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Qiang He

Researcher at Chongqing University

Publications -  326
Citations -  7217

Qiang He is an academic researcher from Chongqing University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 35, co-authored 283 publications receiving 3898 citations. Previous affiliations of Qiang He include Fudan University & Sun Yat-sen University.

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Acute kidney injury in China: a cross-sectional survey

TL;DR: A nationwide, cross-sectional survey of adult patients who were admitted to hospital in 2013 in academic or local hospitals from 22 provinces in mainland China aimed to evaluate the burden of AKI and assess the availability of diagnosis and treatment and found that 1·4-2·9 million people with AKI were admitted in China in 2013.
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Double-perovskites A2FeMoO6−δ (A = Ca, Sr, Ba) as anodes for solid oxide fuel cells

TL;DR: In this paper, double-perovskites A 2 FeMoO 6− δ (A ǫ, Sr, Ba) have been investigated as potential anode materials for solid oxide fuel cells (SOFCs).
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Locating bulk metallic glasses with high fracture toughness Chemical effects and composition optimization

TL;DR: In this paper, the authors developed new bulk metallic glasses (BMGs) with optimized glass-forming ability (GFA), in ternary Zr-Cu-Al and quaternary ZR-Ti-Co-Al systems, and measured the toughness for ZrTM-Al (TM = Co, Ni) BMG compositions with high toughness.
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FAK signaling is critical for ErbB-2/ErbB-3 receptor cooperation for oncogenic transformation and invasion

TL;DR: It is demonstrated that focal adhesion kinase (FAK) is essential for oncogenic transformation and cell invasion that is induced by ErbB-2 and -3 receptor signaling and distinct FAK signaling has an essential function in Erb B-induced oncogenesis and invasiveness.
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Impacts of chlorothalonil on denitrification and N2O emission in riparian sediments: Microbial metabolism mechanism.

TL;DR: The results suggest that the safety threshold of CTN accumulation for inhibiting sediment denitrification is approximately 2 mg kg-1, and imply that the wide presence of pesticides in riparian zones could impact eutrophication control of aquatic ecosystems.