成像体模
烧蚀
生物医学工程
磁共振成像
放射治疗
放射科
医学
导线
光动力疗法
电离辐射
介入性磁共振成像
肿瘤消融
光学成像
热烧蚀
计算机科学
分子成像
射频消融术
3d打印
医学物理学
辐射暴露
纳米医学
生物医学中的光声成像
磁性纳米粒子
临床实习
作者
Fan Wang,Xianqiang Bao,Erdost Yildiz,Yan Yu,Xosé Luís Deán-Ben,Wenbin Kang,Shuaizhong Zhang,Devin Sheehan,Ren Hao Soon,Jelena Zinnanti,Daniel Razansky,Metin Sitti
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-02-04
卷期号:12 (6): eaea0201-eaea0201
标识
DOI:10.1126/sciadv.aea0201
摘要
Endovascular interventions are essential for treating cerebrovascular diseases, yet their monitoring methods commonly rely on ionizing radiation and contrast agents, posing unnecessary risks to patients and clinicians. We present a multifunctional optoacoustically augmented magnetic guidewire (OptoMaG) that integrates optoacoustic imaging with magnetic navigation to enable radiation-free, image-guided interventions. The ~250-micrometer flexible guidewire incorporates a 460-nanometer luminescent core with an enhanced optoacoustic signature and a FePt magnetic tip for precise, steerable control. Proof-of-concept studies show that OptoMaG can be actively navigated with external magnetic fields to traverse a 3D human-scale cerebrovascular phantom and accurately reach target brain sites. Beyond navigation, the FePt tip enables localized thermal ablation under remote radiofrequency stimulation, highlighting its theranostic potential for tumor treatment. In addition, OptoMaG functions as a light source for photodynamic therapy, selectively activating photosensitizers to destroy tumor cells while preserving healthy tissue. Collectively, OptoMaG provides a safe, radiation-free platform merging real-time navigation with targeted therapeutic capabilities.
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