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Blue LED treatment of superficial abrasions

机译:蓝光LED治疗浅表擦伤

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A compact and easy-to-handle photocoagulation device was used for inducing an immediate coagulation effect in skin large superficial abrasions, reducing the recovering time and improving the wound healing process. The handheld illumination device consists of a high power LED, emitting in the blue region of the spectrum, mounted in a suitable and ergonomic case, together with power supply, electronics, and batteries. The working principle of the LED-based photocoagulator is a photothermal effect: the blue light is selectively absorbed by the haemoglobin content of the blood and then converted into heat. Here we present an in vivo study performed on animal models. 10 Sprague Dawley rats (Harlan, Italy, weighing 200-250 g) were used to study the wound healing process. On the back of each rat, four large abrasions were mechanically produced: two of them were used as a control, while the other two were treated with the photocoagulator, keeping it at a constant distance (2 mm) from the target, in continuous slow motion (treatment time: tens of seconds). The induced photothermal effect was monitored by an infrared thermocamera in order to avoid accidental thermal damage and to control the temperature dynamics during treatment. Objective observations, histopathological analysis and non-linear microscopy performed in a 8 days follow-up study showed no adverse reactions and no thermal damage in the treated areas and surrounding tissues. Moreover, a faster healing process and a better recovered morphology was evidenced in the treated tissue.
机译:使用紧凑且易于操作的光凝装置可在皮肤大面积浅层擦伤中立即产生凝结效果,从而缩短了恢复时间并改善了伤口的愈合过程。手持照明设备由高功率LED组成,该高功率LED在光谱的蓝色区域发射,并与电源,电子设备和电池一起安装在合适的人体工学盒中。基于LED的光凝器的工作原理是光热效应:蓝光被血液中的血红蛋白含量选择性吸收,然后转化为热量。在这里,我们介绍对动物模型进行的体内研究。使用10只Sprague Dawley大鼠(意大利Harlan,重200-250g)研究伤口愈合过程。在每只大鼠的背部,机械地产生了四个大擦伤:其中两个被用作对照,另外两个被光凝剂处理,保持距目标恒定距离(2毫米),并连续缓慢运动(治疗时间:数十秒)。通过红外热像仪监测诱导的光热效应,以避免意外的热损害并控制治疗过程中的温度动态。在为期8天的随访研究中进行的客观观察,组织病理学分析和非线性显微镜检查显示,治疗区域和周围组织无不良反应,无热损伤。而且,在治疗的组织中证实了更快的愈合过程和更好的恢复形态。

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