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34篇 您的检索式:作者名="K.Wang"
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1Future Physics Programme of BESⅢ显示文摘There has recently been a dramatic renewal of interest in hadron spectroscopy and charm physics. This renaissance has been driven in part by the discovery of a plethora of charmonium-like XYZ states at BESⅢ and B factories, and the observation of an intriguing proton-antiproton threshold enhancement and the possibly related X(1835) meson state at BESⅢ, as well as the threshold measurements of charm mesons and charm baryons. We present a detailed survey of the important topics in tau-charm physics and hadron physics that can be further explored at BESⅢ during the remaining operation period of BEPCⅡ. This survey will help in the optimization of the data-taking plan over the coming years, and provides physics motivation for the possible upgrade of BEPCⅡ to higher luminosity.M.Ablikim M.N.Achasov P.Adlarson S.Ahmed M.Albrecht M.Alekseev A.Amoroso F.F.An Q.An Y.Bai O.Bakina R.Baldini Ferroli Y.Ban K.Begzsuren J.V.Bennett N.Berger M.Bertani D.Bettoni F.Bianchi J Biernat J.Bloms I.Boyko R.A.Briere L.Calibbi H.Cai X.Cai A.Calcaterra G.F.Cao N.Cao S.A.Cetin J.Chai J.F.Chang W.L.Chang J.Charles G.Chelkov Chen G.Chen H.S.Chen J.C.Chen M.L.Chen S.J.Chen Y.B.Chen H.Y.Cheng W.Cheng G.Cibinetto F.Cossio X.F.Cui H.L.Dai J.P.Dai X.C.Dai A.Dbeyssi D.Dedovich Z.Y.Deng A.Denig Denysenko M.Destefanis S.Descotes-Genon F.De Mori Y.Ding C.Dong J.Dong L.Y.Dong M.Y.Dong Z.L.Dou S.X.Du S.I.Eidelman J.Z.Fan J.Fang S.S.Fang Y.Fang R.Farinelli L.Fava F.Feldbauer G.Felici C.Q.Feng M.Fritsch C.D.Fu Y.Fu Q.Gao X.L.Gao Y.Gao Y.Gao Y.G.Gao Z.Gao B.Garillon I.Garzia E.M.Gersabeck A.Gilman K.Goetzen L.Gong W.X.Gong W.Gradl M.Greco L.M.Gu M.H.Gu Y.T.Gu A.Q.Guo F.K.Guo L.B.Guo R.P.Guo Y.P.Guo A.Guskov S.Han X.Q.Hao F.A.Harris K.L.He F.H.Heinsius T.Held Y.K.Heng Y.R.Hou Z.L.Hou H.M.Hu J.F.Hu T.Hu Y.Hu G.S.Huang J.S.Huang X.T.Huang X.Z.Huang Z.L.Huang N.Huesken T.Hussain W.Ikegami Andersson W.Imoehl M.Irshad Q.Ji Q.P.Ji X.B.Ji X.L.Ji H.L.Jiang X.S.Jiang X.Y.Jiang J.B.Jiao Z.Jiao D.P.Jin S.Jin Y.Jin T.Johansson N.Kalantar-Nayestanaki X.S.Kang R.Kappert M.Kavatsyuk B.C.Ke I.K.Keshk T.Khan A.Khoukaz P.Kiese R.Kiuchi R.Kliemt L.Koch O.B.Kolcu B.Kopf M.Kuemmel M.Kuessner A.Kupsc M.Kurth M.G.Kurth W.Kuhn J.S.Lange P.Larin L.Lavezzi H.Leithoff T.Lenz C.Li Cheng Li D.M.Li F.Li F.Y.Li G.Li H.B.Li H.J.Li J.C.Li J.W.Li Ke Li L.K.Li Lei Li P.L.Li P.R.Li Q.Y.Li W.D.Li W.G.Li X.H.Li X.L.Li X.N.Li X.Q.Li Z.B.Li