磁粉成像
材料科学
高分辨率
联轴节(管道)
磁性纳米粒子
纳米技术
纳米颗粒
核磁共振
光电子学
物理
遥感
地质学
冶金
作者
Qilong Li,Changjian Li,Yueqi Wang,Miaomiao Li,Zeyu Liang,Qiyue Wang,Bingzhe Wang,Canyu Huang,Jie Tian,Fangyuan Li,Daishun Ling
标识
DOI:10.1002/anie.202418015
摘要
Magnetic particle imaging (MPI) has demonstrated versatile applications in biomedicine, including tumor imaging, cell tracking, and image‐guided hyperthermia. Despite these advancements, the prevalent use of clinically approved tracers has posed limitations on MPI's resolution and sensitivity. In this study, we engineered a bimagnetic core/shell nanocrystals (BMCS) tailored for MPI by optimizing the heterostructure and modulating the exchange coupling effect between the two magnetic components. The resulting BMCS exhibited remarkably heightened susceptibility and magnetization while maintaining low coercivity, thereby substantially improved both MPI resolution and sensitivity compared to conventional tracers such as VivoTrax. At an equivalent mass concentration, BMCS demonstrated a notable 5.08‐fold increase in signal intensity and achieved an unprecedentedly high resolution down to 1 mm. The excellent MPI performance contributes to high resolution MPI and the sensitive detection of orthotopic colorectal cancer in mice. The design strategy employed in BMCS, centered on the exchange coupling effect, introduces an efficacious approach for the development of high performance MPI tracers.
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