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About the database ScholarIQanswers from OpenAlex & ORCID
How has Xiaohan Wang's publication output changed over time?
ScholarIQpublication output · 1988–2024
Output grew0% over the shown period — from 1 works in 1988 to 1 in 2024.
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198819962011201320152017201820232024
What are the most-cited papers on Xiaohan Wang?
ScholarIQmost cited works
The PR5K receptor protein kinase from Arabidopsis thaliana is structurally related to a family of plant defense proteins.
Xiaohan Wang, Peter Zafian, M. Iqbal Choudhary, Michael Lawton
Proceedings of the National Academy of Sciences. 1996193 CitationsOPEN ACCESS
Structural Diversity and Biological Activities of Cyclic Depsipeptides from Fungi
Xiaohan Wang, Xiao Yang Gong, Peng Li, Daowan Lai, Ligang Zhou
Molecules. 2018133 CitationsOPEN ACCESS
A Novel Human <i>CAMK2A</i> Mutation Disrupts Dendritic Morphology and Synaptic Transmission, and Causes ASD-Related Behaviors
Jason R. Stephenson, Xiaohan Wang, Tyler L. Perfitt, Walker P. Parrish, Brian C. Shonesy, Christian R. Marks, Douglas P. Mortlock, Terunaga Nakagawa, James S. Sutcliffe, Roger Colbran
Journal of Neuroscience. 2017130 CitationsOPEN ACCESS
SPECT Compton-scattering correction by analysis of energy spectra.
Kenneth F. Koral, Xiaoqin Wang, W.L. Rogers, N.H. Clinthorne, Xiaohan Wang
PubMed. 1988125 Citations
Bioactive Bis-naphtho-γ-pyrones from Rice False Smut Pathogen <i>Ustilaginoidea virens</i>
Shiqiong Lu, Weibo Sun, Jiajia Meng, Ali Wang, Xiaohan Wang, Jin Tian, Xiaoxiang Fu, Jungui Dai, Yang Liu, Daowan Lai, Ligang Zhou
S134644764. 2015104 Citations
Related on ScholarIQ
Qingdao University
Institution
The PR5K receptor protein kinase from Arabidopsis thaliana is structurally related to a family of plant defense proteins.
Paper
Structural Diversity and Biological Activities of Cyclic Depsipeptides from Fungi
Paper
A Novel Human <i>CAMK2A</i> Mutation Disrupts Dendritic Morphology and Synaptic Transmission, and Causes ASD-Related Behaviors
Paper
SPECT Compton-scattering correction by analysis of energy spectra.
Paper
Bioactive Bis-naphtho-γ-pyrones from Rice False Smut Pathogen <i>Ustilaginoidea virens</i>
Paper