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

Physiologically-Based Pharmacokinetic Modeling to Support Pediatric Clinical Development: An IQ Working Group Perspective on the Current Status and Challenges

基于生理的药代动力学模型在儿科临床开发中的应用:IQ工作组对现状与挑战的看法

Yates, James W T; Zientek, Michael; Taskar, Kunal S; Lin, Wen; Heimbach, Tycho; Willmann, Stefan; Rehmel, Jessica; Parrott, Neil; Hanley, Michael; Badee, Justine; Chen, Yuan; Cole, Susan; De Zwart, Loeckie; Haertter, Sebastian; Jiang, Rongrong; Kotsuma, Masakatsu; Liang, Guiqing; Lin, Yu-Wei; Liu, Jing; Ou, Ying; Rascher, Juliane; Shaik, Naveed A; Wahlstrom, Jan; Wang, Xiaofeng; Xiao, Guangqing; Yee, Ka Lai; Cheung, S Y Amy

Individual Differences in the Impact of Distracting Environmental Sounds on the Performance of a Continuous Visual Task in Older Adults

老年人在执行连续视觉任务时,受干扰环境声音影响的个体差异

Richards, Leanne; Carter, Neil; Hanley, Claire J; Barnes, Claire; Summers, Huw; Porter, Alison; Tales, Andrea

Identification of a primitive intestinal transcription factor network shared between esophageal adenocarcinoma and its precancerous precursor state

鉴定食管腺癌与其癌前病变之间共有的原始肠道转录因子网络

Connor Rogerson, Edward Britton, Sarah Withey, Neil Hanley, Yeng S Ang, Andrew D Sharrocks

Human notochordal cell transcriptome unveils potential regulators of cell function in the developing intervertebral disc

人类脊索细胞转录组揭示了发育椎间盘中细胞功能的潜在调节剂

Ricardo Rodrigues-Pinto, Lizzy Ward, Matthew Humphreys, Leo A H Zeef, Andrew Berry, Karen Piper Hanley, Neil Hanley, Stephen M Richardson, Judith A Hoyland

Spatiotemporal analysis of putative notochordal cell markers reveals CD24 and keratins 8, 18, and 19 as notochord-specific markers during early human intervertebral disc development

假定脊索细胞标记物的时空分析表明,CD24 和角蛋白 8、18 和 19 是人类早期椎间盘发育过程中脊索特异性标记物

Ricardo Rodrigues-Pinto, Andrew Berry, Karen Piper-Hanley, Neil Hanley, Stephen M Richardson, Judith A Hoyland

The methyltransferase WBSCR22/Merm1 enhances glucocorticoid receptor function and is regulated in lung inflammation and cancer

甲基转移酶 WBSCR22/Merm1 可增强糖皮质激素受体功能,并在肺部炎症和癌症中受到调节

Maryam Jangani, Toryn M Poolman, Laura Matthews, Nan Yang, Stuart N Farrow, Andrew Berry, Neil Hanley, Andrew J K Williamson, Anthony D Whetton, Rachelle Donn, David W Ray