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Global patterns of potential future plant diversity hidden in soil seed banks 期刊论文
Nature Communications, 2021
作者:  Yang, Xuejun;  Baskin, Carol C.;  Baskin, Jerry M.;  Pakeman, Robin J.;  Huang, Zhenying;  Gao, Ruiru;  Cornelissen, Johannes H. C.
收藏  |  浏览/下载:10/0  |  提交时间:2021/12/15
Pore Pressure Threshold and Fault Slip Potential for Induced Earthquakes in the Dallas-Fort Worth Area of North Central Texas 期刊论文
Geophysical Research Letters, 2021
作者:  P. H. Hennings;  J. P. Nicot;  R. S. Gao;  H. R. DeShon;  J.-E. Lund Snee;  A. P. Morris;  M. R. Brudzinski;  E. A. Horne;  C. Breton
收藏  |  浏览/下载:9/0  |  提交时间:2021/08/10
Peta–electron volt gamma-ray emission from the Crab Nebula 期刊论文
Science, 2021
作者:  The LHAASO Collaboration*†;  Zhen Cao;  F. Aharonian;  Q. An;  Axikegu;  L. X. Bai;  Y. X. Bai;  Y. W. Bao;  D. Bastieri;  X. J. Bi;  Y. J. Bi;  H. Cai;  J. T. Cai;  Zhe Cao;  J. Chang;  J. F. Chang;  B. M. Chen;  E. S. Chen;  J. Chen;  Liang Chen;  Liang Chen;  Long Chen;  M. J. Chen;  M. L. Chen;  Q. H. Chen;  S. H. Chen;  S. Z. Chen;  T. L. Chen;  X. L. Chen;  Y. Chen;  N. Cheng;  Y. D. Cheng;  S. W. Cui;  X. H. Cui;  Y. D. Cui;  B. D’Ettorre Piazzoli;  B. Z. Dai;  H. L. Dai;  Z. G. Dai;  Danzengluobu;  D. della Volpe;  X. J. Dong;  K. K. Duan;  J. H. Fan;  Y. Z. Fan;  Z. X. Fan;  J. Fang;  K. Fang;  C. F. Feng;  L. Feng;  S. H. Feng;  Y. L. Feng;  B. Gao;  C. D. Gao;  L. Q. Gao;  Q. Gao;  W. Gao;  M. M. Ge;  L. S. Geng;  G. H. Gong;  Q. B. Gou;  M. H. Gu;  F. L. Guo;  J. G. Guo;  X. L. Guo;  Y. Q. Guo;  Y. Y. Guo;  Y. A. Han;  H. H. He;  H. N. He;  J. C. He;  S. L. He;  X. B. He;  Y. He;  M. Heller;  Y. K. Hor;  C. Hou;  X. Hou;  H. B. Hu;  S. Hu;  S. C. Hu;  X. J. Hu;  D. H. Huang;  Q. L. Huang;  W. H. Huang;  X. T. Huang;  X. Y. Huang;  Z. C. Huang;  F. Ji;  X. L. Ji;  H. Y. Jia;  K. Jiang;  Z. J. Jiang;  C. Jin;  T. Ke;  D. Kuleshov;  K. Levochkin;  B. B. Li;  Cheng Li;  Cong Li;  F. Li;  H. B. Li;  H. C. Li;  H. Y. Li;  Jian Li;  Jie Li;  K. Li;  W. L. Li;  X. R. Li;  Xin Li;  Xin Li;  Y. Li;  Y. Z. Li;  Zhe Li;  Zhuo Li;  E. W. Liang;  Y. F. Liang;  S. J. Lin;  B. Liu;  C. Liu;  D. Liu;  H. Liu;  H. D. Liu;  J. Liu;  J. L. Liu;  J. S. Liu;  J. Y. Liu;  M. Y. Liu;  R. Y. Liu;  S. M. Liu;  W. Liu;  Y. Liu;  Y. N. Liu;  Z. X. Liu;  W. J. Long;  R. Lu;  H. K. Lv;  B. Q. Ma;  L. L. Ma;  X. H. Ma;  J. R. Mao;  A. Masood;  Z. Min;  W. Mitthumsiri;  T. Montaruli;  Y. C. Nan;  B. Y. Pang;  P. Pattarakijwanich;  Z. Y. Pei;  M. Y. Qi;  Y. Q. Qi;  B. Q. Qiao;  