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

Extracorporeal Shock Wave Therapy Promotes Peripheral Nerve Regeneration Through ERK1/2-Mediated Autophagy

体外冲击波疗法通过ERK1/2介导的自噬促进周围神经再生

Xiang, Xingdong; Wu, Xiaoqiong; Ling, Shen; Zhu, Junwen; Zhang, Jian; Fu, Tengfei

Multi-omics reveals EGCG's anti-calcification effects associated with gut microbiota and metabolite remodeling

多组学研究揭示EGCG的抗钙化作用与肠道菌群和代谢物重塑有关

Zhang, Yating; Tang, Zihan; Zhu, Junwen; Zhao, Ruochi; Wang, Shuangshuang

Analysis of atrioventricular function and myocardial strain in hypertensive heart disease: a CMR-based study

高血压性心脏病房室功能和心肌应变分析:一项基于心脏磁共振成像的研究

Niu, Junqiao; Zhu, Junwen; Wang, Yan; Chen, Jie; Li, Hui; Qu, Yuan; Li, Xiaojuan; Sheng, Wei; Wang, Shaoyu

FD(2)-YOLO: A Frequency-Domain Dual-Stream Network Based on YOLO for Crack Detection

FD(2)-YOLO:一种基于YOLO的频域双流网络裂纹检测

Zhu, Junwen; Sheng, Jinbao; Cai, Qian

Effect of ciprofol compared with propofol on hemodynamics in bronchoscope procedures during anesthetic induction: a randomized double-blind controlled study

环丙酚与丙泊酚在支气管镜检查麻醉诱导期间对血流动力学影响的比较:一项随机双盲对照研究

Chen, Fang; Xing, Fang; Huang, Jiayu; Zhu, Junwen; Jiang, Ye; Li, Cheng

Intestinal DHA-PA-PG axis promotes digestive organ expansion by mediating usage of maternally deposited yolk lipids.

肠道 DHA-PA-PG 轴通过调节母体沉积的卵黄脂质的利用来促进消化器官的扩张

Chen Zhengfang, He Mudan, Wang Houpeng, Li Xuehui, Qin Ruirui, Ye Ding, Zhai Xue, Zhu Junwen, Zhang Quanqing, Hu Peng, Shui Guanghou, Sun Yonghua

Complete chloroplast genomes of eight Delphinium taxa (Ranunculaceae) endemic to Xinjiang, China: insights into genome structure, comparative analysis, and phylogenetic relationships

中国新疆特有8种翠雀属(毛茛科)植物的完整叶绿体基因组:基因组结构、比较分析和系统发育关系研究

Song, Chunfeng; Zhu, Junwen; Li, Huimin

Lactobacillus plantarum alleviates high-fat diet-induced obesity by altering the structure of mice intestinal microbial communities and serum metabolic profiles

植物乳杆菌通过改变小鼠肠道微生物群落结构和血清代谢谱来缓解高脂饮食诱导的肥胖。

Zhu, Junwen; Liu, Xueying; Liu, Naiyuan; Zhao, Ruochi; Wang, Shuangshuang

Highly Sensitive Paper-Based Force Sensors with Natural Micro-Nanostructure Sensitive Element

基于天然微纳结构敏感元件的高灵敏度纸基力传感器

Zhang, Haozhe; Ren, Yuyu; Zhu, Junwen; Jia, Yanshen; Liu, Qiang; Yang, Xing

Inductive Paper-Based Flexible Contact Force Sensor Utilizing Natural Micro-Nanostructures of Paper: Simplicity, Economy, and Eco-Friendliness

利用纸张天然微纳结构的感应式纸基柔性接触力传感器:简便、经济、环保

Zhang, Haozhe; Zhu, Junwen; Yang, Yujia; Liu, Qiang; Xiong, Wei; Yang, Xing