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使用二极管激光和吲哚菁绿对皮肤组织焊接的特性研究:体外研究。

Characterization of skin tissue soldering using diode laser and indocyanine green: in vitro studies.

机构信息

Faculty of Biomedical Engineering (Center of Excellence) Biomaterials Group, Amirkabir University of Technology, Tehran, Iran.

出版信息

Lasers Med Sci. 2010 Mar;25(2):207-12. doi: 10.1007/s10103-009-0679-y. Epub 2009 May 16.

Abstract

Laser tissue soldering based on protein as biological glues and other compounds can provide greater bond strength and less collateral damage. Endogenous and exogenous materials such as indocyanine green (ICG) are often added to solders to enhance light absorption. The purpose of this in vitro study was to examine the impact of different parameters of laser soldering on the thermo-physical properties of the skin. A mixture of albumin solder and ICG was prepared, and then the coated samples were irradiated by an 810 nm diode laser under different conditions. The temperature rise, number of scans (N(s)), and scan velocity (V(s)) were investigated in this study. The results showed that, at each laser irradiance (I), the tensile strength (sigma) of incisions repaired in static mode was higher than in dynamic mode and that the sigma increased with both increasing N(s) and increasing I. It is therefore important to consider the trade off between scan velocity and surface temperature for achieving an optimum operating condition.

摘要

基于蛋白质等生物胶和其他化合物的激光组织焊接可以提供更大的结合强度和更小的附带损伤。内源性和外源性材料,如吲哚菁绿(ICG),通常被添加到焊料中以增强光吸收。本体外研究的目的是检查激光焊接的不同参数对皮肤热物理性能的影响。制备了白蛋白焊料和 ICG 的混合物,然后在不同条件下用 810nm 二极管激光照射涂覆的样品。本研究中研究了温度升高、扫描次数(N(s))和扫描速度(V(s))。结果表明,在每个激光辐照度(I)下,在静态模式下修复的切口的拉伸强度(sigma)高于动态模式,并且随着 N(s)和 I 的增加,sigma 也增加。因此,在实现最佳操作条件时,需要考虑扫描速度和表面温度之间的权衡。

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