X
Xiang Zhang
Researcher at Baylor College of Medicine
Publications - 3483
Citations - 144843
Xiang Zhang is an academic researcher from Baylor College of Medicine. The author has contributed to research in topics: Medicine & Computer science. The author has an hindex of 154, co-authored 1733 publications receiving 117576 citations. Previous affiliations of Xiang Zhang include University of California, Berkeley & University of Texas MD Anderson Cancer Center.
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Interface Engineering with Zincophilic Mxene for Regulated Deposition of Dendrite-Free Zn Metal Anode
Xiaodong Zhu,Xuanyang Li,Melchizedek Lord Kwesi Essandoh,Jian Fong. Tan,Ziyi Cao,Xiang Zhang,Pei Dong,Pulickel M. Ajayan,Mingxin Ye,Jianfeng Shen +9 more
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Interface structure of InAs grown on GaAs(001) surfaces by molecular beam epitaxy
TL;DR: In this paper, a series of InAs layers has been grown on GaAs(001) surfaces by MBE using a wide range of growth conditions, and cross-sectional TEM studies of the interface showed the presence of (In,Ga)As protrusions.
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A finite element study of fatigue crack propagation in single lap bonded joint with process-induced disbond
TL;DR: In this paper, a method for predicting fatigue crack propagation in adhesive bonded composite joints with an initial full-width disbond using finite element analysis and numerical integration of the material's fatigue crack growth rate law was presented.
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FGFR1-Activated Translation of WNT Pathway Components with Structured 5′ UTRs Is Vulnerable to Inhibition of EIF4A-Dependent Translation Initiation
Tuan M. Nguyen,Elena B. Kabotyanski,Yongchao Dou,Lucas C. Reineke,Peng Zhang,Xiang Zhang,Anna Malovannaya,Sung Yun Jung,Qianxing Mo,Kevin Roarty,Yiwen Chen,Bing Zhang,Joel R. Neilson,Richard E. Lloyd,Charles M. Perou,Matthew J. Ellis,Jeffrey M. Rosen +16 more
TL;DR: Analysis of individual genes demonstrated that acute FGF hyperactivation increased translation of many stem cell self-renewal regulators, including WNT signaling components, and decreased translation of genes regulating cellular senescence, suggesting their vulnerability to inhibitors that target the RNA helicase EIF4A.
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Modeling the directed transmission and reflection enhancements of the lasing surface plasmon amplification by stimulated emission of radiation in active metamaterials
TL;DR: Zheng-Gao Dong, Hui Liu, Tao Li, Zhi-Hong Zhu, Shu-Ming Wang, Jing-Xiao Cao, Shi-Ning Zhu, and X. Zhang.