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

Micronucleus quantification from whole-slide haematology images using AI serves as a translatable pharmacodynamic biomarker for DNA damage response inhibitors.

利用人工智能技术从全玻片血液学图像中定量微核,可作为DNA损伤反应抑制剂的可转化药效学生物标志物。

Yong Killian H R, Robak Weronika S, Mulderrig Lee, Hughes Adina, Bystry Richard, Wantenaar Tanya, Jones Gemma N, Udriste Maria, Robertson Jack, Forment Josep V, O'Connor Lenka Oplustil, Hill Ross J

Simple synthesis of soft, tough, and cytocompatible biohybrid composites

简单合成柔软、坚韧且具有细胞相容性的生物杂化复合材料

Darkes-Burkey, Cameron; Liu, Xiao; Slyker, Leigh; Mulderrig, Jason; Pan, Wenyang; Giannelis, Emmanuel P; Shepherd, Robert F; Bonassar, Lawrence J; Bouklas, Nikolaos

Engineering Human Mesenchymal Bodies in a Novel 3D-Printed Microchannel Bioreactor for Extracellular Vesicle Biogenesis

利用新型3D打印微通道生物反应器构建人类间充质干细胞,用于细胞外囊泡的生物合成

Jeske, Richard; Chen, Xingchi; Mulderrig, Logan; Liu, Chang; Cheng, Wenhao; Zeng, Olivia Z; Zeng, Changchun; Guan, Jingjiao; Hallinan, Daniel; Yuan, Xuegang; Li, Yan

Aldehyde-driven transcriptional stress triggers an anorexic DNA damage response

醛驱动的转录应激引发厌食性DNA损伤反应

Lee Mulderrig #, Juan I Garaycoechea #, Zewen K Tuong, Christopher L Millington, Felix A Dingler, John R Ferdinand, Liam Gaul, John A Tadross, Mark J Arends, Stephen O'Rahilly, Gerry P Crossan, Menna R Clatworthy, Ketan J Patel

Implementing person-centred outcome measures in palliative care: An exploratory qualitative study using Normalisation Process Theory to understand processes and context

在姑息治疗中实施以人为本的结果指标:一项运用规范化过程理论理解过程和背景的探索性定性研究

Bradshaw, Andy; Santarelli, Martina; Mulderrig, Malene; Khamis, Assem; Sartain, Kathryn; Boland, Jason W; Bennett, Michael I; Johnson, Miriam; Pearson, Mark; Murtagh, Fliss E M

XPF-ERCC1 protects liver, kidney and blood homeostasis outside the canonical excision repair pathways

XPF-ERCC1 在典型切除修复途径之外保护肝脏、肾脏和血液稳态

Lee Mulderrig, Juan I Garaycoechea

Alcohol and endogenous aldehydes damage chromosomes and mutate stem cells

酒精和内源性醛会损害染色体并使干细胞发生变异

Juan I Garaycoechea, Gerry P Crossan, Frédéric Langevin, Lee Mulderrig, Sandra Louzada, Fentang Yang, Guillaume Guilbaud, Naomi Park, Sophie Roerink, Serena Nik-Zainal, Michael R Stratton, Ketan J Patel

Mammals divert endogenous genotoxic formaldehyde into one-carbon metabolism

哺乳动物将内源性基因毒性甲醛转移到单碳代谢中

Guillermo Burgos-Barragan, Niek Wit, Johannes Meiser, Felix A Dingler, Matthias Pietzke, Lee Mulderrig, Lucas B Pontel, Ivan V Rosado, Thomas F Brewer, Rebecca L Cordell, Paul S Monks, Christopher J Chang, Alexei Vazquez, Ketan J Patel