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脉冲辐射染料辅助激光皮肤闭合:焊接强度与热损伤的体外研究

Dye-assisted laser skin closure with pulsed radiation: an in vitro study of weld strength and thermal damage.

作者信息

Fried N M, Walsh J T

出版信息

J Biomed Opt. 1998 Oct;3(4):401-8. doi: 10.1117/1.429850.

Abstract

Previous laser skin welding studies have used continuous wave delivery of radiation. However, heat diffusion during irradiation prevents strong welds from being achieved without creating large zones of thermal damage. Previously published results indicate that a thermal damage zone in skin greater than 200 μm may prevent normal wound healing. We propose that both strong welds and minimal thermal damage can be achieved by introducing a dye and delivering the radiation in a series of sufficiently short pulses. Two-cm-long incisions were made in guinea pig skin, in vitro. India ink and egg white (albumin) were applied to the wound edges to enhance radiation absorption and to close the wound, respectively. Continuous wave (cw), 1.06 μm, Nd:yttrium-aluminum-garnet laser radiation was scanned over the weld producing ∼100 ms pulses. The cooling time between scans and the number of scans was varied. The thermal damage zone at the weld edges was measured using a transmission polarizing light microscope. The tensile strength of the welds was measured using a tensiometer. For pulsed welding and long cooling times between pulses (8 s), weld strengths of 2.4±0.9 kg/cm2 were measured, and lateral thermal damage at the epidermis was limited to 500±150 μm. With cw welding, comparable weld strengths produced 2700±300 μm of lateral thermal damage. The cw weld strengths were only 0.6±0.3 kg/cm2 for thermal damage zones comparable to pulsed welding. © 1998 Society of Photo-Optical Instrumentation Engineers.

摘要

以往的激光皮肤焊接研究采用的是连续波辐射传输。然而,辐照过程中的热扩散使得在不产生大面积热损伤的情况下难以实现牢固的焊接。先前发表的结果表明,皮肤中大于200μm的热损伤区域可能会阻碍正常的伤口愈合。我们提出,通过引入一种染料并以一系列足够短的脉冲形式传输辐射,可以实现牢固的焊接和最小的热损伤。在体外,在豚鼠皮肤上制作了2厘米长的切口。分别将印度墨水和蛋清(白蛋白)涂抹在伤口边缘,以增强辐射吸收和闭合伤口。在焊缝上扫描连续波(cw)、1.06μm的钕:钇铝石榴石激光辐射,产生约100毫秒的脉冲。扫描之间的冷却时间和扫描次数是可变的。使用透射偏振光显微镜测量焊缝边缘的热损伤区域。使用张力计测量焊缝的拉伸强度。对于脉冲焊接和脉冲之间较长的冷却时间(8秒),测得的焊缝强度为2.4±0.9 kg/cm²,表皮的横向热损伤限制在500±150μm。采用连续波焊接时,相当的焊缝强度会产生2700±300μm的横向热损伤。对于与脉冲焊接相当的热损伤区域,连续波焊缝强度仅为0.6±0.3 kg/cm²。©1998年光电仪器工程师协会。

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