Picosecond Laser-Induced Photothermal Skin Damage Evaluation by Computational Clinical Trial.

Q2 Medicine
Y Shimojo, T Nishimura, H Hazama, N Ito, K Awazu
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引用次数: 10

Abstract

Background and objectives: Computational clinical trial (CCT) in the field of laser medicine promotes clinical application of novel laser devices, because this trial carried out based on numerical modeling of laser-tissue interactions and simulation of a series of treatment process. To confirm the feasibility of the computational clinical trial of skin treatment with a novel picosecond laser, this paper presents an evaluation method of the safety.

Study design/materials and methods: In this method, the light propagation and thermal diffusion process after ultrashort light pulse irradiation to a numerical skin model is calculated and the safety based on the photothermal damage is evaluated by computational modeling and simulation. As an example, the safety of a novel picosecond laser device was examined by comparing with several laser devices approved for clinical use.

Results: The ratio of the maximum thermal damage induced by picosecond laser irradiation was 1.2 × 10-2 % at the epidermis, while that caused by approved laser irradiation was 99 % at the capillary vessels. The numerical simulation demonstrated that less thermal damage was observed compared with the approved devices. The results show the safety simulated by photothermal damage calculation was consistent with the reported clinical trials.

Conclusions: This computational clinical trial shows the feasibility of applying computational clinical trials for the safety evaluation of novel medical laser devices. In contrast to preclinical and clinical tests, the proposed computational method offers regulatory science for appropriately and quickly predicting and evaluating the safety of a novel laser device.

皮秒激光致光热皮肤损伤的计算临床试验评价。
背景与目的:激光医学领域的计算临床试验(Computational clinical trial, CCT)基于激光与组织相互作用的数值模拟和一系列治疗过程的模拟,促进了新型激光设备的临床应用。为了验证新型皮秒激光皮肤治疗计算临床试验的可行性,本文提出了一种安全性评价方法。研究设计/材料和方法:该方法计算超短光脉冲照射数值皮肤模型后的光传播和热扩散过程,通过计算建模和仿真评估基于光热损伤的安全性。作为一个例子,一种新型皮秒激光装置的安全性通过比较几种批准用于临床使用的激光装置进行了检查。结果:皮秒激光照射对表皮的最大热损伤率为1.2 × 10- 2%,对毛细血管的最大热损伤率为99%。数值模拟结果表明,与认可的器件相比,所观察到的热损伤较小。结果表明,光热损伤计算模拟的安全性与临床试验报告一致。结论:本计算临床试验显示了将计算临床试验应用于新型医用激光装置安全性评价的可行性。与临床前和临床试验相比,所提出的计算方法为适当和快速预测和评估新型激光装置的安全性提供了监管科学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Laser therapy
Laser therapy Medicine-Surgery
CiteScore
2.80
自引率
0.00%
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