H.Liang H.Liang Y.F.Liang Y.T.Liang G.R.Liao L.Z.Liao J.Libby C.X.Lin D.X.Lin Y.J.Lin B.Liu B.J.Liu C.X.Liu D.Liu D.Y.Liu F.H.Liu Fang Liu Feng Liu H.B.Liu H.M.Liu Huanhuan Liu Huihui Liu J.B.Liu J.Y.Liu K.Y.Liu Ke Liu Q.Liu S.B.Liu T.Liu X.Liu X.Y.Liu Y.B.Liu Z.A.Liu Zhiqing Liu Y.F.Long X.C.Lou H.J.Lu J.D.Lu J.G.Lu Y.Lu Y.P.Lu C.L.Luo M.X.Luo P.W.Luo T.Luo X.L.Luo S.Lusso X.R.Lyu F.C.Ma H.L.Ma L.L.Ma M.M.Ma Q.M.Ma X.N.Ma X.X.Ma X.Y.Ma Y.M.Ma F.E.Maas M.Maggiora S.Maldaner S.Malde Q.A.Malik A.Mangoni Y.J.Mao Z.P.Mao S.Marcello Z.X.Meng J.G.Messchendorp G.Mezzadri J.Min T.J.Min R.E.Mitchell X.H.Mo Y.J.Mo C.Morales Morales N.Yu.Muchnoi H.Muramatsu A.Mustafa S.Nakhoul Y.Nefedov F.Nerling I.B.Nikolaev Z.Ning S.Nisar S.L.Niu S.L.Olsen Q.Ouyang S.Pacetti Y.Pan M.Papenbrock P.Patteri M.Pelizaeus H.P.Peng K.Peters A.A.Petrov J.Pettersson J.L.Ping R.G.Ping A.Pitka R.Poling V.Prasad M.Qi T.Y.Qi S.Qian C.F.Qiao N.Qin X.P.Qin X.S.Qin Z.H.Qin J.F.Qiu S.Q.Qu K.H.Rashid C.F.Redmer M.Richter M.Ripka A.Rivetti V.Rodin M.Rolo G.Rong J.L.Rosner Ch.Rosner M.Rump A.Sarantsev M.Savrie K.Schoenning W.Shan X.Y.Shan M.Shao C.P.Shen P.X.Shen X.Y.Shen H.Y.Sheng X.Shi X.D Shi J.J.Song Q.Q.Song X.Y.Song S.Sosio C.Sowa S.Spataro F.F.Sui G.X.Sun J.F.Sun L.Sun S.S.Sun X.H.Sun Y.J.Sun Y.K Sun Y.Z.Sun Z.J.Sun Z.T.Sun Y.T Tan C.J.Tang G.Y.Tang X.Tang V.Thoren B.Tsednee I.Uman B.Wang B.L.Wang C.W.Wang D.Y.Wang H.H.Wang K.Wang L.L.Wang L.S.Wang M.Wang M.Z.Wang Wang Meng P.L.Wang R.M.Wang W.P.Wang X.Wang X.F.Wang X.L.Wang Y.Wang Y.F.Wang Z.Wang Z.G.Wang Z.Y.Wang Zongyuan Wang T.Weber D.H.Wei P.Weidenkaff H.W.Wen S.P.Wen U.Wiedner G.Wilkinson M.Wolke L.H.Wu L.J.Wu Z.Wu L.Xia Y.Xia S.Y.Xiao Y.J.Xiao Z.J.Xiao Y.G.Xie Y.H.Xie T.Y.Xing X.A.Xiong Q.L.Xiu G.F.Xu L.Xu Q.J.Xu W.Xu X.P.Xu F.Yan L.Yan W.B.Yan W.C.Yan Y.H.Yan H.J.Yang H.X.Yang L.Yang R.X.Yang S.L.Yang Y.H.Yang Y.X.Yang Yifan Yang Z.Q.Yang M.Ye M.H.Ye J.H.Yin Z.Y.You B.X.Yu C.X.Yu J.S.Yu C.Z.Yuan X.Q.Yuan Y.Yuan A.Yuncu A.A.Zafar Y.Zeng B.X.Zhang B.Y.Zhang C.C.Zhang D.H.Zhang H.H.Zhang H.Y.Zhang J.Zhang J.L.Zhang J.Q.Zhang J.W.Zhang J.Y.Zhang J.Z.Zhang K.Zhang L.Zhang S.F.Zhang T.J.Zhang X.Y.Zhang Y.Zhang Y.H.Zhang Y.T.Zhang Yang Zhang Yao Zhang Yi Zhang Yu Zhang Z.H.Zhang Z.P.Zhang Z.Q.Zhang Z.Y.Zhang G.Zhao J.W.Zhao J.Y.Zhao J.Z.Zhao Lei Zhao Ling Zhao M.G.Zhao Q.Zhao S.J.Zhao T.C.Zhao Y.B.Zhao Z.G.Zhao A.Zhemchugov B.Zheng J.P.Zheng Y.Zheng Y.H.Zheng B.Zhong L.Zhou L.P.Zhou Q.Zhou X.Zhou X.K.Zhou Xingyu Zhou Xiaoyu Zhou Xu Zhou A.N.Zhu J.Zhu J.Zhu K.Zhu K.J.Zhu S.H.Zhu W.J.Zhu X.L.Zhu Y.C.Zhu Y.S.Zhu Z.A.Zhu J.Zhuang B.S.Zou J.H.Zou 2020Chinese Physics C2020,44,4:517
