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Leaf senescence exhibits stronger climatic responses during warm than during cold autumns 期刊论文
NATURE CLIMATE CHANGE, 2020
作者:  Chen, Lei;  Hanninen, Heikki;  Rossi, Sergio;  Smith, Nicholas G.;  Pau, Stephanie;  Liu, Zhiyong;  Feng, Guanqiao;  Gao, Jie;  Liu, Jianquan
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/09
Tracer-based investigation of organic aerosols in marine atmospheres from marginal seas of China to the northwest Pacific Ocean 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2020, 20 (8) : 5055-5070
作者:  Guo, Tianfeng;  Guo, Zhigang;  Wang, Juntao;  Feng, Jialiang;  Gao, Huiwang;  Yao, Xiaohong
收藏  |  浏览/下载:11/0  |  提交时间:2020/05/13
Nanoplasma-enabled picosecond switches for ultrafast electronics (vol 579, pg 534, 2020) 期刊论文
NATURE, 2020, 580 (7803) : E8-E8
作者:  Li, Jing;  Xu, Chuanliang;  Lee, Hyung Joo;  Ren, Shancheng;  Zi, Xiaoyuan;  Zhang, Zhiming;  Wang, Haifeng;  Yu, Yongwei;  Yang, Chenghua;  Gao, Xiaofeng;  Hou, Jianguo;  Wang, Linhui;  Yang, Bo;  Yang, Qing;  Ye, Huamao;  Zhou, Tie;  Lu, Xin;  Wang, Yan;  Qu, Min;  Yang, Qingsong;  Zhang, Wenhui;  Shah, Nakul M.;  Pehrsson, Erica C.;  Wang, Shuo;  Wang, Zengjun;  Jiang, Jun;  Zhu, Yan;  Chen, Rui;  Chen, Huan;  Zhu, Feng;  Lian, Bijun;  Li, Xiaoyun;  Zhang, Yun;  Wang, Chao;  Wang, Yue;  Xiao, Guangan;  Jiang, Junfeng;  Yang, Yue;  Liang, Chaozhao;  Hou, Jianquan;  Han, Conghui;  Chen, Ming;  Jiang, Ning;  Zhang, Dahong;  Wu, Song;  Yang, Jinjian;  Wang, Tao;  Chen, Yongliang;  Cai, Jiantong;  Yang, Wenzeng;  Xu, Jun;  Wang, Shaogang;  Gao, Xu;  Wang, Ting;  Sun, Yinghao
收藏  |  浏览/下载:18/0  |  提交时间:2020/07/03
Integrating genomic features for non-invasive early lung cancer detection 期刊论文
NATURE, 2020, 580 (7802) : 245-+
作者:  Wang, Qinyang;  Wang, Yupeng;  Ding, Jingjin;  Wang, Chunhong;  Zhou, Xuehan;  Gao, Wenqing;  Huang, Huanwei;  Shao, Feng;  Liu, Zhibo
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/03

Circulating tumour DNA in blood is analysed to identify genomic features that distinguish early-stage lung cancer patients from risk-matched controls, and these are integrated into a machine-learning method for blood-based lung cancer screening.


Radiologic screening of high-risk adults reduces lung-cancer-related mortality(1,2)  however, a small minority of eligible individuals undergo such screening in the United States(3,4). The availability of blood-based tests could increase screening uptake. Here we introduce improvements to cancer personalized profiling by deep sequencing (CAPP-Seq)(5), a method for the analysis of circulating tumour DNA (ctDNA), to better facilitate screening applications. We show that, although levels are very low in early-stage lung cancers, ctDNA is present prior to treatment in most patients and its presence is strongly prognostic. We also find that the majority of somatic mutations in the cell-free DNA (cfDNA) of patients with lung cancer and of risk-matched controls reflect clonal haematopoiesis and are non-recurrent. Compared with tumour-derived mutations, clonal haematopoiesis mutations occur on longer cfDNA fragments and lack mutational signatures that are associated with tobacco smoking. Integrating these findings with other molecular features, we develop and prospectively validate a machine-learning method termed '  lung cancer likelihood in plasma'  (Lung-CLiP), which can robustly discriminate early-stage lung cancer patients from risk-matched controls. This approach achieves performance similar to that of tumour-informed ctDNA detection and enables tuning of assay specificity in order to facilitate distinct clinical applications. Our findings establish the potential of cfDNA for lung cancer screening and highlight the importance of risk-matching cases and controls in cfDNA-based screening studies.


