Intravascular Sono-Ablation for In-Stent Restenosis Relief: Transducer Development and the In-Vitro Demonstration

  • Kim, Howuk
  • Wu, Huaiyu
  • Chen, Mengyue
  • Dai, Xuming
  • Zhou, Ruihai
  • 외 1명
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초록

Objective: This study aimed to propose a new clinical modality for the relief of in-stent restenosis (ISR) using focused ultrasound (FUS) ablation. In the first research stage, a miniaturized FUS device was developed for the sonification of the remaining plaque after stenting, known as one of the causes of ISR. Methods: This study presents a miniaturized (<2.8 mm) intravascular FUS transducer for ISR treatment. The performance of the transducer was predicted through a structural-acoustic simulation, followed by fabrication of the prototype device. Using the prototype FUS transducer, we demonstrated tissue ablation with bio-tissues over metallic stents, mimicking in-stent tissue ablation. Next, we conducted a safety test by detecting the existence of thermal damage to the arterial tissue upon sonication with a controlled dose. Results: The prototype device successfully delivered sufficient acoustic intensity (>30 W/cm(2)) to a bio tissue (chicken breast) through a metallic stent. The ablation volume was approximately 3.9 x 7.8 x 2.6 mm(3). Furthermore, 1.5 min sonication was sufficient to obtain an ablating depth of approximately 1.0 mm, not thermally damaging the underlying artery vessel. Conclusion: We demonstrated in-stent tissue sonoablation, suggesting it could be as a future ISR treatment modality. Significance: Comprehensive test results provide a key understanding of FUS applications using metallic stents. Furthermore, the developed device can be used for sonoablation of the remaining plaque, providing a novel approach to the treatment of ISR.

키워드

In stent restenosisfocused ultrasoundtissue ablationinterstitial transducersmall apertureULTRASOUNDDEVICESLESIONS
제목
Intravascular Sono-Ablation for In-Stent Restenosis Relief: Transducer Development and the In-Vitro Demonstration
저자
Kim, HowukWu, HuaiyuChen, MengyueDai, XumingZhou, RuihaiJiang, Xiaoning
DOI
10.1109/TBME.2023.3238679
발행일
2023-07
유형
Article
저널명
IEEE Transactions on Biomedical Engineering
70
7
페이지
2172 ~ 2180