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

Nanoparticle retention enables non-invasive detection of metastases by magnetic particle imaging in murine breast cancer models.

纳米颗粒滞留技术使得利用磁性颗粒成像技术在小鼠乳腺癌模型中实现对转移灶的非侵入性检测成为可能。

Korangath Preethi, Carlton Hayden, Sanders Toby, Sehl Olivia C, Ke Suqi, Mohtasebzadeh Abdul Rahman, Werhane Lyndsey, Grüttner Cordula, Hu Chen, Gabrielson Kathleen, Goodwill Patrick W, Ivkov Robert

Modified tumor uptake and biodistribution of nanoparticles coated with small extracellular vesicle membranes derived from distinct tumor cell lines

不同肿瘤细胞系来源的小型细胞外囊泡膜包覆的纳米颗粒的肿瘤摄取和生物分布的改变

Jenkins, Samir V; Carlton, Hayden; Scott, Bree; Stahr, Shelbie D; Vinson, Whit; Fletcher, Gabriel; Jamshidi-Parsian, Azemat; Hsu, Ping-Ching; Dings, Ruud P M; Huitink, David; Griffin, Robert J

Magnetic hyperthermia therapy enhances the chemoradiosensitivity of glioblastoma.

磁热疗可增强胶质母细胞瘤对放化疗的敏感性

Rivera Daniel, Bouras Alexandros, Mattioli Milena, Anastasiadou Maria, Pacentra Anna Chiara, Pelcher Olivia, Koziel Corrine, Schupper Alexander J, Chanenchuk Tori, Carlton Hayden, Ivkov Robert, Hadjipanayis Constantinos G

Magnetic particle imaging resolution needed for magnetic hyperthermia treatment planning: a sensitivity analysis

磁热疗治疗计划所需的磁粒子成像分辨率:一项敏感性分析

Pawar, Shreeniket; Arepally, Nageshwar; Carlton, Hayden; Vanname, Joshua; Ivkov, Robert; Attaluri, Anilchandra

HYPER: pre-clinical device for spatially-confined magnetic particle hyperthermia

HYPER:用于空间受限磁性粒子热疗的临床前设备

Carlton, Hayden; Weber, Matthias; Peters, Maximilian; Arepally, Nageshwar; Lad, Yash Sharad; Jaswal, Anshul; Ivkov, Robert; Attaluri, Anilchandra; Goodwill, Patrick