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Fan Yang

Researcher at China University of Petroleum

Publications -  1888
Citations -  34524

Fan Yang is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 65, co-authored 986 publications receiving 23818 citations. Previous affiliations of Fan Yang include G. D. Searle & Company & Peking University.

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Mesenchymal stem cell-loaded porous tantalum integrated with biomimetic 3D collagen-based scaffold to repair large osteochondral defects in goats

TL;DR: The chondrocytes/CM-BMSCs/pTa platform provides a novel therapeutic strategy for large osteochondral lesions in load-bearing areas caused by severe injury, necrosis, infection, degeneration, and tumor resection with a high profile of safety, effectiveness, and simplicity.
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Comparison of the preference-based EQ-5D-5L and SF-6D in patients with end-stage renal disease (ESRD)

TL;DR: Both EQ-5D-5L and SF-6D are valid instruments for assessing ESRD patients, however, the two preference-based measures cannot be used interchangeably and it appears that EQ-3D-3L would lead to more favorable cost-effectiveness results than SF- 6D if they are used in economic evaluations of interventions for E SRD.
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Seizures and risk of epilepsy in anti‐NMDAR, anti‐LGI1, and anti‐GABABR encephalitis

TL;DR: Evaluated seizure outcomes and potential factors associated with the development of epilepsy in patients with anti‐N‐methyl‐D‐aspartate receptor (NMDAR), anti‐leucine‐rich glioma‐inactivated 1 (LGI1), and anti‐gamma‐aminobutyric‐acid B receptor (GABABR) encephalitis.
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Synthesis of unsymmetrical 2,2'-biindolyl derivatives by a Cu-catalyzed N-arylation/Pd-catalyzed direct arylation sequential process.

TL;DR: A one-pot synthesis of unsymmetrical 2,2'-biindolyl derivatives through a Cu-catalyzed N-arylation/Pd-Catalyzed direct arylation sequence was described, and the desired biindolyls were obtained in moderate to good yields.
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Highly active and reflective MoS2 counter electrode for enhancement of photovoltaic efficiency of dye sensitized solar cells

TL;DR: In this paper, the reflectivity of the counter electrode (CE) is increased by vertically inclining the MoS2 on the substrate (FTO), which eliminates the complicated CE fabrication process.