Morphological Characterization of Tissue Destruction According to the Distance Between Holmium:YAG Laser Tip and Tissue Surface.

IF 1.8 3区 医学 Q3 UROLOGY & NEPHROLOGY International Neurourology Journal Pub Date : 2024-09-01 Epub Date: 2024-09-30 DOI:10.5213/inj.2448332.166
Dongho Kang, Ohbin Kwon, Seong-Chan Kim, Kanghae Kim, Youngseok Seo, Seung-June Oh, Min-Joo Choi
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Abstract

Purpose: Little is known about the soft tissue destruction by holmium laser clinically used for holmium laser enucleation of the prostate (HoLEP), subject to the distance between the laser fiber tip and the tissue surface. We aimed to investigate the impact of the distance between the laser fiber tip and the phantom surface (DLP) on a soft tissue phantom (STP) in relation to the surgical modes of HoLEP.

Methods: STP responses to the laser pulses produced by a commercial holmium:yttrium aluminum garnet (Holmium:YAG) laser at an output setting 2 J were observed at different values of the DLP (0, 1, 2, 3, and 4 mm) to look at (1) the single laser pulse-induced cavitation bubble and its penetration into the STP, (2) the STP destruction by a single pulse, (3) the STP destruction by 60 pulses repeated at 12 Hz, and (4) the thermal effect by the multiple pulses visualized on a thermosensitive bovine serum albumin (BSA) STP.

Results: We observed that the laser pulse produced a heated gas bubble in water centered at the laser fiber tip. The bubble shape depended on the DLP. The bubble completely penetrated into the STP at the DLP of 0 mm and the penetration decreased with the DLP. The size of the destruction of the STP by the laser pulses was shown to decrease as the DLP increased. Test with the BSA STP showed that, at the DLP of 3 mm, the destruction became insignificant while the thermal effects were still effective.

Conclusion: We illustrated that soft tissue destruction by the Holmium:YAG laser is associated with cavitation effects. We provide for the first time experimental evidence for various surgical modes in HoLEP such as incision and hemostasis in relation to the DLP.

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根据钬:YAG 激光笔尖与组织表面的距离确定组织破坏的形态特征
目的:临床上用于前列腺钬激光去核术(HoLEP)的钬激光对软组织的破坏受激光光纤尖端与组织表面之间距离的影响,对此我们知之甚少。我们的目的是研究激光光纤尖端与模型表面(DLP)之间的距离对软组织模型(STP)的影响与 HoLEP 手术模式的关系:方法:STP 对商用钬钇铝石榴石(Holmium:方法:观察商用钬:钇铝石榴石(Holmium:YAG)激光器在不同的 DLP 值(0、1、2、3 和 4 mm)下对输出设置为 2 J 的 STP 的响应,以了解:(1) 单个激光脉冲引起的空化泡及其对 STP 的穿透;(2) 单个脉冲对 STP 的破坏;(3) 以 12 Hz 频率重复 60 个脉冲对 STP 的破坏;(4) 在热敏牛血清白蛋白(BSA)STP 上观察多个脉冲的热效应。结果:我们观察到,激光脉冲在水中产生了以激光光纤尖端为中心的加热气泡。气泡的形状取决于 DLP。当 DLP 为 0 mm 时,气泡完全穿透 STP,穿透力随 DLP 的增大而减小。激光脉冲对 STP 的破坏程度随着 DLP 的增加而减小。对 BSA STP 的测试表明,当 DLP 为 3 毫米时,破坏变得不明显,而热效应仍然有效:我们说明了钬:YAG 激光对软组织的破坏与空化效应有关。我们首次提供了 HoLEP 中各种手术模式(如切口和止血)与 DLP 相关的实验证据。
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来源期刊
International Neurourology Journal
International Neurourology Journal UROLOGY & NEPHROLOGY-
CiteScore
4.40
自引率
21.70%
发文量
41
审稿时长
4 weeks
期刊介绍: The International Neurourology Journal (Int Neurourol J, INJ) is a quarterly international journal that publishes high-quality research papers that provide the most significant and promising achievements in the fields of clinical neurourology and fundamental science. Specifically, fundamental science includes the most influential research papers from all fields of science and technology, revolutionizing what physicians and researchers practicing the art of neurourology worldwide know. Thus, we welcome valuable basic research articles to introduce cutting-edge translational research of fundamental sciences to clinical neurourology. In the editorials, urologists will present their perspectives on these articles. The original mission statement of the INJ was published on October 12, 1997. INJ provides authors a fast review of their work and makes a decision in an average of three to four weeks of receiving submissions. If accepted, articles are posted online in fully citable form. Supplementary issues will be published interim to quarterlies, as necessary, to fully allow berth to accept and publish relevant articles.
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