layer, data link layer, and radio technology aspects of BAN research, and presents a taxonomy of B Ban projects that have been introduced/proposed to date.
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Cache in the air: exploiting content caching and delivery techniques for 5G systems

TL;DR: A novel edge caching scheme based on the concept of content-centric networking or information-centric networks is proposed and evaluated, using trace-driven simulations to evaluate the performance of the proposed scheme and validate the various advantages of the utilization of caching content in 5G mobile networks.
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Influenza neuraminidase inhibitors possessing a novel hydrophobic interaction in the enzyme active site: design, synthesis, and structural analysis of carbocyclic sialic acid analogues with potent anti-influenza activity.

TL;DR: The design, synthesis, and in vitro evaluation of the novel carbocycles as transition-state-based inhibitors of influenza neuraminidase (NA) are described and the presence of a large hydrophobic pocket in the region corresponding to the glycerol subsite of sialic acid is revealed.