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

Genome-wide identification of the HvSCAMP gene family in barley and functional characterization of the role of HvSCAMP1 in salt tolerance

大麦中HvSCAMP基因家族的全基因组鉴定及HvSCAMP1在耐盐性中的功能表征

Shi, Zhaoxia; Zeng, Jianbin; Zhang, Xinyi; Zhang, Caiming; Wang, Zhikui; Sun, Jian; Yin, Huayan; Mu, Ping; He, Xiaoyan

Editorial: APOBEC and ADAR in oncogenesis: from molecular mechanisms to therapeutic targets

社论:APOBEC 和 ADAR 在肿瘤发生中的作用:从分子机制到治疗靶点

Li, Xiaoling; Wang, Yunguan; Mu, Ping

Lineage plasticity and histological transformation: tumor histology as a spectrum

谱系可塑性和组织学转化:肿瘤组织学谱系

Li, Xiaoling; Gardner, Eric E; Molina-Pinelo, Sonia; Wilhelm, Clare; Mu, Ping; Quintanal-Villalonga, Álvaro

Nanoscale "Chessboard" Pattern Lamellae in a Supramolecular Perylene-Diimide Polydiacetylene System

超分子苝二酰亚胺聚二乙炔体系中的纳米级“棋盘”图案层状结构

Martin, Ian J; Masese, Francis Kiranka; Shih, Kuo-Chih; Nieh, Mu-Ping; Kasi, Rajeswari M

Heterogeneity in Osteosarcoma Revealed by scRNA Sequencing: CLU+ Endothelial Cells as Key Players in Tumor Progression.

单细胞RNA测序揭示骨肉瘤的异质性:CLU+内皮细胞是肿瘤进展的关键因素

Dai Zhehao, Xie Peng, Bai Xiangzhi, Liu Tang, Guo Xiaoning, Kuang Lei, Mu Ping, Lu Fangjin

Pan-cancer Analysis Identified Ectopic RUNX1T1 Associated with Lineage Plasticity

泛癌分析发现异位RUNX1T1与谱系可塑性相关

Jiang, Yuyin; Cheng, Siyuan; Kim, Isaac Yi; Deng, Su; Mu, Ping

Graded Notch Signaling Functions as a Rheostat of Lineage Plasticity and Therapy Resistance in Prostate Cancer

Notch信号通路在调节前列腺癌谱系可塑性和治疗耐药性方面发挥着关键作用

Jiang, Yuyin; Cheng, Siyuan; Zhang, Catherine Yijia; Jin, Xiao; Li, Longjun; Fraidenburg, Melanie; Wang, Choushi; Kim, Isaac Yi; Mu, Ping

Notch as a Driver of Lineage Plasticity and Therapeutic Target in Enzalutamide-Resistant Prostate Cancer

Notch作为谱系可塑性的驱动因素和恩扎卢胺耐药性前列腺癌的治疗靶点

Jiang, Yuyin; Cheng, Siyuan; Li, Longjun; Fraidenburg, Melanie; Kim, Isaac Yi; Deng, Su; Mu, Ping

ATHENA: A deep learning-based AI for functional prediction of genomic mutations and synergistic vulnerabilities in prostate cancer

ATHENA:一种基于深度学习的人工智能,用于前列腺癌基因组突变和协同脆弱性的功能预测

Cheng, Siyuan; Jin, Xiao; Qian, Jiaying; Jiang, Yuyin; Kim, Isaac Yi; Deng, Su; Mu, Ping

Thermal stability enhancement of low temperature Cu-Cu bonding using metal passivation technology for advanced electronic packaging

利用金属钝化技术提高低温铜-铜键合的热稳定性,以用于先进电子封装

Hsu, Mu-Ping; Lin, Tai-Yu; Huang, Hua-Jing; Wang, Chiao-Yen; Chung, Tsai-Fu; Wu, Wen-Wei; Chen, Kuan-Neng