日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

First-line Aumolertinib (EGFR tyrosine kinase inhibitor) plus apatinib (VEGFR inhibitor) versus aumolertinib in EGFR-mutant non-small cell lung cancer patients: a randomized, multicenter, phase II trial

一线治疗EGFR突变型非小细胞肺癌患者,比较奥莫替尼(EGFR酪氨酸激酶抑制剂)联合阿帕替尼(VEGFR抑制剂)与奥莫替尼单药治疗的疗效:一项随机、多中心、II期临床试验

Zhang, Fan; Zheng, Zhendong; Zhang, Hongmei; Yan, Xiaolong; Liu, Zhefeng; Yang, Fan; Wen, Juyi; Gan, Xin; Wu, Lin; Cang, Shundong; Wang, Hongmei; Zhao, Jun; Peng, Liang; Li, Xiaosong; Fan, Zaiwen; Shen, Ge; Zhou, Qiong; Zou, Jinjing; Xu, Yu; Zhang, Lei; Zhao, Mingfang; Cai, Shangli; Hu, Yi

Signaling pathways and targeted interventions for precancers

癌前病变的信号通路和靶向干预

Yang, Jin; Wang, Shimeng; Li, Xin; Xu, Hongdan; Sun, Tongxu; Hu, Tao; Luo, Jingjing; Zhou, Hongmei

Emerging climate impact on carbon sinks in a consolidated carbon budget

新兴气候变化对综合碳预算中碳汇的影响

Friedlingstein, Pierre; Le Quéré, Corinne; O'Sullivan, Michael; Hauck, Judith; Landschützer, Peter; Luijkx, Ingrid T; Li, Hongmei; van der Woude, Auke; Schwingshackl, Clemens; Pongratz, Julia; Regnier, Pierre; Andrew, Robbie M; Bakker, Dorothee C E; Canadell, Josep G; Ciais, Philippe; Gasser, Thomas; Jones, Matthew W; Lan, Xin; Morgan, Eric; Olsen, Are; Peters, Glen P; Peters, Wouter; Sitch, Stephen; Tian, Hanqin

Prospective Associations of Obesity and Obesity Severity With 9 Cardiovascular Outcomes: The Cross-Cohort Collaboration

肥胖及肥胖严重程度与9种心血管结局的前瞻性关联:跨队列合作研究

Dardari, Zeina A; Yao, Zhiqi; Zhang, Jianjun; Bakoyannis, Giorgos; Nan, Hongmei; Staten, Lisa K; Jha, Kunal K; Tasdighi, Erfan; Jelwan, Yara; Burka, Semenawit; Matsushita, Kunihiro; Simonsick, Eleanor M; Lima, Joao A C; Psaty, Bruce M; Cohen, Debbie L; Appel, Lawrence J; Khera, Amit; Shah, Amil M; Hall, Michael E; Judd, Suzanne E; Cole, Shelley A; Vasan, Ramachandran S; Benjamin, Emelia J; Cawthon, Peggy M; Orwoll, Eric; LaMonte, Michael J; Eaton, Charles B; El Khoudary, Samar R; Thurston, Rebecca C; Derby, Carol A; Lotufo, Paulo A; Bensenor, Isabela M; Bittencourt, Márcio Sommer; Blaha, Michael J

Thin-Film-Engineered Self-Assembly of 3D Coaxial Microfluidics with a Tunable Polyimide Membrane for Bioelectronic Power

基于薄膜工程的自组装三维同轴微流控芯片,采用可调聚酰亚胺膜构建生物电子电源

Egunov, Aleksandr I; Tang, Hongmei; Saenz, Pablo E; Karnaushenko, Dmitriy D; Luo, Yumin; Zhong, Chao; Wang, Xinyu; Huang, Yang; Fedorov, Pavel; Merces, Leandro; Zhu, Minshen; Karnaushenko, Daniil; Schmidt, Oliver G

In-situ formation of oriented perovskite nanosheets with tailored optical dipoles enabling >30% EQE in pure-red LEDs

原位形成具有可调控光学偶极子的取向钙钛矿纳米片,使纯红色LED的外部量子效率(EQE)达到30%以上

Liu, Shaowei; Zhang, Dezhong; Wang, Lei; Li, Binhe; Yuan, Wei; Xiong, Ziheng; Chen, Kai; Zhu, Helong; Wu, Wenping; Li, Shuang; Yang, Liu; Liu, Yunzhuo; Zhan, Hongmei; Qin, Chuanli; Zhang, Jiaqi; Liu, Jun; Wang, Lixiang; Qin, Chuanjiang

The role of artificial intelligence in advancing population-based cancer registration

人工智能在推进基于人群的癌症登记中的作用

Ding, Shuai; Liu, Mingyuan; Wang, Hao; Song, Cheng; Zhao, Luyue; Yang, Zhihao; Wang, Yue; Wang, Yifan; Cui, Haitao; Liu, Zihao; Liu, Dongrun; Matsuda, Tomohiro; Hori, Megumi; Katsimpokis, Dimitris; Geleijnse, Gijs; Farré, Xavier; Morrison, David S; Wang, Yaogang; Zhang, Siwei; Liu, Meicen; Geng, Qiushuo; Ni, Ling; Sun, Kexin; Han, Bingfeng; Wang, Shaoming; Chen, Ru; Li, Li; Sugiyama, Hiromi; Jung, Kyu-Won; Wei, Yongyue; Chen, Wanqing; Soerjomataram, Isabelle; Bray, Freddie; Zeng, Hongmei; He, Jie

Dual functional properties of a probiotic biofilm-decorated bone substitute to combat infection and promote osteoimmunomodulation

益生菌生物膜修饰的骨替代材料的双重功能特性:对抗感染和促进骨免疫调节

Song, Shiyuan; Zhang, Wen; Zhuang, Hongmei; Wei, Wei; Cheng, Shuyu; Qiao, Dan; Xiao, Yin; Zhang, Yangheng; Yan, Fuhua

A nature-derived, strong adhesive hydrogel microsphere for wet tissue repair: Multifunctional and clinical potential

用于湿组织修复的天然来源强粘附性水凝胶微球:多功能性和临床应用潜力

Zheng, Liwen; Feng, Jixian; Liu, Yaxian; Zhang, Jianming; Wang, Yuheng; Yan, Xingrui; Wang, Ge; Li, Lan; Pang, Yuan; Zhang, Hongmei; Zhang, Ximu

Probiotic-inspired hybrid nanovesicles for enhancing immune checkpoint therapy efficiency via tumor immune microenvironment modulation.

受益生菌启发的混合纳米囊泡通过调节肿瘤免疫微环境来增强免疫检查点疗法的效率。

Wang Fang, Fan Jinghao, Pan Wenping, Liu Mingkang, Wang Jiaxin, Wei Xue, Xian Yiwen, Chen Shiyi, Cui Chunhong, Chen Yongmiao, Li Kai, Guo Ling, You Yezi, Liu Hongmei, Wu Decheng