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Significant contribution of stratospheric water vapor to the poleward expansion of the Hadley circulation in autumn under greenhouse warming 期刊论文
Geophysical Research Letters, 2021
作者:  Yan Xia;  Yuwei Wang;  Yi Huang;  Yongyun Hu;  Jianchun Bian;  Chuanfeng Zhao;  Cheng Sun
收藏  |  浏览/下载:13/0  |  提交时间:2021/08/30
Ambient climate determines the directional trend of community stability under warming and grazing 期刊论文
Global Change Biology, 2021
作者:  Peipei Liu;  Wangwang Lv;  Jianping Sun;  Caiyun Luo;  Zhenhua Zhang;  Xiaoxue Zhu;  Xingwu Lin;  Jichuang Duan;  Guangping Xu;  Xiaofeng Chang;  Yigang Hu;  Qiaoyan Lin;  Burenbayin Xu;  Xiaowei Guo;  Lili Jiang;  Yanfen Wang;  Shilong Piao;  Jinzhi Wang;  Haishan Niu;  Liyong Shen;  Yang Zhou;  Bowen Li;  Lirong Zhang;  Huan Hong;  Qi Wang;  A. Wang;  Suren Zhang;  Lu Xia;  Tsechoe Dorji;  Yingnian Li;  Guangming Cao;  Josep Peñ;  uelas;  Xinquan Zhao;  Shiping Wang
收藏  |  浏览/下载:22/0  |  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
Contrasting pathways of carbon sequestration in paddy and upland soils 期刊论文
Global Change Biology, 2021
作者:  Xiangbi Chen;  Yajun Hu;  Yinhang Xia;  Shengmeng Zheng;  Chong Ma;  Yichao Rui;  Hongbo He;  Daoyou Huang;  Zhenhua Zhang;  Tida Ge;  Jinshui Wu;  Georg Guggenberger;  Yakov Kuzyakov;  Yirong Su
收藏  |  浏览/下载:9/0  |  提交时间:2021/04/06
Surface brightening in eastern and central China since the implementation of the Clean Air Action in 2013: causes and implications 期刊论文
Geophysical Research Letters, 2020
作者:  Hongrong Shi;  Jinqiang Zhang;  Bin Zhao;  Xiangao Xia;  Bo Hu;  Hongbin Chen;  Jing Wei;  Mengqi Liu;  Yuxuan Bian;  Disong Fu;  Yu Gu;  Kuo‐;  Nan Liou
收藏  |  浏览/下载:15/0  |  提交时间:2021/01/22
Structure-based design of antiviral drug candidates targeting the SARS-CoV-2 main protease 期刊论文
Science, 2020
作者:  Wenhao Dai;  Bing Zhang;  Xia-Ming Jiang;  Haixia Su;  Jian Li;  Yao Zhao;  Xiong Xie;  Zhenming Jin;  Jingjing Peng;  Fengjiang Liu;  Chunpu Li;  You Li;  Fang Bai;  Haofeng Wang;  Xi Cheng;  Xiaobo Cen;  Shulei Hu;  Xiuna Yang;  Jiang Wang;  Xiang Liu;  Gengfu Xiao;  Hualiang Jiang;  Zihe Rao;  Lei-Ke Zhang;  Yechun Xu;  Haitao Yang;  Hong Liu
收藏  |  浏览/下载:18/0  |  提交时间:2020/06/22
Aerosol-photolysis interaction reduces particulate matter during wintertime haze events 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (18) : 9755-9761
作者:  Wu, Jiarui;  Bei, Naifang;  Hu, Bo;  Liu, Suixin;  Wang, Yuan;  Shen, Zhenxing;  Li, Xia;  Liu, Lang;  Wang, Ruonan;  Liu, Zirui;  Cao, Junji;  Tie, Xuexi;  Molina, Luisa T.;  Li, Guohui
收藏  |  浏览/下载:11/0  |  提交时间:2020/05/13
particulate pollution  aerosol-radiation interaction  aerosol-photolysis interaction  
High-spatiotemporal-resolution mapping of global urban change from 1985 to 2015 期刊论文
NATURE SUSTAINABILITY, 2020, 3 (7) : 564-+
作者:  Liu, Xiaoping;  Huang, Yinghuai;  Xu, Xiaocong;  Li, Xuecao;  Li, Xia;  Ciais, Philippe;  Lin, Peirong;  Gong, Kai;  Ziegler, Alan D.;  Chen, Anping;  Gong, Peng;  Chen, Jun;  Hu, Guohua;  Chen, Yimin;  Wang, Shaojian;  Wu, Qiusheng;  Huang, Kangning;  Estes, Lyndon;  Zeng, Zhenzhong
收藏  |  浏览/下载:17/0  |  提交时间:2020/05/13
Warming-induced unprecedented high-elevation forest growth over the monsoonal Tibetan Plateau 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2020, 15 (5)
作者:  Shi, Chunming;  Schneider, Lea;  Hu, Yuan;  Shen, Miaogen;  Sun, Cheng;  Xia, Jianyang;  Forbes, Bruce C.;  Shi, Peili;  Zhang, Yuandong;  Ciais, Philippe
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
Tibetan Plateau  high-elevation forest  growth  drought stress  warming  
A map of object space in primate inferotemporal cortex 期刊论文
NATURE, 2020, 583 (7814) : 103-+
作者:  Wu, Huihui;  Li, Bosheng;  Iwakawa, Hiro-oki;  Pan, Yajie;  Tang, Xianli;  Ling-hu, Qianyan;  Liu, Yuelin;  Sheng, Shixin;  Feng, Li;  Zhang, Hong;  Zhang, Xinyan;  Tang, Zhonghua;  Xia, Xinli;  Zhai, Jixian;  Guo, Hongwei
收藏  |  浏览/下载:47/0  |  提交时间:2020/07/03

Primate inferotemporal cortex contains a coarse map of object space consisting of four networks, identified using functional imaging, electrophysiology and deep networks.


The inferotemporal (IT) cortex is responsible for object recognition, but it is unclear how the representation of visual objects is organized in this part of the brain. Areas that are selective for categories such as faces, bodies, and scenes have been found(1-5), but large parts of IT cortex lack any known specialization, raising the question of what general principle governs IT organization. Here we used functional MRI, microstimulation, electrophysiology, and deep networks to investigate the organization of macaque IT cortex. We built a low-dimensional object space to describe general objects using a feedforward deep neural network trained on object classification(6). Responses of IT cells to a large set of objects revealed that single IT cells project incoming objects onto specific axes of this space. Anatomically, cells were clustered into four networks according to the first two components of their preferred axes, forming a map of object space. This map was repeated across three hierarchical stages of increasing view invariance, and cells that comprised these maps collectively harboured sufficient coding capacity to approximately reconstruct objects. These results provide a unified picture of IT organization in which category-selective regions are part of a coarse map of object space whose dimensions can be extracted from a deep network.