J. J. Qin;  D. Ruffolo;  V. Rulev;  A. Saiz;  L. Shao;  O. Shchegolev;  X. D. Sheng;  J. Y. Shi;  H. C. Song;  Yu. V. Stenkin;  V. Stepanov;  Y. Su;  Q. N. Sun;  X. N. Sun;  Z. B. Sun;  P. H. T. Tam;  Z. B. Tang;  W. W. Tian;  B. D. Wang;  C. Wang;  H. Wang;  H. G. Wang;  J. C. Wang;  J. S. Wang;  L. P. Wang;  L. Y. Wang;  R. N. Wang;  Wei Wang;  Wei Wang;  X. G. Wang;  X. J. Wang;  X. Y. Wang;  Y. Wang;  Y. D. Wang;  Y. J. Wang;  Y. P. Wang;  Z. H. Wang;  Z. X. Wang;  Zhen Wang;  Zheng Wang;  D. M. Wei;  J. J. Wei;  Y. J. Wei;  T. Wen;  C. Y. Wu;  H. R. Wu;  S. Wu;  W. X. Wu;  X. F. Wu;  S. Q. Xi;  J. Xia;  J. J. Xia;  G. M. Xiang;  D. X. Xiao;  G. Xiao;  H. B. Xiao;  G. G. Xin;  Y. L. Xin;  Y. Xing;  D. L. Xu;  R. X. Xu;  L. Xue;  D. H. Yan;  J. Z. Yan;  C. W. Yang;  F. F. Yang;  J. Y. Yang;  L. L. Yang;  M. J. Yang;  R. Z. Yang;  S. B. Yang;  Y. H. Yao;  Z. G. Yao;  Y. M. Ye;  L. Q. Yin;  N. Yin;  X. H. You;  Z. Y. You;  Y. H. Yu;  Q. Yuan;  H. D. Zeng;  T. X. Zeng;  W. Zeng;  Z. K. Zeng;  M. Zha;  X. X. Zhai;  B. B. Zhang;  H. M. Zhang;  H. Y. Zhang;  J. L. Zhang;  J. W. Zhang;  L. X. Zhang;  Li Zhang;  Lu Zhang;  P. F. Zhang;  P. P. Zhang;  R. Zhang;  S. R. Zhang;  S. S. Zhang;  X. Zhang;  X. P. Zhang;  Y. F. Zhang;  Y. L. Zhang;  Yi Zhang;  Yong Zhang;  B. Zhao;  J. Zhao;  L. Zhao;  L. Z. Zhao;  S. P. Zhao;  F. Zheng;  Y. Zheng;  B. Zhou;  H. Zhou;  J. N. Zhou;  P. Zhou;  R. Zhou;  X. X. Zhou;  C. G. Zhu;  F. R. Zhu;  H. Zhu;  K. J. Zhu;  X. Zuo
收藏  |  浏览/下载:14/0  |  提交时间:2021/07/27
CATMoS: Collaborative Acute Toxicity Modeling Suite 期刊论文
Environmental Health Perspectives, 2021
作者:  Kamel Mansouri;  Agnes L. Karmaus;  Jeremy Fitzpatrick;  Grace Patlewicz;  Prachi Pradeep;  Domenico Alberga;  Nathalie Alepee;  Timothy E.H. Allen;  Dave Allen;  Vinicius M. Alves;  Carolina H. Andrade;  Tyler R. Auernhammer;  Davide Ballabio;  Shannon Bell;  Emilio Benfenati;  Sudin Bhattacharya;  Joyce V. Bastos;  Stephen Boyd;  J.B. Brown;  Stephen J. Capuzzi;  Yaroslav Chushak;  Heather Ciallella;  Alex M. Clark;  Viviana Consonni;  Pankaj R. Daga;  Sean Ekins;  Sherif Farag;  Maxim Fedorov;  Denis Fourches;  Domenico Gadaleta;  Feng Gao;  Jeffery M. Gearhart;  Garett Goh;  Jonathan M. Goodman;  Francesca Grisoni;  Christopher M. Grulke;  Thomas Hartung;  Matthew Hirn;  Pavel Karpov;  Alexandru Korotcov;  Giovanna J. Lavado;  Michael Lawless;  Xinhao Li;  Thomas Luechtefeld;  Filippo Lunghini;  Giuseppe F. Mangiatordi;  Gilles Marcou;  Dan Marsh;  Todd Martin;  Andrea Mauri;  Eugene N. Muratov;  Glenn J. Myatt;  Dac-Trung