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5篇 您的检索式:作者名="Peichen Wu"
    题名 作者 年代 出处 被引量
1Lane-mark extraction for automobiles under complex conditions显示文摘Wu Peichen Chang Chinyu Lin Changhong 2014Pattern Recognition2014,47,8:1
2Proteome-Wide Profiling of the Covalent-Druggable Cysteines with a Structure-Based Deep Graph Learning Network显示文摘Covalent ligands have attracted increasing attention due to their unique advantages,such as long residence time,high selectivity,and strong binding affinity.They also show promise for targets where previous efforts to identify noncovalent small molecule inhibitors have failed.However,our limited knowledge of covalent binding sites has hindered the discovery of novel ligands.Therefore,developing in silico methods to identify covalent binding sites is highly desirable.Here,we propose DeepCoSI,the first structure-based deep graph learning model to identify ligandable covalent sites in the protein.By integrating the characterization of the binding pocket and the interactions between each cysteine and the surrounding environment,DeepCoSI achieves state-of-the-art predictive performances.The validation on two external test sets which mimic the real application scenarios shows that DeepCosI has strong ability to distinguish ligandable sites from the others.Finally,we profiled the entire set of protein structures in the RCSB Protein Data Bank(PDB)with DeepCoSI to evaluate the ligandability of each cysteine for covalent ligand design,and made the predicted data publicly available on website.Hongyan Du Dejun Jiang Junbo Gao Xujun Zhang Lingxiao Jiang Yundian Zeng Zhenxing Wu Chao Shen Lei Xu Dongsheng Cao Tingjun Hou Peichen Pan 2022Research2022,,4:1
3A new lanthanum and calcium borate La2CaB10O19显示文摘WU Yicheng LIU Jiangguo FU Peichen 2001Chemistry of Materials2001,13,3:1
4A Dual-Band GNSS RF Front With a Pseudo- Differential LNA 显示文摘Jun Wu Peichen Jiang etc 20111EEE ''FRANSAC- TIONS ON CIRCUITS AND SYSTEMS2011,2011,5:1
5Development of a monitoring and warning system based on optical fiber sensing technology for masonry retaining walls and trees显示文摘Hong Kong has a long history of applying masonry retaining walls to provide horizontal platforms and stabilize man-made slopes.Due to the sub-tropical climate,some masonry retaining walls are colonized by trees.Extreme weather,such as typhoons and heavy rains,may cause rupture or root failure of those trees,thus resulting in instability of the retaining walls.A monitoring and warning system for the movement of masonry retaining walls and sway of trees has been designed with the application of fiber Bragg grating(FBG)sensing technology.The monitoring system is also equipped with a solar power system and 4G data transmission devices.The key functions of the proposed monitoring system include remote sensing and data access,early warning,and real-time data visualization.The setups and working principles of the monitoring systems and related transducers are introduced.The feasibility,accuracy,serviceability and reliability of this monitoring system have been checked by in-site calibration tests and four-month monitoring.Besides,a two-level interface has been developed for data visualization.The monitoring results show that the monitored masonry retaining wall had a reversible movement up to 2.5 mm during the monitoring period.Besides,it is found that the locations of the maximum strain on trees depend on the crown spread of trees.Peichen Wu Daoyuan Tan Shaoqun Lin Wenbo Chen Jianhua Yin Numan Malik An Li 2022Journal of Rock Mechanics and Geotechnical Engineering2022,14,4:0
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