Upload Records Snowball Search Search OpenAlex
About the database ScholarIQanswers from OpenAlex & ORCID
How has Xinhua Li's publication output changed over time?
ScholarIQpublication output · 1988–2022
Output grew0% over the shown period — from 1 works in 1988 to 1 in 2022.
1
1
1
1
1
5
1
1988200020022008201620172022
What are the most-cited papers on Xinhua Li?
ScholarIQmost cited works
New insights into the carbonate karstic fault system and reservoir formation in the Southern Tahe area of the Tarim Basin
Xinbian Lu, Yan Wang, Fei Tian, Xinhua Li, Debin Yang, Tao Li, Yanping Lv, Xinming He
S93565542. 2017154 Citations
The ClC-3 chloride channel promotes acidification of lysosomes in CHO-K1 and Huh-7 cells
Xinhua Li, Ting Wang, Zhifang Zhao, Steven A. Weinman
S62704344. 2002140 Citations
Octacosanol Attenuates Inflammation in Both RAW264.7 Macrophages and a Mouse Model of Colitis
Tianyi Guo, Qinlu Lin, Xinhua Li, Ying Nie, Long Wang, Limin Shi, Wei Xu, Tao Hu, Ting Guo, Luo Fei-jun
S134644764. 2017139 Citations
Biophysical Properties of ClC-3 Differentiate It from Swelling-activated Chloride Channels in Chinese Hamster Ovary-K1 Cells
Xinhua Li, Kazuo Shimada, Lori Showalter, Steven A. Weinman
S140251998. 2000132 CitationsOPEN ACCESS
Anti-hyperlipidemic effect of rice bran polysaccharide and its potential mechanism in high-fat diet mice
Ying Nie, Feijun Luo, Long Wang, Tao Yang, Limin Shi, Xinhua Li, Junjun Shen, Wei Xu, Ting Guo, Qinlu Lin
Food & Function. 2017119 Citations
Related on ScholarIQ
Xidian University
Institution
New insights into the carbonate karstic fault system and reservoir formation in the Southern Tahe area of the Tarim Basin
Paper
The ClC-3 chloride channel promotes acidification of lysosomes in CHO-K1 and Huh-7 cells
Paper
Octacosanol Attenuates Inflammation in Both RAW264.7 Macrophages and a Mouse Model of Colitis
Paper
Biophysical Properties of ClC-3 Differentiate It from Swelling-activated Chloride Channels in Chinese Hamster Ovary-K1 Cells
Paper
Anti-hyperlipidemic effect of rice bran polysaccharide and its potential mechanism in high-fat diet mice
Paper