Nguyen;  Orazio Nicolotti;  Reine Note;  Paritosh Pande;  Amanda K. Parks;  Tyler Peryea;  Ahsan H. Polash;  Robert Rallo;  Alessandra Roncaglioni;  Craig Rowlands;  Patricia Ruiz;  Daniel P. Russo;  Ahmed Sayed;  Risa Sayre;  Timothy Sheils;  Charles Siegel;  Arthur C. Silva;  Anton Simeonov;  Sergey Sosnin;  Noel Southall;  Judy Strickland;  Yun Tang;  Brian Teppen;  Igor V. Tetko;  Dennis Thomas;  Valery Tkachenko;  Roberto Todeschini;  Cosimo Toma;  Ignacio Tripodi;  Daniela Trisciuzzi;  Alexander Tropsha;  Alexandre Varnek;  Kristijan Vukovic;  Zhongyu Wang;  Liguo Wang;  Katrina M. Waters;  Andrew J. Wedlake;  Sanjeeva J. Wijeyesakere;  Dan Wilson;  Zijun Xiao;  Hongbin Yang;  Gergely Zahoranszky-Kohalmi;  Alexey V. Zakharov;  Fagen F. Zhang;  Zhen Zhang;  Tongan Zhao;  Hao Zhu;  Kimberley M. Zorn;  Warren Casey;  Nicole C. Kleinstreuer
收藏  |  浏览/下载:15/0  |  提交时间:2021/05/07
CARD8 is an inflammasome sensor for HIV-1 protease activity 期刊论文
Science, 2021
作者:  Qiankun Wang;  Hongbo Gao;  Kolin M. Clark;  Christian Shema Mugisha;  Keanu Davis;  Jack P. Tang;  Gray H. Harlan;  Carl J. DeSelm;  Rachel M. Presti;  Sebla B. Kutluay;  Liang Shan
收藏  |  浏览/下载:12/0  |  提交时间:2021/03/29
Effect of the electric field on the agyrotropic electron distributions 期刊论文
Geophysical Research Letters, 2021
作者:  C. ‐;  H. Gao;  B. ‐;  B. Tang;  W. Y. Li;  C. Wang;  Yu. V. Khotyaintsev;  D. B. Graham;  D. J. Gershman;  A. C. Rager;  B. L. Giles;  P. ‐;  A. Lindqvist;  R. E. Ergun;  C. T. Russell;  J. L. Burch
收藏  |  浏览/下载:10/0  |  提交时间:2021/02/17
High Temporal Resolution Satellite Observations of Fire Radiative Power Reveal Link Between Fire Behavior and Aerosol and Gas Emissions 期刊论文
Geophysical Research Letters, 2020
作者:  Elizabeth B. Wiggins;  Amber J. Soja;  Emily Gargulinski;  Hannah S. Halliday;  R. Bradley Pierce;  Christopher C. Schmidt;  John B. Nowak;  Joshua P. DiGangi;  Glenn S. Diskin;  Joseph M. Katich;  Anne E. Perring;  Joshua P. Schwarz;  Bruce E. Anderson;  Gao Chen;  Ewan C. Crosbie;  Carolyn Jordan;  Claire E. Robinson;  Kevin J. Sanchez;  Taylor J. Shingler;  Michael Shook;  Kenneth L. Thornhill;  Edward L. Winstead;  Luke D. Ziemba;  Richard H. Moore
收藏  |  浏览/下载:10/0  |  提交时间:2020/11/30
Hard or soft flood adaptation? Advantages of a hybrid strategy for Shanghai 期刊论文
GLOBAL ENVIRONMENTAL CHANGE-HUMAN AND POLICY DIMENSIONS, 2020, 61
作者:  Du, Shiqiang;  Scussolini, Paolo;  Ward, Philip J.;  Zhang, Min;  Wen, Jiahong;  Wang, Luyang;  Koks, Elco;  Diaz-Loaiza, Andres;  Gao, Jun;  Ke, Qian;  Aerts, Jeroen C. J. H.
