首页> 外文期刊>BioMed research international >Ultrastructure and Light Microscope Analysis of Intact Skin after a Varying Number of Low Level Laser Irradiations in Mice
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Ultrastructure and Light Microscope Analysis of Intact Skin after a Varying Number of Low Level Laser Irradiations in Mice

机译:不同数量的低水平激光辐照小鼠后完整皮肤的超微结构和光学显微镜分析

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摘要

Low level laser therapy (LLLT) has been used to relieve pain, inflammation, and wound healing processes. Thus, the skin is overexposed to laser and this effect is not completely understood. This study analyzed the effects of the number of laser applications (three, six, and 10) on the intact skin of the masseteric region in mice of strain HRS/J. The animals(n=30)were equally divided into control (0 J/cm2) and irradiated (20 J/cm2), and each of these groups was further equally divided according to the number of laser applications (three, six, and 10) and underwent LLLT on alternate days. Samples were analyzed by light microscopy and transmission electron microscope (TEM). The animals receiving applications exhibited open channels more dilated between the keratinocytes and photobiomodulation effect on endothelial cells and fibroblasts by TEM. Under the light microscope after 10 laser applications, the type I collagen decreased(P<0.05)compared to the three and six applications. Under these experimental conditions, all numbers of applications provided photobiomodulatory effect on the epidermis and dermis, without damage. More studies are needed to standardize the energy density and number of applications recommended for laser therapy to have a better cost-benefit ratio associated with treatment.
机译:低水平激光疗法(LLLT)已用于缓解疼痛,炎症和伤口愈合过程。因此,皮肤过度暴露于激光下,这种效果还没有被完全理解。这项研究分析了在HRS / J株小鼠中,激光施加次数(3次,6次和10次)对咬肌区域完整皮肤的影响。将动物(n = 30)分为对照组(0cmJ / cm2)和受辐照(20 J / cm2),然后根据激光照射的次数(三,六和十)将这些动物进一步平均分成几组),并隔天进行LLLT。通过光学显微镜和透射电子显微镜(TEM)分析样品。接受应用的动物表现出在角质形成细胞之间更扩张的开放通道,以及通过TEM对内皮细胞和成纤维细胞的光生物调节作用。在10次激光照射后的光显微镜下,与3次和6次施用相比,I型胶原减少(P <0.05)。在这些实验条件下,各种应用都对表皮和真皮提供了光生物调节作用,而没有损坏。需要更多的研究来标准化推荐用于激光治疗的能量密度和应用数量,以具有与治疗相关的更好的成本效益比。

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