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

DaRE to Approach Differently: Teaching the Digital Anorectal Examination Through a Trauma-Informed Framework

敢于另辟蹊径:通过创伤知情框架教授数字肛门直肠检查

Kwan, Kera; Labora, Amanda; Chen, Formosa; Solorzano, Walter; Gonzalez, Daniel; Orji, Whitney; Russell, Tara

The impact of the California state lockdown during the COVID-19 pandemic on management of patients with pancreatic ductal adenocarcinoma

新冠疫情期间加州封锁对胰腺导管腺癌患者管理的影响

Oviedo, Parisa; Burns, Shohei; Chen, Wen-Pin; Mandl, Hanna K; Rosso, Claudia; Radgoudarzi, Niloofar; Crosetti, Anna; Zamora, Steven; Perry, Lauren M; Bold, Richard J; Labora, Amanda N; Donahue, Timothy R; Maker, Ajay; Valerin, Jennifer B; Zell, Jason A; White, Rebekah R

From Scalpel to Scope: How Surgical Techniques Made Way for State-of-The-Art Endoscopic Procedures

从手术刀到内窥镜:外科技术如何为最先进的内窥镜手术铺平道路

Bahdi, Firas; Labora, Amanda; Shah, Sagar; Farooq, Maryam; Wangrattanapranee, Peerapol; Donahue, Timothy; Issa, Danny

MEK Inhibition Sensitizes Pancreatic Cancer to STING Agonism by Tumor Cell-intrinsic Amplification of Type I IFN Signaling.

MEK 抑制剂通过肿瘤细胞内在的 I 型 IFN 信号放大作用,使胰腺癌对 STING 激动剂更加敏感

Ghukasyan Razmik, Liang Keke, Chau Kevin, Li Luyi, Chan Charlotte, Abt Evan R, Le Thuc, Park Joon Y, Wu Nanping, Premji Alykhan, Damoiseaux Robert, Luu Tony, Labora Amanda, Rashid Khalid, Link Jason M, Radu Caius G, Donahue Timothy R

(18)F-FDG PET Visualizes Systemic STING Agonist-Induced Lymphocyte Activation in Preclinical Models.

(18)F-FDG PET 可视化临床前模型中系统性 STING 激动剂诱导的淋巴细胞活化

Le Thuc M, Lee Hailey R, Abt Evan R, Rashid Khalid, Creech Amanda L, Liang Keke, Cui Jing, Cho Arthur, Wei Liu, Labora Amanda, Chan Charlotte, Sanchez Eric, Kriti Kriti, Karin Daniel, Li Luyi, Wu Nanping, Mona Christine, Carlucci Giuseppe, Hugo Willy, Wu Ting-Ting, Donahue Timothy R, Czernin Johannes, Radu Caius G

Establishing a mouse model of lung metastases using ultrasound-guided right heart ventricle injection

超声引导右心室注射建立小鼠肺转移瘤模型

Amanda Labora, Amanda Creech, Hailey Lee, Erin Tabornal, Caius Radu, Timothy Donahue

Purine nucleoside phosphorylase enables dual metabolic checkpoints that prevent T cell immunodeficiency and TLR7-associated autoimmunity

嘌呤核苷磷酸化酶能够实现双重代谢检查点,从而预防T细胞免疫缺陷和TLR7相关的自身免疫性疾病。

Abt, Evan R; Rashid, Khalid; Le, Thuc M; Li, Suwen; Lee, Hailey R; Lok, Vincent; Li, Luyi; Creech, Amanda L; Labora, Amanda N; Mandl, Hanna K; Lam, Alex K; Cho, Arthur; Rezek, Valerie; Wu, Nanping; Abril-Rodriguez, Gabriel; Rosser, Ethan W; Mittelman, Steven D; Hugo, Willy; Mehrling, Thomas; Bantia, Shanta; Ribas, Antoni; Donahue, Timothy R; Crooks, Gay M; Wu, Ting-Ting; Radu, Caius G