2Study of BESIII trigger efficiencies with the 2018 J/ψ data显示文摘Using a dedicated data sample taken in 2018 on the J/ψpeak,we perform a detailed study of the trigger efficiencies of the BESIII detector.The efficiencies are determined from three representative physics processes,namely Bhabha scattering,dimuon production and generic hadronic events with charged particles.The combined efficiency of all active triggers approaches 100%in most cases,with uncertainties small enough not to affect most physics analyses.M.Ablikim M.N.Achasov P.Adlarson S.Ahmed M.Albrecht R.Aliberti A.Amoroso M.R.An Q.An X.H.Bai Y.Bai O.Bakina R.Baldini Ferroli I.Balossino Y.Ban K.Begzsuren N.Berger M.Bertani D.Bettoni F.Bianchi J.Bloms A.Bortone I.Boyko R.A.Briere H.Cai X.Cai A.Calcaterra G.F.Cao N.Cao S.A.Cetin J.F.Chang W.L.Chang G.Chelkov D.Y.Chen G.Chen H.S.Chen M.L.Chen S.J.Chen X.R.Chen Y.B.Chen Z.J Chen W.S.Cheng G.Cibinetto F.Cossio X.F.Cui H.L.Dai X.C.Dai A.Dbeyssi R.E.de Boer D.Dedovich Z.Y.Deng A.Denig I.Denysenko M.Destefanis F.De Mori Y.Ding C.Dong J.Dong L.Y.Dong M.Y.Dong X.Dong S.X.Du Y.L.Fan J.Fang S.S.Fang Y.Fang R.Farinelli L.Fava F.Feldbauer G.Felici C.Q.Feng J.H.Feng M.Fritsch C.D.Fu Y.Gao Y.Gao Y.Gao Y.G.Gao I.Garzia P.T.Ge C.Geng E.M.Gersabeck A Gilman K.Goetzen L.Gong W.X.Gong W.Gradl M.Greco L.M.Gu M.H.Gu S.Gu Y.T.Gu C.Y Guan A.Q.Guo L.B.Guo R.P.Guo Y.P.Guo A.Guskov T.T.Han W.Y.Han X.Q.Hao F.A.Harris H Hüsken K.L.He F.H.Heinsius C.H.Heinz T.Held Y.K.Heng C.Herold M.Himmelreich T.Holtmann Y.R.Hou Z.L.Hou H.M.Hu J.F.Hu T.Hu Y.Hu G.S.Huang L.Q.Huang X.T.Huang Y.P.Huang Z.Huang T.Hussain W.Ikegami Andersson W.Imoehl M.Irshad S.Jaeger S.Janchiv Q.Ji Q.P.Ji X.B.Ji X.L.Ji H.B.Jiang X.S.Jiang J.B.Jiao Z.Jiao S.Jin Y.Jin T.Johansson N.Kalantar-Nayestanaki X.S.Kang R.Kappert M.Kavatsyuk B.C.Ke I.K.Keshk A.Khoukaz P.Kiese R.Kiuchi R.Kliemt L.Koch O.B.Kolcu B.Kopf M.Kuemmel M.Kuessner A.Kupsc M.G.Kurth W.Kühn J.J.Lane J.S.Lange P.Larin A.Lavania L.Lavezzi Z.H.Lei H.Leithoff M.Lellmann T.Lenz C.Li C.H.Li Cheng Li D.M.Li F.Li G.Li H.Li H.Li H.B.Li H.J.Li J.L.Li J.Q.Li J.S.Li Ke Li L.K.Li Lei Li P.R.Li S.Y.Li W.D.Li W.G.Li X.H.Li X.L.Li Z.Y.Li H.Liang H.Liang H.Liang Y.F.Liang Y.T.Liang L.Z.Liao J.Libby C.X.Lin B.J.Liu C.X.Liu D.Liu F.H.Liu Fang Liu Feng Liu H.B.Liu H.M.Liu Huanhuan Liu Huihui Liu J.B.Liu J.L.Liu J.Y.Liu K.Liu K.Y.Liu Ke Liu L.Liu M.H.Liu P.L.Liu Q.Liu Q.Liu S.B.Liu Shuai Liu T.Liu W.M.Liu X.Liu Y.Liu Y.B.Liu Z.A.Liu Z.Q.Liu X.C.Lou F.X.Lu H.J.Lu J.D.Lu J.G.Lu