用于治疗外周动脉粥样硬化病变的 355 nm 激光动脉粥样切除术的体外可行性研究。

IF 2 3区 物理与天体物理 Q3 BIOCHEMICAL RESEARCH METHODS Journal of Biophotonics Pub Date : 2024-05-13 DOI:10.1002/jbio.202400110
Hui Wang, Hui Zuo, Dikang Pan, Yihui Cao, Yiqun Zhang, Duan Liu, Lianrui Guo, Jianming Guo
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引用次数: 0

摘要

在这项研究中,我们使用了一种新型的 355 nm 激光,在生理盐水和造影剂的作用下消融猪主动脉。随后,我们对所造成损伤的形状和深度进行了研究。用激光消融牛肌腱和主动脉后,我们分析了消融后颗粒的大小和数量。最后,我们使用人体活体斑块进行了消融实验。分析表明,猪主动脉在接触 355 纳米激光 2 秒钟内受到的损伤极小。造影剂存在时的损伤程度高于生理盐水存在时的损伤程度,但明显低于 308 纳米激光造成的损伤。不管是牛肌腱还是猪主动脉组织,微粒所占的比例都很高。
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An in vitro feasibility study of 355 nm laser atherectomy for the treatment of peripheral atherosclerotic lesions

In this study, we utilized a novel 355 nm laser to ablate porcine aortas in the presence of physiological saline and contrast agent. Subsequently, we investigated the shape and depth of the resulting injuries. After ablating bovine tendons and aortas with the laser, we analyzed the size and quantity of particles postablation. Finally, we conducted ablation experiments using human ex vivo plaques. The analysis revealed minimal damage to porcine aortas within 2 s of exposure to the 355 nm laser. The degree of injury in the presence of contrast agent was higher than that in the presence of physiological saline but significantly lower than the damage caused by 308 nm laser. Regardless of whether it was bovine tendon or porcine aorta tissue, the proportion of particles <25 μm postlaser ablation exceeded 99%. Lastly, the 355 nm laser successfully opened three types of plaques: chronically occluded, stent restenosis, and stale thrombosis.

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来源期刊
Journal of Biophotonics
Journal of Biophotonics 生物-生化研究方法
CiteScore
5.70
自引率
7.10%
发文量
248
审稿时长
1 months
期刊介绍: The first international journal dedicated to publishing reviews and original articles from this exciting field, the Journal of Biophotonics covers the broad range of research on interactions between light and biological material. The journal offers a platform where the physicist communicates with the biologist and where the clinical practitioner learns about the latest tools for the diagnosis of diseases. As such, the journal is highly interdisciplinary, publishing cutting edge research in the fields of life sciences, medicine, physics, chemistry, and engineering. The coverage extends from fundamental research to specific developments, while also including the latest applications.
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