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/02
Climate change  Nonstationarity  Coastal flood  Risk management  Cost-benefit analysis  
The Flapping Motion of Mercury's Magnetotail Current Sheet: MESSENGER Observations 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (4)
作者:  Zhang, C.;  Rong, Z. J.;  Gao, J. W.;  Zhong, J.;  Chai, L. H.;  Wei, Y.;  Shen, C.;  Wan, W. X.
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/02
Premature mortality related to United States cross-state air pollution 期刊论文
NATURE, 2020, 578 (7794) : 261-+
作者:  Helmink, Beth A.;  Reddy, Sangeetha M.;  Gao, Jianjun;  Zhang, Shaojun;  Basar, Rafet;  Thakur, Rohit;  Yizhak, Keren;  Sade-Feldman, Moshe;  Blando, Jorge;  Han, Guangchun;  Gopalakrishnan, Vancheswaran;  Xi, Yuanxin;  Zhao, Hao;  Amaria, Rodabe N.;  Tawbi, Hussein A.;  Cogdill, Alex P.;  Liu, Wenbin;  LeBleu, Valerie S.;  Kugeratski, Fernanda G.;  Patel, Sapna;  Davies, Michael A.;  Hwu, Patrick;  Lee, Jeffrey E.;  Gershenwald, Jeffrey E.;  Lucci, Anthony;  Arora, Reetakshi;  Woodman, Scott;  Keung, Emily Z.;  Gaudreau, Pierre-Olivier;  Reuben, Alexandre;  Spencer, Christine N.;  Burton, Elizabeth M.;  Haydu, Lauren E.;  Lazar, Alexander J.;  Zapassodi, Roberta;  Hudgens, Courtney W.;  Ledesma, Deborah A.;  Ong, SuFey;  Bailey, Michael;  Warren, Sarah;  Rao, Disha;  Krijgsman, Oscar;  Rozeman, Elisa A.;  Peeper, Daniel;  Blank, Christian U.;  Schumacher, Ton N.;  Butterfield, Lisa H.;  Zelazowska, Monika A.;  McBride, Kevin M.;  Kalluri, Raghu;  Allison, James;  Petitprez, Florent;  Fridman, Wolf Herman;  Sautes-Fridman, Catherine;  Hacohen, Nir;  Rezvani, Katayoun;  Sharma, Padmanee;  Tetzlaff, Michael T.;  Wang, Linghua;  Wargo, Jennifer A.
收藏  |  浏览/下载:37/0  |  提交时间:2020/05/13

Outdoor air pollution adversely affects human health and is estimated to be responsible for five to ten per cent of the total annual premature mortality in the contiguous United States(1-3). Combustion emissions from a variety of sources, such as power generation or road traffic, make a large contribution to harmful air pollutants such as ozone and fine particulate matter (PM2.5)(4). Efforts to mitigate air pollution have focused mainly on the relationship between local emission sources and local air quality(2). Air quality can also be affected by distant emission sources, however, including emissions from neighbouring federal states(5,6). This cross-state exchange of pollution poses additional regulatory challenges. Here we quantify the exchange of air pollution among the contiguous United States, and assess its impact on premature mortality that is linked to increased human exposure to PM2.5 and ozone from seven emission sectors for 2005 to 2018. On average, we find that 41 to 53 per cent of air-quality-related premature mortality resulting from a state'  s emissions occurs outside that state. We also find variations in the cross-state contributions of different emission sectors and chemical species to premature mortality, and changes in these variations over time. Emissions from electric power generation have the greatest cross-state impacts as a fraction of their total impacts, whereas commercial/residential emissions have the smallest. However, reductions in emissions from electric power generation since 2005 have meant that, by 2018, cross-state premature mortality associated with the commercial/residential sector was twice that associated with power generation. In terms of the chemical species emitted, nitrogen oxides and sulfur dioxide emissions caused the most cross-state premature deaths in 2005, but by 2018 primary PM2.5 emissions led to cross-state premature deaths equal to three times those associated with sulfur dioxide emissions. These reported shifts in emission sectors and emission species that contribute to premature mortality may help to guide improvements to air quality in the contiguous United States.