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

Discovery of a novel polymyxin adjuvant against multidrug-resistant gram-negative bacteria through oxidative stress modulation.

通过氧化应激调节发现一种新型多粘菌素佐剂,可对抗多重耐药革兰氏阴性菌

Lu Taotao, Han Hongguang, Wu Chaohui, Li Qian, Hu Hongyan, Liu Wenwen, Shi Donglei, Chen Feifei, Lan Lefu, Li Jian, Song Shihao, Li Baoli

Cis-2-decenoic acid modulates Pseudomonas aeruginosa virulence through a noncanonical transcriptional regulator.

顺式-2-癸烯酸通过非经典转录调节因子调节铜绿假单胞菌的毒力。

Song Shihao, Liu Jingyun, Wang Bing, Si Yang, Han Hongguang, Sun Xiuyun, Wang Mingfang, Cui Binbin, Wu Guangliang, Huo Yongliang, Xu Liangxiong, Gao Beile, Yang Liang, Wang Xiaoxue, Zhang Lian-Hui, Deng Yinyue

Prognostic value of initial routine laboratory blood tests in patients with aneurysmal subarachnoid hemorrhage requiring mechanical ventilation: a retrospective cohort study

初始常规实验室血液检查对需要机械通气的动脉瘤性蛛网膜下腔出血患者的预后价值:一项回顾性队列研究

Ren, Jiayi; Zhang, Chong; Liu, Yahua; Han, Hongguang; Liang, Yong; Zhang, Qiyan; Li, Simeng; Benn, Bryan S; Nugent, Kenneth M; Qu, Hong; Liang, Guobiao; Bai, Yang

Improving the accuracy and robustness of carotid-femoral pulse wave velocity measurement using a simplified tube-load model

利用简化的管负载模型提高颈动脉-股动脉脉搏波速度测量的准确性和鲁棒性

Xu, Lisheng; Zhou, Shuran; Wang, Lu; Yao, Yang; Hao, Liling; Qi, Lin; Yao, Yudong; Han, Hongguang; Mukkamala, Ramakrishna; Greenwald, Stephen E

Th1, Th2, and Th17 cells are dysregulated, but only Th17 cells relate to C-reactive protein, D-dimer, and mortality risk in Stanford type A aortic dissection patients

Th1、Th2 和 Th17 细胞功能失调,但只有 Th17 细胞与 Stanford A 型主动脉夹层患者的 C 反应蛋白、D-二聚体和死亡风险相关。

Song, Mowei; Deng, Li; Shen, Hongtao; Zhang, Guofu; Shi, Hang; Zhu, Erjun; Xia, Qingping; Han, Hongguang

Cannulation strategies in type A aortic dissection: a novel insight narrative review

A型主动脉夹层插管策略:一种新的见解叙述性综述

Xia, Qingping; Cao, Yong; Xie, Baodong; Qiu, Dongyun; Deng, Li; Wang, Maosheng; Han, Hongguang

Hypertonic saline downregulates endothelial cell-derived VEGF expression and reduces blood-brain barrier permeability induced by cerebral ischaemia via the VEGFR2/eNOS pathway

高渗盐水通过 VEGFR2/eNOS 通路下调内皮细胞衍生的 VEGF 表达并降低脑缺血引起的血脑屏障通透性

Qiaosheng Wang, Yiyu Deng, Linqiang Huang, Wenxin Zeng, Shenglong Chen, Bo Lv, Wenqiang Jiang, Yongli Han, Hongguang Ding, Miaoyun Wen, Hongke Zeng