X.L.Lu Y.Lu Y.P.Lu C.L.Luo M.X.Luo b P.W.Luo T.Luo X.L.Luo S.Lusso X.R.Lyu F.C.Ma H.L.Ma L.L.Ma M.M.Ma Q.M.Ma R.Q.Ma R.T.Ma X.X.Ma X.Y.Ma F.E.Maas M.Maggiora S.Maldaner S.Malde Q.A.Malik A.Mangoni Y.J.Mao Z.P.Mao S.Marcello Z.X.Meng J.G.Messchendorp G.Mezzadri T.J.Min R.E.Mitchell X.H.Mo Y.J.Mo N.Yu.Muchnoi H.Muramatsu S.Nakhoul Y.Nefedov F.Nerling I.B.Nikolaev Z.Ning S.Nisar S.L.Olsen Q.Ouyang S.Pacetti X.Pan Y.Pan A.Pathak P.Patteri M.Pelizaeus H.P.Peng K.Peters J.Pettersson J.L.Ping R.G.Ping R.Poling V.Prasad H.Qi H.R.Qi K.H.Qi M.Qi T.Y.Qi T.Y.Qi S.Qian W.-B.Qian Z.Qian C.F.Qiao L.Q.Qin X.S.Qin Z.H.Qin J.F.Qiu S.Q.Qu K.H.Rashid K.Ravindran C.F.Redmer A.Rivetti V.Rodin M.Rolo G.Rong Ch.Rosner M.Rump H.S.Sang A.Sarantsev Y.Schelhaas C.Schnier K.Schoenning M.Scodeggio D.C.Shan W.Shan X.Y.Shan J.F.Shangguan M.Shao C.P.Shen P.X.Shen X.Y.Shen H.C.Shi R.S.Shi X.Shi X.D Shi W.M.Song Y.X.Song S.Sosio S.Spataro K.X.Su P.P.Su F.F.Sui G.X.Sun H.K.Sun J.F.Sun L.Sun S.S.Sun T.Sun W.Y.Sun X Sun Y.J.Sun Y.K.Sun Y.Z.Sun Z.T.Sun Y.H.Tan Y.X.Tan C.J.Tang G.Y.Tang J.Tang J.X.Teng V.Thoren I.Uman B.Wang C.W.Wang D.Y.Wang H.J.Wang H.P.Wang K.Wang L.L.Wang M.Wang M.Z.Wang Meng Wang W.Wang W.H.Wang W.P.Wang X.Wang X.F.Wang X.L.Wang Y.Wang Y.D.Wang Y.F.Wang Y.Q.Wang Y.Y.Wang Z.Wang Z.Y.Wang Ziyi Wang Zongyuan Wang D.H.Wei P.Weidenkaff F.Weidner S.P.Wen D.J.White U.Wiedner G.Wilkinson M.Wolke L.Wollenberg J.F.Wu L.H.Wu L.J.Wu X.Wu Z.Wu L.Xia H.Xiao S.Y.Xiao Z.J.Xiao X.H.Xie Y.G.Xie Y.H.Xie T.Y.Xing G.F.Xu Q.J.Xu W.Xu X.P.Xu F.Yan L.Yan W.B.Yan W.C.Yan Xu Yan H.J.Yang H.X.Yang L.Yang S.L.Yang Y.X.Yang Yifan Yang Zhi Yang M.Ye M.H.Ye J.H.Yin Z.Y.You B.X.Yu C.X.Yu G.Yu J.S.Yu T.Yu C.Z.Yuan L.Yuan X.Q.Yuan Y.Yuan Z.Y.Yuan C.X.Yue A.Yuncu A.A.Zafar Y.Zeng B.X.Zhang Guangyi Zhang H.Zhang H.H.Zhang H.Y.Zhang J.J.Zhang J.L.Zhang J.Q.Zhang J.W.Zhang J.Y.Zhang J.Z.Zhang Jianyu Zhang Jiawei Zhang L.Q.Zhang Lei Zhang S.Zhang S.F.Zhang Shulei Zhang X.D.Zhang X.Y.Zhang Y.Zhang Y.H.Zhang Y.T.Zhang Yan Zhang Yao Zhang Yi Zhang Z.H.Zhang Z.Y.Zhang G.Zhao J.Zhao J.Y.Zhao J.Z.Zhao Lei Zhao Ling Zhao M.G.Zhao Q.Zhao S.J.Zhao Y.B.Zhao Y.X.Zhao Z.G.Zhao A.Zhemchugov B.Zheng J.P.Zheng Y.Zheng Y.H.Zheng B.Zhong C.Zhong L.P.Zhou Q.Zhou X.Zhou X.K.Zhou X.R.Zhou A.N.Zhu J.Zhu K.Zhu K.J.Zhu S.H.Zhu T.J.Zhu W.J.Zhu W.J.Zhu Y.C.Zhu Z.A.Zhu B.S.Zou J.H.Zou 2021Chinese Physics C2021,45,2:33
3胆道癌的CT表现:基于影像组学的淋巴结转移和存活结果预测模型显示文摘目的评估影像组学模型在胆道癌(BTC)中淋巴结(LN)转移的预测作用,并确定其对疾病特异性和无复发生存的预后价值。材料与方法采用回顾性研究,以2010年6月—2016年12月期间的177例接受切除和LN清扫的BTC病人为原发组作为影像组学模型。G.W.Ji Y.D.Zhang H.Zhang F.P.Zhu K.Wang Y.X.Xia 杨茜(译) 胡先玲(校) 2019国际医学放射学杂志2019,0,2:22
4INFLUENCE OF THE ANTARCTIC SEA-ICE ON THE NORTH-WEST PACIFIC SUBTROPICAL HIGH AND ITS BACKGROUND OF OCEANATMOSPHERIC CIRCULATION显示文摘In view of the importance of the North-west Pacific subtropical high to weather-climate conditions in large areas of the Chinese territory, we have devoted our attention mainly to analyzing the relationship between the subtropical high and the Antarctic sea-ice. We have found that the high and the sea-ice are closely related to each other in our彭公炳 PAO K.WANG 1989Chinese Science Bulletin1989,34,17:4
5SERS detection of arsenic in water:A review显示文摘Arsenic(As) is one of the most toxic contaminants found in the environment. Development of novel detection methods for As species in water with the potential for field use has been an urgent need in recent years. In past decades, surface-enhanced Raman scattering(SERS)has gained a reputation as one of the most sensitive spectroscopic methods for chemical and biomolecular sensing. The SERS technique has emerged as an extremely promising solution for in-situ detection of arsenic species in the field, particularly when coupled with portable/handheld Raman spectrometers. In this article, the recent advances in SERS analysis of arsenic species in water media are reviewed, and the potential of this technique for fast screening and field testing of arsenic-contaminated environmental water samples is discussed. The problems that remain in the field are also discussed and an outlook for the future is featured at the end of the article.Jumin Hao Mei-Juan Han Songman Han Xiaoguang Meng Tsan-Liang Su Qingwu K.Wang 2015Journal of Environmental Sciences2015,27,10:4
6Polarization sensitive optical coherence tomography with single input for imaging depth-resolved collagen organizations显示文摘Collagen organization plays an important role in maintaining structural integrity and determining tissue function.Polarization-sensitive optical coherence tomography(PSOCT)is a promising noninvasive three-dimensional imaging tool for mapping collagen organization in vivo.While PSOCT systems with multiple polarization inputs have demonstrated the ability to visualize depth-resolved collagen organization,systems,which use a single input polarization state have not yet demonstrated sufficient reconstruction quality.Herein we describe a PSOCT based polarization state transmission model that reveals the depth-dependent polarization state evolution of light backscattered within a birefringent sample.Based on this model,we propose a polarization state tracing method that relies on a discrete differential geometric analysis of the evolution of the polarization state in depth along the Poincare sphere for depth-resolved birefringent imaging using only one single input polarization state.We demonstrate the ability of this method to visualize depth-resolved myocardial architecture in both healthy and infarcted rodent hearts(ex vivo)and collagen structures responsible for skin tension lines at various anatomical locations on the face of a healthy human volunteer(in vivo).Peijun Tang Mitchell A.Kirby Nhan Le Yuandong Li Nicole Zeinstra G.Nina Lu Charles E.Murry Ying Zheng Ruikang K.Wang 2021Light(Science & Applications)2021,10,12:2
7Fabrication of polyethersulfone-mesoporous silica nanocomposite ultrafiltration membranes with antifouling properties显示文摘Huang J K.S.Zhang K.Wang Z.L.Xie B.Ladewig H.T.Wang 0,,:1
8Extensions of PDZ domains as important structural and functional elements显示文摘‘Divide and conquer’has been the guiding strategy for the study of protein structure and function.Proteins are divided into domains with each domain having a canonical structural definition depending on its type.In this review,we push forward with the interesting observation that many domains have regions outside of their canonical definition that affect their structure and function;we call these regions‘extensions’.We focus on the highly abundant PDZ(PSD-95,DLG1 and ZO-1)domain.Using bioinformatics,we find that many PDZ domains have potential extensions and we developed an openly-accessible website to display our results(http://gffzzef4e62913434470fhqf566vokqxuq6kkb.ffgz.tsg.suse.edu.cn/pdzex/).We propose,using well-studied PDZ domains as illustrative examples,that the roles of PDZ extensions can be classified into at least four categories:1)protein dynamics-based modulation of target binding affinity,2)provision of binding sites for macro-molecular assembly,3)structural integration of multi-domain modules,and 4)expansion of the target ligand-binding pocket.Our review highlights the potential structural and functional importance of domain extensions,highlighting the significance of looking beyond the canonical boundaries of protein domains in general.Conan K.Wang Lifeng Pan Jia Chen Mingjie Zhang 2010Protein & Cell2010,1,8:1
9Ultrasmall near-infrared gold nanoclusters for tumor fluorescence imaging in vivo显示文摘X.Wu X.He K.Wang 0,,02:1
10Periodic solutions of a discrete time nonautonomous ratio-dependent predator-prey system显示文摘M.Fan K.Wang 0,,9:1
11南海东北陆缘过渡性地壳的地震成像显示文摘根据2001年8月台湾和中国大陆合作开展的深部地震调查,给出了横跨南海(SCS)东北部被动大陆缘的地壳构造。将一条NW-SE向剖面上的48道地震反射数据和11台海底地震仪的反射和折射的垂直分量数据整合在一起,依次得到了沉积层上部(1.6~2.4km/s)、下部(2.5~2.9km/s)、压实层(3~4.5km/s)以及结晶地壳上部(4.5~5.5km/s)、中部(5.5~6.5km/s)和下部(6.5~7.5km/s)的成像。速度模型表明,压实沉积物的厚度(0.5~3km)和基底变化很大,这是由于南海海底扩张以后的岩浆入侵和火成岩活动导致的。更进一步从模型中识别出,在南海东北部边缘下陆坡之下的洋陆过渡带(OCT)的上/中地壳(7~10km厚)存在一些火山和火成岩,下地壳下面存在高速层(0~5km厚)。还得到了南海东北部陆缘洋陆过渡带的西北为薄陆壳、东南为厚洋壳的影像。但是这些过渡性地壳不能归类为洋陆过渡带,这是由于它们的地壳厚度、有限的火山、岩浆体和高速层所决定的。紧邻重力低区和从台西南海盆延伸而来的沉陷带的陆壳拉伸可能是欧亚板块向马尼拉海沟下插的结果,而厚洋壳的形成则是由于南海海底扩张之后洋壳中过度的火山活...Tan K.Wang Chao-Shing Lee 薛彬 2008世界地震译丛2008,,3:1
12透水混凝土中粗集料对其冻融性能的影响显示文摘在冻融气候区,透水混凝土成为越来越普遍的雨水管理工具。不管是表观上,还是实际应用上,阻碍其广泛应用的一个主要问题是其冻融耐久性方面的缺陷。本文依据ASTM C666A规程,进行一系列的测试来确定特定粗骨料对透水混凝土的冻融耐久性的作用,其中17种不同粗骨料样本来自美国和加拿大不同地域。以前,使用透水混凝土混合物之前是通过确定混合比例来控制其冻融耐久性的,耐久的集料级配范围无疑确定了一个推荐级配,并给出通过以小部分的砂用量来优化级配的建议。具有良好冻融性能的混合料包含花岗岩和砂砾石。本文还讨论了集料棱角性对配和比和性能的影响。暴英波 熊明清 孙鹏 J.T.Kevern K.Wang V.R.Schaefer 2016四川建材2016,42,1:1
13查看详情显示文摘C.Liu T.L.Hughes X.L.Qi K.Wang and S.C.Zhang 0,,:1
14查看详情显示文摘H.Y.Liu K.Wang H.Y.Fu 0,,:1
15Sex, ApoE4 and Alzheimer's disease: rethinking drug discovery in the era of precision medicine显示文摘Alzheimer's disease(AD) is the most common cause of dementia and presents with an insidious onset and long prodromal period. Despite billions spent on clinical trials and decades of research, there are currently no disease modifying therapies approved for AD.Manish D.Paranjpe Jason K.Wang Yun Zhou 2021Neural Regeneration Research2021,16,9:1
162008年Barrett食管诊断、监测和治疗指南显示文摘1前言美国胃肠病学会(ACG)于1998年发布了Barrett食管的诊断、监测和治疗指南,并于2002年进行了修订。在过去4年中,Barrett食管研究领域发生了一些有意义的进展,这引导我们对前版指南进行新一轮的修订。这些进展包括:胶囊内镜在Barrett食管诊断和筛查中的应用、Kenneth K.Wang Richard E.Sampliner 王晓燕 姒健敏 2009中国继续医学教育2009,1,1:1
17Mesoporous silica nanoparticles deliver DNA and chemicals into plants显示文摘F.Torney B.G.Trewyn V.S.-Y.Lin K.Wang 0,,:1
18Population structure of wild bananas, Musa balbisiana, in China determined by SSR fingerprinting and cpDNA PCR‐RFLP显示文摘X. J.GE M. H.LIU W. K.WANG B. A.SCHAAL T. Y.CHIANG 2005Molecular Ecology2005,,4:1
19Correlation of histology with biomarker status after photodynamic therapy in Barrett esophagus显示文摘Ganapathy A.Prasad Kenneth K.Wang Kevin C.Halling Navtej S.Buttar Louis‐MichelWongkeesong Alan R.Zinsmeister Shannon M.Brankley Wytske M.Westra Lori S.Lutzke Lynn S.Borkenhagen KellyDunagan 2008Cancer2008,,3:1
20Preparation of Sn2Sb alloy encapsulated carbon microsphere anode materials for Li-ion batteries by carbothermal reduction of the oxides显示文摘K.Wang X.M.He J.G.Ren L.Wang C.Y.Jiang and C.R.Wan 0,,03:1
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