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

An integrated single-cell and spatial transcriptomic atlas of thyroid cancer progression identifies prognostic fibroblast subpopulations

甲状腺癌进展的整合单细胞和空间转录组图谱鉴定出预后成纤维细胞亚群

Loberg, Matthew A; Xu, George J; Chen, Sheau-Chiann; Chen, Hua-Chang; Wahoski, Claudia C; Caroland, Kailey P; Tigue, Megan L; Hartmann, Heather A; Gallant, Jean-Nicolas; Phifer, Courtney J; Ocampo, Andres; Wang, Dayle K; Fankhauser, Reilly G; Karunakaran, Kirti A; Wu, Chia-Chin; Tarabichi, Maxime; Shaddy, Sophia M; Netterville, James L; Rohde, Sarah L; Solorzano, Carmen C; Bischoff, Lindsay A; Baregamian, Naira; Murphy, Barbara A; Choe, Jennifer H; Wang, Jennifer R; Huang, Eric C; Sheng, Quanhu; Kagohara, Luciane T; Jaffee, Elizabeth M; Belcher, Ryan H; Lau, Ken S; Ye, Fei; Lee, Ethan; Weiss, Vivian L

Preclinical mouse models of immune checkpoint inhibitor-associated myocarditis

免疫检查点抑制剂相关性心肌炎的临床前小鼠模型

Fankhauser, Reilly G; Johnson, Douglas B; Moslehi, Javid J; Balko, Justin M

Non-invasive prediction of the mouse tibia mechanical properties from microCT images: comparison between different finite element models

基于微型CT图像的小鼠胫骨力学性能无创预测:不同有限元模型的比较

Oliviero, S; Roberts, M; Owen, R; Reilly, G C; Bellantuono, I; Dall'Ara, E

CRISPR/Cas9 recombineering-mediated deep mutational scanning of essential genes in Escherichia coli

利用 CRISPR/Cas9 重组技术对大肠杆菌中的必需基因进行深度突变扫描

Alaksh Choudhury ,Jacob A Fenster # ,Reilly G Fankhauser # ,Joel L Kaar ,Olivier Tenaillon # ,Ryan T Gill #

Predicting Drug Resistance Using Deep Mutational Scanning

利用深度突变扫描预测耐药性

Pines, Gur; Fankhauser, Reilly G; Eckert, Carrie A

Genomic Deoxyxylulose Phosphate Reductoisomerase (DXR) Mutations Conferring Resistance to the Antimalarial Drug Fosmidomycin in E. coli

大肠杆菌基因组脱氧木酮糖磷酸还原异构酶 (DXR) 突变赋予其对疟疾药物磷霉素的耐药性

Pines, Gur; Oh, Eun Joong; Bassalo, Marcelo C; Choudhury, Alaksh; Garst, Andrew D; Fankhauser, Reilly G; Eckert, Carrie A; Gill, Ryan T

Application of multiple forms of mechanical loading to human osteoblasts reveals increased ATP release in response to fluid flow in 3D cultures and differential regulation of immediate early genes

对人类成骨细胞施加多种形式的机械载荷,结果显示,在三维培养中,流体流动会促进ATP释放,并差异性地调控早期基因。

Rumney, R M H; Sunters, A; Reilly, G C; Gartland, A