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2篇 您的检索式:作者名="Ruiying Shu"
    题名 作者 年代 出处 被引量
1Overview of lethal human coronaviruses显示文摘Coronavirus infections of multiple origins have spread to date worldwide,causing severe respiratory diseases.Seven coronaviruses that infect humans have been identified:HCoV-229E,HCoV-OC43,HCoV-NL63,HCoV-HKU1,SARS-CoV,MERS-CoV,and SARS-CoV-2.Among them,SARS-CoV and MERS-CoV caused outbreaks in 2002 and 2012,respectively.SARS-CoV-2(COVID-19)is the most recently discovered.It has created a severe worldwide outbreak beginning in late 2019,leading to date to over 4 million cases globally.Viruses are genetically simple,yet highly diverse.However,the recent outbreaks of SARS-CoV and MERS-CoV,and the ongoing outbreak of SARS-CoV-2,indicate that there remains a long way to go to identify and develop specific therapeutic treatments.Only after gaining a better understanding of their pathogenic mechanisms can we minimize viral pandemics.This paper mainly focuses on SARS-CoV,MERS-CoV,and SARS-CoV-2.Here,recent studies are summarized and reviewed,with a focus on virus–host interactions,vaccine-based and drug-targeted therapies,and the development of new approaches for clinical diagnosis and treatment.Bin Chen Er-Kang Tian Bin He Lejin Tian Ruiying Han Shuangwen Wang Qianrong Xiang Shu Zhang Toufic El Arnaout Wei Cheng 2020Signal Transduction and Targeted Therapy2020,5,1:0
2Development of the high-strength ductile ferritic alloys via regulating the intragranular and grain boundary precipitation of G-phase显示文摘A typical G-phase strengthened ferritic model alloy(1Ti:Fe-20Cr-3Ni-1Ti-3Si,wt.%)has been carefully studied using both advanced experimental(EBSD,TEM and APT)and theoretical(DFT)techniques.During the classic“solid solution and aging”process,the superfine(Fe,Ni)_(2)TiSi-L2_(1)particles densely precipitate within the ferritic grain and subsequently transform into the(Ni,Fe)_(16)Ti_(6)Si_(7)-G phase.In the meanwhile,the elemental segregation at grain boundaries and the resulting precipitation of a large amount of the(Ni,Fe)_(16)Ti_(6)Si_(7)-G phase are also observed.These nanoscale microstructural evolutions result in a remarkable increase in hardness(100-300 HV)and severe embrittlement.When the“cold rolling and aging”process is used,the brittle fracture is effectively suppressed without loss of nano-precipitation strengthening ef-fect.Superhigh yield strength of 1700 MPa with 4%elongation at break is achieved.This key improvement in mechanical properties is mainly attributed to the pre-cold rolling process which effectively avoids the dense precipitation of the G-phase at the grain boundary.These findings could shed light on the further exploration of the precipitation site via optimal processing strategies.Mujin Yang Chao Huang Jiajia Han Haichen Wu Yilu Zhao Tao Yang Shenbao Jin Chenglei Wang Zhou Li Ruiying Shu Cuiping Wang Huanming Lu Gang Sha Xingjun Liu 2023Journal of Materials Science & Technology2023,,5:0
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