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On the Laser-induced Heat Profile for Skin-Thermolysis by Using an Egg White Protein Simulation Model

机译:用蛋白模拟模型研究激光诱导的皮肤热解曲线

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Nowadays, the technology of lasers in the dermatological profession has developed and provided an effective result to patients by using fractional 1550 nm lasers. The depth of skin and quantity of treatment can be controlled step by step. Patients may not have side effects after having treatment and can continue a regular lifestyle. This is because the laser beam is divided in a great number of small beams for each treatment area. The trace of injury cannot be detected by the eye. