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| 1 | The Current Acceptance,Accessibility and Recognition of Chinese and Ayurvedic Medicine in the United States in the Public,Governmental,and Industrial Sectors显示文摘为了在互补、其他的药,对流行的最近的研究,接受,可接近性,和互补、其他的治疗的识别的美国估计接受的当前的水平,被考察。几个符号在美国指向互补、其他的药的增加的接受;互补、其他的药的使用显著地正在增加,中国药和 Ayurveda 的许多方面正在变得主流,在美国的专业人员正在开始被准许,并且保险公司开始正在盖住一些互补、其他的治疗。对真接受的留下的挑战包括限制西方的 mindset,出版研究的缺席,一致生产过程的缺乏和优秀标准,并且掺杂的害怕。尽管这个领域仍然面对许多挑战,包括中国药和 Ayurvedic 药,其他、互补的药正在变得更多接受并且在美国可存取。 | Jongbae J.PARK Selena Beckman-Harned Gayoung Cho Duckhee Kim Hangon Kim | 2012 | Chinese Journal of Integrative Medicine2012,18,6: | 3 |
| 2 | 全球地震台网超额完成其设计目标显示文摘今年,全球地震台网(GSN)已超额完成其以128个台站在世界范围内均匀覆盖地球的设计目标。通过与59个国家的100多个主管机构和地震台网的合作,总共136个GSN台站现已座落在从南极到西伯利亚、从亚马逊盆地到东北太平洋海底的广大地区(图1)。 | R.Butler T.Lay K.Creager P.Earl K.Fischer J.Gaherty G.Laske B.Leith J.Park M.Ritzwoller J.Tromp L.X.Wen 周公威 邹立晔 郭燕平 陈运泰 | 2004 | 世界地震译丛2004,35,5: | 3 |
| 3 | Changes in clinicopathological features and survival after gastrectomy for gastric cancer over a 20‐year period显示文摘 | H. S.Ahn H.‐J.Lee M.‐W.Yoo S.‐H.Jeong D.‐J.Park H.‐H.Kim W. H.Kim K. U.Lee H.‐K.Yang | 2010 | Br J Surg2010,,2: | 2 |
| 4 | 查看详情显示文摘 | K.Lang J.Park S.Hong | | 0,,: | 1 |
| 5 | Joint spatiotemporal modes of surface temperature and sea level pressure variability in the Northern Hemisphere during the last century显示文摘 | Mann M.E J.Park | | 0,,: | 1 |
| 6 | Sensitive detection and accurate monitoring of Plasmodium vivax parasites on routine complete blood count using automatic blood cell analyzer (DxH800TM)显示文摘 | H. K.LEE S. I.KIM H.CHAE M.KIM J.LIM E. J.OH Y.KIM Y. J.PARK W.LEE K.HAN | 2012 | International Journal of Laboratory Hematology2012,,: | 1 |
| 7 | Sevoflurane‐induced post‐conditioning has no beneficial effects on neuroprotection after incomplete cerebral ischemia in rats显示文摘 | H.‐M.LEE D.‐H.LEE J.‐H.CHOI S.‐R.LEE Y.‐W.KIM D.‐L.JEE H.‐S.DO H.‐M.LEE S.‐J.PARK | 2010 | Acta Anaesthesiologica Scandinavica2010,,3: | 1 |
| 8 | Surgery in thoracic esophageal perforation: primary repair is feasible显示文摘 | S. W.Sung J‐J.Park Y. T.Kim J. H.Kim | 2002 | Diseases of the Esophagus2002,,3: | 1 |
| 9 | Hairy Roots of Helianthus annuus: A Model System to Study Phytoremediation of Tetracycline and Oxytetracycline显示文摘 | Ninad P.Gujarathi Bryan J.Haney Heidi J.Park S. RanilWickramasinghe James C.Linden | 2008 | Biotechnol Progress2008,,3: | 1 |
| 10 | 查看详情显示文摘 | K.S.Breuer J.Park C.Henoch | | 0,,: | 1 |
| 11 | Universal approximation using radial basis function networks显示文摘 | J.Park I.W.Sandberg | | 0,,: | 1 |
| 12 | 查看详情显示文摘 | J.Koo C.Song S.Ji J.S.Lee J.Park T.H.Jang C.H.Yang J.H.Park Y.H.Jeong K.B.Lee T.Y.Koo Y.J.Park J.Y.Kim D.Wermeille A.I.Goldman G.Srajer S.Park and S.W.Cheong | | 0,,: | 1 |
| 13 | 全球地震台网记录苏门答腊-安达曼特大地震显示文摘2004年12月26日,苏门答腊岛北端附近的印度尼西亚消减带于格林尼治时午夜过后的零时58分47秒开始破裂。破裂沿巽他海沟向西北方向扩展了约1200km,到达安达曼群岛,持续了约7分钟。海底发生的断层位移产生了巨大的海啸,海啸席卷苏门答腊岛北部沿岸高度达10m, | J.Park K.Anderson R.Aster R.Butler T.Lay D.Simpson 邹本良 孙旭丽 吕春来 杨智娴 | 2005 | 世界地震译丛2005,36,1: | 1 |
| 14 | Simultaneous gas chromatography-mass spectrometric determination of total and individual phthalic ester utilizing alkaline hydrolysis and silyl derivatization technique显示文摘 | M.Kim D.H.Li W.J.Shim J.Park | | 0,,: | 1 |
| 15 | Search for electron-antineutrinos associated with gravitational-wave events GW150914,GW151012,GW151226,GW170104,GW170608,GW170814,and GW170817 at Daya Bay显示文摘The establishment of a possible connection between neutrino emission and gravitational-wave(GW)bursts is important to our understanding of the physical processes that occur when black holes or neutron stars merge.In the Daya Bay experiment,using the data collected from December 2011 to August 2017,a search was per-formed for electron-antineutrino signals that coincided with detected GW events,including GW150914,GW151012,GW151226,GW170104,GW170608,GW 170814,and GW 170817.We used three time windows of±10,±500,and±1000 s relative to the occurrence of the GW events and a neutrino energy range of 1.8 to 100 MeV to search for correlated neutrino candidates.The detected electron-antineutrino candidates were consistent with the expected background rates for all the three time windows.Assuming monochromatic spectra,we found upper limits(90%confidence level)of the electron-antineutrino fluence of(1.13-2.44)×10^(11)cm^(-2)at 5 MeV to 8.0×10^(7)cm^(-2)at 100 MeV for the three time w indows.Under the assumption of a Fermi-Dirac spectrum,the upper limits were found to be(5.4-7.0)×10^(9)cm^(2)for the three time windows. | F.P.An A.B.Balantekin H.R.Band M.Bishai S.Blyth G.F.Cao J.Cao J.F.Chang Y.Chang H.S.Chen S.M.Chen Y.Chen Y.X.Chen J.Cheng Z.K.Cheng J.J.Cherwinka M.C.Chu J.P.Cummings O.Dalager F.S.Deng Y.Y.Ding M.V.Diwan T.Dohnal J.Dove M.Dvorak D.A.Dwyer J.P.Gallo M.Gonchar G.H.Gong H.Gong W.Q.Gu J.Y.Guo L.Guo X.H.Guo Y.H.Guo Z.Guo R.W.Hackenburg S.Hans M.He K.M.Heeger Y.K.Heng A.Higuera Y.K.Hor Y.B.Hsiung B.Z.Hu J.R.Hu T.Hu Z.J.Hu H.X.Huang X.T.Huang Y.B.Huang P.Huber D.E.Jaffe K.L.Jen X.L.Ji X.P.Ji R.A.Johnson D.Jones L.Kang S.H.Kettell S.Kohn M.Kramer T.J.Langford J.Lee J.H.C.Lee R.T.Lei R.Leitner J.K.C.Leung F.Li J.J.Li Q.J.Li S.Li S.C.Li W.D.Li X.N.Li X.Q.Li Y.F.Li Z.B.Li H.Liang C.J.Lin G.L.Lin S.Lin J.J.Ling J.M.Link L.Littenberg B.R.Littlejohn J.C.Liu J.L.Liu C.Lu H.Q.Lu J.S.Lu K.B.Luk X.B.Ma X.Y.Ma Y.Q.Ma C.Marshall D.A.Martinez Caicedo K.T.MeDonald R.D.McKeown Y.Meng J.Napolitano D.Naumov E.Naumova J.P.Ochoa-Ricoux A.OIshevskiy H.-R.Pan J.Park S.Patton J.C.Peng C.S.J.Pun F.Z.Qi M.Qi X.Qian N.Raper J.Ren C.Morales Reveco R.Rosero B.Roskovec X.C.Ruan H.Steiner J.L.Sun T.Tmej K.Treskov W.-H.Tse C.E.Tull B.Viren V.Vorobel C.H.Wang J.Wang M.Wang N.Y.Wang R.G.Wang W.Wang W.Wang X.Wang Y.Wang Y.F.Wang Z.Wang Z.Wang Z.M.Wang H.Y.Wei L.H.Wei L.J.Wen K.Whisnant C.G.White H.L.H.Wong E.Worcester D.R.Wu F.L.Wu Q.Wu W.J.Wu D.M.Xia Z.Q.Xie Z.Z.Xing J.L.Xu T.Xu T.Xue C.G.Yang L.Yang Y.Z.Yang H.F.Yao M.Ye M.Yeh B.L.Young H.Z.Yu Z.Y.Yu B.B.Yue S.Zeng Y.Zeng L.Zhan C.Zhang F.Y.Zhang H.H.Zhang J.W.Zhang Q.M.Zhang X.T.Zhang Y.M.Zhang Y.X.Zhang Y.Y.Zhang Z.J.Zhang Z.P.Zhang Z.Y.Zhang J.Zhao L.Zhou H.L.Zhuang J.H.Zou | 2021 | Chinese Physics C2021,45,5: | 1 |
| 16 | 《跨世纪的IRIS计划》引言显示文摘IRIS计划的第二部分是用来表示IRIS如何影响了地震科学。做这项工作最好的方法是找些实例,我们邀请了IRIS成员,请他们选择工作中有说服力的一个方面,并浓缩在一页纸上。此外,我们还有选择地邀请了一些科学家来写一些能反映他们个人对IRIS看法的评论文章。我们将这些内容组织成第二卷的章节,这些章节广泛地包含了IRIS已发挥很大影响的领域。地震学方面的新发现几乎都是新的观测的结果,有些甚至是未曾预料到的。这些简短的贡献,有着不容置疑的事实和臆测,解决了悬而未决的科学争论,并激发出许多新的理论模式。第二部分的章节包括: | J.Park G.Nolet 刘希玲 | 1997 | 世界地震译丛1997,,5: | 0 |
| 17 | Somatic mutation accumulation seen through a singlemolecule lens显示文摘Somatic mutations(SMs)accumulate over the lifetime of cells and can lead to cancer and other diseases;however,SMs can be difficult to detect,especially when they are present in very few cells.In a recent Nature paper,Abascal et al.develop a protocol capable of detecting SMs present on only a single molecule of DNA and apply it to both mitotic and post-mitotic human tissues. | Lovelace J.Luquette Peter J.Park | 2021 | Cell Research2021,31,9: | 0 |
| 18 | China’s Response to COVID-19:Turning Crisis into an Opportunity显示文摘ON April 13,the number of the accumulated confirmed COVID-19 cases worldwide surpassed 1.8 million,with over 110,000 deaths,according to the COVID-19 Dashboard by the Center for Systems Science and Engineering(CSSE)at Johns Hopkins University.Governments around the world are struggling to contain the pandemic,taking measures ranging from total lockdown to travel bans,as well as financial injections to their respective economies.As public anxiety and paranoia continue to soar across the globe,experts predict a global recession in the near future. | TINA J.PARK | 2020 | China Today2020,69,5: | 0 |
| 19 | Antineutrino energy spectrum unfolding based on the Daya Bay measurement and its applications显示文摘The prediction of reactor antineutrino spectra will play a crucial role as reactor experiments enter the precision era.The positron energy spectrum of 3.5 million antineutrino inverse beta decay reactions observed by the Daya Bay experiment,in combination with the fission rates of fissile isotopes in the reactor,is used to extract the positron energy spectra resulting from the fission of specific isotopes.This information can be used to produce a precise,data-based prediction of the antineutrino energy spectrum in other reactor antineutrino experiments with different fission fractions than Daya Bay.The positron energy spectra are unfolded to obtain the antineutrino energy spectra by removing the contribution from detector response with the Wiener-SVD unfolding method.Consistent results are obtained with other unfolding methods.A technique to construct a data-based prediction of the reactor antineutrino energy spectrum is proposed and investigated.Given the reactor fission fractions,the technique can predict the energy spectrum to a 2%precision.In addition,we illustrate how to perform a rigorous comparison between the unfolded antineutrino spectrum and a theoretical model prediction that avoids the input model bias of the unfolding method. | 安丰鹏 A.B.Balantekin M.Bishai S.Blyth 曹国富 曹俊 常劲帆 张昀 陈和生 陈少敏 陈羽 陈义学 程捷 成兆侃 J.J.Cherwinka 朱明中 J.P.Cummings O.Dalager 邓凡水 丁雅韵 M.V.Diwan T.Dohnal D.Dolzhikov J.Dove M.Dvorak D.A.Dwyer J.P.Gallo M.Gonchar 龚光华 宫辉 M.Grassi 顾文强 郭竞渊 郭磊 郭新恒 郭宇航 郭子溢 R.W.Hackenburg S.Hans 何苗 K.M.Heeger 衡月昆 贺远强 熊怡 胡貝楨 胡健润 胡涛 胡焯钧 黄翰雄 黄金浩 黄性涛 黄永波 P.Huber D.E.Jaffe 任國綸 季筱璐 季向盼 R.A.Johnson D.Jones 康丽 S.H.Kettell S.Kohn M.Kramer T.J.Langford J.Lee 李曉菁 雷瑞霆 R.Leitner 梁干庄 李飞 李慧玲 李进京 李秋菊 李茹慧 黎山峰 S.C.Li 李卫东 李小男 李学潜 李玉峰 李志兵 梁昊 林政儒 林贵林 林盛鑫 凌家杰 L.Littenberg B.R.Littlejohn 刘金昌 刘江来 刘佳熙 陆昌国 路浩奇 陆锦标 马帮争 马续波 马骁妍 马宇倩 R.C.Mandujano C.Marshall K.T.McDonald R.D.McKeown 孟月 J.Napolitano D.Naumov E.Naumova T.M.T.Nguyen J.P.Ochoa-Ricoux A.Olshevskiy 潘孝儒 J.Park S.Patton 彭仁杰 潘振声 齐法制 祁鸣 钱鑫 任杰 C.Morales Reveco R.Rosero B.Roskovec 阮锡超 H.Steiner 孙吉良 T.Tmej K.Treskov 謝雲皓 C.E.Tull B.Viren V.Vorobel 王正祥 王俊 王萌 王乃彦 王瑞光 王为 王维 王玺 王玉漫 王贻芳 王铮 王喆 王志民 魏瀚宇 韦良红 温良剑 K.Whisnant C.GWhite 黄显诺 E.Worcester 吴帝儒 武方亮 吴群 吴文杰 夏冬梅 谢章权 邢志忠 许杭锟 徐吉磊 徐彤 薛涛 杨长根 杨雷 杨玉梓 姚海峰 叶梅 叶铭芳 杨炳麟 余泓钊 于泽源 岳保彪 V.Zavadskyi 曾珊 曾裕达 占亮 张超 张飞洋 张宏浩 张家文 张清民 张石其 张玄同 张玉美 张一心 张园园 张志坚 张子平 张智勇 赵洁 赵润泽 周莉 庄红林 邹佳恒 | 2021 | Chinese Physics C2021,45,7: | 0 |
| 20 | Research and development of the back-end electronics for the two-dimensional improved resistive plate chambers in CMS upgrade显示文摘Purpose To complement and ensure redundancy in the endcap muon system of the Compact Muon Solenoid(CMS)detector and to extend the Resistive Plate Chamber(RPC)system coverage,improved RPCs(iRPCs)with either orthogonal layer strips with one-end electronics or single layer strips with two-end electronics providing more precise time measurement will be installed in the very forward pseudorapidity region of|η|<2.4.The iRPC readout system needs to support twodimensional(2D)or two-end readout.In addition,it must combine detector data with Timing,Trigger and fast Control(TTC)and Slow Control(SC)into one data stream over a bi-directional optical link with a line rate of 4.8 Gb/s between the Front-End Electronics(FEE)and the Back-End Electronics(BEE).To fulfill these requirements,a prototype BEE for the iRPC 2D chamber has been researched and designed.Methods A Micro-Telecommunication and Computing Architecture(μTCA)-based processing card was designed in this study to establish a prototype system together with aμTCA crate.The Giga-Bit Transceiver(GBT)protocol is integrated to provide bi-directional communication between the FEE and BEE.A server is connected with the BEE by a Gigabit Ethernet(GbE)link for SC and a 10-GbE link for Data AcQuisition(DAQ).Results The Bit Error Rate(BER)test of the back-end board and a joint test with the iRPC 2D prototype chamber were performed.ABERof less than 1.331×10−16 was obtained.The timemeasurement with a resolution of 3.05 nswas successfully realized,and detector efficiencies of 97.7%for longitudinal strips and 96.0%for orthogonal strips were measured.Test results demonstrate the correctness and reliability of the prototype BEE.Conclusion The BEE prototype satisfies the requirements for the iRPC 2D chamber,and it worked stably and reliably during a long-term joint test run. | P.Cao Z-A.Liu J.Zhao H.Kou J.Tao J.Song W.Gong N.Wang A.Samalan M.Tytgat N.Zaganidis G.A.Alves F.Marujo F.Torres.Da.S.ilva.De.Araujo E.M.Da Costa D.De Jesus Damiao H.Nogima A.Santoro S.Fonseca De Souza A.Aleksandrov R.Hadjiiska P.Iaydjiev M.Rodozov M.Shopova G.Sultanov M.Bonchev A.Dimitrov L.Litov B.Pavlov P.Petkov A.Petrov S.J.Qian C.Bernal A.Cabrera J.Fraga A.Sarkar S.Elsayed Y.Assran M.El Sawy M.A.Mahmoud Y.Mohammed X.Chen C.Combaret M.Gouzevitch G.Grenier I.Laktineh L.Mirabito K.Shchablo I.Bagaturia D.Lomidze I.Lomidze V.Bhatnagar R.Gupta P.Kumari J.Singh V.Amoozegar B.Boghrati M.Ebraimi R.Ghasemi M.Mohammadi Najafabadi E.Zareian M.Abbrescia R.Aly W.Elmetenawee N.De Filippis A.Gelmi G.Iaselli S.Leszki F.Loddo I.Margjeka G.Pugliese D.Ramos L.Benussi S.Bianco D.Piccolo S.Buontempo A.Di Crescenzo F.Fienga G.De Lellis L.Lista S.Meola P.Paolucci A.Braghieri P.Salvini P.Montagna C.Riccardi P.Vitulo B.Francois T.J.Kim J.Park S.Y.Choi B.Hong K.S.Lee J.Goh H.Lee J.Eysermans C.Uribe Estrada I.Pedraza H.Castilla-Valdez A.Sanchez-Hernandez C.A.Mondragon Herrera D.A.Perez Navarro G.A.Ayala Sanchez S.Carrillo E.Vazquez A.Radi A.Ahmad I.Asghar H.Hoorani S.Muhammad M.A.Shah I.Crotty | 2021 | Radiation Detection Technology and Methods2021,5,2: | 0 |