  
Evidence of metasomatism in the interior of Vesta 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Zhang, Ai-Cheng;  Kawasaki, Noriyuki;  Bao, Huiming;  Liu, Jia;  Qin, Liping;  Kuroda, Minami;  Gao, Jian-Feng;  Chen, Li-Hui;  He, Ye;  Sakamoto, Naoya;  Yurimoto, Hisayoshi
收藏  |  浏览/下载:8/0  |  提交时间:2020/05/13
Collisional cooling of ultracold molecules 期刊论文
NATURE, 2020, 580 (7802) : 197-+
作者:  Wang, Qinyang;  Wang, Yupeng;  Ding, Jingjin;  Wang, Chunhong;  Zhou, Xuehan;  Gao, Wenqing;  Huang, Huanwei;  Shao, Feng;  Liu, Zhibo
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Since the original work on Bose-Einstein condensation(1,2), the use of quantum degenerate gases of atoms has enabled the quantum emulation of important systems in condensed matter and nuclear physics, as well as the study of many-body states that have no analogue in other fields of physics(3). Ultracold molecules in the micro- and nanokelvin regimes are expected to bring powerful capabilities to quantum emulation(4) and quantum computing(5), owing to their rich internal degrees of freedom compared to atoms, and to facilitate precision measurement and the study of quantum chemistry(6). Quantum gases of ultracold atoms can be created using collision-based cooling schemes such as evaporative cooling, but thermalization and collisional cooling have not yet been realized for ultracold molecules. Other techniques, such as the use of supersonic jets and cryogenic buffer gases, have reached temperatures limited to above 10 millikelvin(7,8). Here we show cooling of NaLi molecules to micro- and nanokelvin temperatures through collisions with ultracold Na atoms, with both molecules and atoms prepared in their stretched hyperfine spin states. We find a lower bound on the ratio of elastic to inelastic molecule-atom collisions that is greater than 50-large enough to support sustained collisional cooling. By employing two stages of evaporation, we increase the phase-space density of the molecules by a factor of 20, achieving temperatures as low as 220 nanokelvin. The favourable collisional properties of the Na-NaLi system could enable the creation of deeply quantum degenerate dipolar molecules and raises the possibility of using stretched spin states in the cooling of other molecules.


NaLi molecules are cooled to micro- and nanokelvin temperatures through collisions with ultracold Na atoms by using molecules and atoms in stretched hyperfine spin states and applying two evaporation stages.


  
Kinetic Exchange of Remobilized Phosphorus Related to Phosphorus-Iron-Sulfur Biogeochemical Coupling in Coastal Sediment 期刊论文
WATER RESOURCES RESEARCH, 2019, 55 (12) : 10494-10517
作者:  Pan, Feng;  Guo, Zhanrong;  Cai, Yu;  Liu, Huatai;  Wu, Jinye;  Fu, Yuyao;  Wang, Bo;  Gao, Aiguo
收藏  |  浏览/下载:12/0  |  提交时间:2020/02/16
phosphorus remobilization  phosphorus exchange flux  iron reduction  sulfate reduction  crab burrow  biogeochemistry  
The Zonal Dipole Pattern of Tropical Cyclone Genesis in the Indian Ocean Influenced by the Tropical Indo-Pacific Ocean Sea Surface Temperature Anomalies 期刊论文
JOURNAL OF CLIMATE, 2019, 32 (19) : 6533-6549
作者:  Yuan, Junpeng;  Gao, Yong;  Feng, Dian;  Yang, Yali
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Atmosphere  Indian Ocean  Atmosphere-ocean interaction  Cyclogenesis  cyclolysis  Interannual variability  
The gut microbiome in atherosclerotic cardiovascular disease 期刊论文
NATURE COMMUNICATIONS, 2017, 8
作者:  Jie, Zhuye;  Xia, Huihua;  Zhong, Shi-Long;  Feng, Qiang;  Li, Shenghui;  Liang, Suisha;  Zhong, Huanzi;  Liu, Zhipeng;  Gao, Yuan;  Zhao, Hui;  Zhang, Dongya;  Su, Zheng;  Fang, Zhiwei;  Lan, Zhou;  Li, Junhua;  Xiao, Liang;  Li, Jun;  Li, Ruijun;  Li, Xiaoping;  Li, Fei;  Ren, Huahui;  Huang, Yan;  Peng, Yangqing;  Li, Guanglei;  Wen, Bo;  Dong, Bo;  Chen, Ji-Yan;  Geng, Qing-Shan;  Zhang, Zhi-Wei;  Yang, Huanming;  Wang, Jian;  Wang, Jun;  Zhang, Xuan;  Madsen, Lise;  Brix, Susanne;  Ning, Guang;  Xu, Xun;  Liu, Xin;  Hou, Yong;  Jia, Huijue;  He, Kunlun;  Kristiansen, Karsten
收藏  |  浏览/下载:15/0  |  提交时间:2019/11/27
Aerosol pH Dynamics During Haze Periods in an Urban Environment in China: Use of Detailed, Hourly, Speciated Observations to Study the Role of Ammonia Availability and Secondary Aerosol Formation and Urban Environment 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2019, 124 (16) : 9730-9742
作者:  Shi, Guoliang;  Xu, Jiao;  Shi, Xurong;  Liu, Baoshuang;  Bi, Xiaohui;  Xiao, Zhimei;  Chen, Kui;  Wen, Jie;  Dong, Shihao;  Tian, Yingze;  Feng, Yinchang;  Yu, Haofei;  Song, Shaojie;  Zhao, Qianyu;  Gao, Jie;  Russell, Armistead G.
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
aerosol  pH  ammonia  source  secondary aerosol