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

Assessing three-decade HIV testing transformation: TOPSIS-radar evaluation of tiered health system performance in rural-urban Southwestern China

评估三十年来艾滋病毒检测转型:基于TOPSIS雷达的西南城乡分层卫生系统绩效评估

Li, Sisi; Tang, Xianyan; Zhu, Pinghua; Li, Mu; Liang, Bingyu; Cheng, Man; Lin, Qian; Tang, Hongyang; Feng, Yi; Shao, Yiming

Ginseng glucosyl oleanolate inhibit cervical cancer cell proliferation and angiogenesis via PI3K/AKT/HIF-1α pathway

人参葡萄糖基齐墩果酸酯通过PI3K/AKT/HIF-1α通路抑制宫颈癌细胞增殖及血管生成

Sitong Liu, Zhiyi Ai, Yue Hu, Guangquan Ren, Junshun Zhang, Ping Tang, Hongyang Zou, Xia Li, Yu Wang, Bo Nan, Yuhua Wang

Effectiveness of human immunodeficiency virus prevention strategies by mapping the geographic dispersion pattern of human immunodeficiency virus prevalence in Nanning, China

通过绘制中国南宁市人类免疫缺陷病毒流行地理分布图,评估人类免疫缺陷病毒预防策略的有效性

Cen, Ping; Xu, Guo; Wu, Jianxun; Qin, Jiao; He, Jinfeng; Deng, Xiaofang; Yang, Xi; Lu, Peng; Nong, Mengni; Jiang, Junjun; Ye, Li; Tang, Hongyang; Liang, Bingyu; Liang, Hao

HIV knowledge, sexual attitudes, and PrEP-Eligible behaviors among college students in Southwest China: a cross-sectional study

中国西南地区大学生艾滋病知识、性态度和暴露前预防(PrEP)适用行为:一项横断面研究

Qin, Shiyu; Qin, Jiao; Su, Qiuqian; Huang, Ting; Zhan, Junyu; Yang, Xi; Yang, Yuanhong; He, Jinfeng; Lin, Zhifeng; Huang, Xinju; Ye, Li; Liang, Hao; Tang, Hongyang; Cen, Ping; Liang, Bingyu

Exposure to di (2-ethylhexyl) phthalate causes locomotor increase and anxiety-like behavior via induction of oxidative stress in brain

接触邻苯二甲酸二(2-乙基己基)酯会通过诱发大脑中的氧化应激而导致运动能力增强和焦虑样行为

Shixin Tang, Hongyang Zhang, Yinyin Xia, Shiyue Luo, Yijun Liu, Xinhao Duan, Zhen Zou, Chengzhi Chen, Lixiao Zhou, Jingfu Qiu

14,15-EET Reduced Brain Injury from Cerebral Ischemia and Reperfusion via Suppressing Neuronal Parthanatos

14,15-EET通过抑制神经元单核细胞凋亡减少脑缺血再灌注造成的脑损伤

Haipeng Zhao, Jing Tang, Hongyang Chen, Wei Gu, Huixia Geng, Lai Wang, Yanming Wang

Telomere protection mechanisms change during neurogenesis and neuronal maturation: newly generated neurons are hypersensitive to telomere and DNA damage.

端粒保护机制在神经发生和神经元成熟过程中会发生变化:新生成的神经元对端粒和 DNA 损伤高度敏感

Cheng Aiwu, Shin-ya Kazuo, Wan Ruiqian, Tang Sung-chun, Miura Takumi, Tang Hongyang, Khatri Rina, Gleichman Marc, Ouyang Xin, Liu Dong, Park Hae-Rong, Chiang Jeffrey Y, Mattson Mark P