首页> 外文会议>Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems X >In-vivo experimental evaluation of nonablative skin remodeling using a 1.54-um laser with surface cooling
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In-vivo experimental evaluation of nonablative skin remodeling using a 1.54-um laser with surface cooling

机译:使用表面冷却的1.54um激光进行非烧蚀性皮肤重塑的体内实验评估

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Abstract: Selective dermal remodeling using diode or 1.32 micrometer Nd:YAG lasers has been recently proposed for skin rejuvenation. This new technique consists in inducing collagen tightening and/or neocollagen synthesis without significant damage of the overlying epidermis. Such an approach requires (1) a cooling system in order to target dermal collagen with relatively good protection of the epidermal layer, (2) a specific wavelength for confining the thermal damage into the upper dermis (100 to 400 micrometer). Based on previous studies, demonstrating a better water absorption and a reduced melanin absorption at 1.54 micrometer compared to the 1.32 micrometer, this experimental study aimed to evaluate a new laser (co-doped Yb-Er:phosphate glass material, Aramis, Quantel-France) emitting at 1.54 micrometer. This laser was used in combination with the Dermacool system (Dermacool, Mableton, USA) in order to achieve epidermis cooling before, during and after irradiation. Male hairless rats were used for the study. Pulse train irradiation (1.1 J, 3 Hz, 30 pulses) and different cooling temperatures ($PLU@5$DGR@C, 0$DGR@C, $MIN@5$DGR@C) were screened with clinical examination and histological evaluation at 1, 3, and 7 days after laser irradiation. The clinical effects showed that pulse train irradiation produced reproducible epidermal preservation and confinement of the thermal damage into the dermis. The different cooling temperatures did not provide detectable differences in terms of size and depth of thermal damage. New collagen synthesis was confirmed by a marked fibroblastic proliferation, detected in the lower dermis at D3 and clearly seen in the upper dermis at D7. This new laser appears to be a promising new tool for the treatment of skin laxity, solar elastosis, facial rhytids and mild reduction of wrinkles. !17
机译:摘要:最近提出了使用二极管或1.32微米Nd:YAG激光对皮肤进行选择性重塑的技术。这项新技术在于诱导胶原蛋白收紧和/或新胶原蛋白合成,而不会严重损害表皮。这种方法需要(1)冷却系统,以便以相对良好的表皮层保护作用瞄准真皮胶原蛋白;(2)特定波长,以将热损伤限制在上层真皮(100至400微米)内。根据先前的研究,与1.32微米相比,在1.54微米处表现出更好的吸水性和黑色素吸收降低,该实验研究旨在评估一种新型激光(共掺杂的Yb-Er:磷酸盐玻璃材料,Aramis,Quantel-France )发射1.54微米。该激光器与Dermacool系统(Dermacool,美国马布尔顿,Dermacool)结合使用,以实现辐照之前,期间和之后的表皮冷却。雄性无毛大鼠用于研究。通过临床检查和组织学评估筛选了脉冲序列照射(1.1 J,3 Hz,30个脉冲)和不同的冷却温度($ PLU @ 5 $ DGR @ C,0 $ DGR @ C,$ MIN @ 5 $ DGR @ C)在激光照射后的1、3和7天。临床效果表明,脉冲序列照射可产生可再生的表皮保存,并将热损伤限制在真皮内。不同的冷却温度在热损伤的大小和深度方面没有提供可检测的差异。新的胶原蛋白合成被明显的成纤维细胞增生所证实,在D3的下部真皮中检测到,在D7的上部真皮中清晰可见。这种新的激光似乎是治疗皮肤松弛,日光弹性,面部变态和轻度减少皱纹的有前途的新工具。 !17

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