材料科学
量子点
成像体模
光电子学
透视
生物医学工程
红外线的
纳米技术
光学
放射科
医学
物理
作者
Junsun Hwang,Beomjoo Kim,Chaewon Jin,Gyudong Lee,Hwajun Jeong,Hyunki Lee,Jonggu Noh,Sung Jun Lim,Jinyoung Kim,Hongsoo Choi
出处
期刊:Small
[Wiley]
日期:2024-08-23
卷期号:21 (3): e2404251-e2404251
被引量:7
标识
DOI:10.1002/smll.202404251
摘要
Abstract Peripheral vascular interventions (PVIs) offer several benefits to patients with lower extremity arterial diseases, including reduced pain, simpler anesthesia, and shorter recovery time, compared to open surgery. However, to monitor the endovascular tools inside the body, PVIs are conducted under X‐ray fluoroscopy, which poses serious long‐term health risks to physicians and patients. Shortwave infrared (SWIR) imaging of quantum dots (QDs) has shown great potential in bioimaging due to the non‐ionizing penetration of SWIR light through tissues. In this paper, a QD‐based magnetic guidewire and its system is introduced that allows X‐ray‐free detection under SWIR imaging and precise steering via magnetic manipulation. The QD magnetic guidewire contains a flexible silicone tube encapsulating a QD polydimethylsiloxane (PDMS) composite, where HgCdSe/HgS/CdS/CdZnS/ZnS/SiO 2 core/multi‐shell QDs are dispersed in the PDMS matrix for SWIR imaging upon near‐infrared excitation, as well as a permanent magnet for magnetic steering. The SWIR penetration of the QD magnetic guidewire is investigated within an artificial tissue model (1% Intralipid) and explore the potential for non‐fluoroscopic PVIs within a vascular phantom model. The QD magnetic guidewire is biocompatible in its entirety, with excellent resistance to photobleaching and chemical alteration, which is a promising sign for its future clinical implementation.
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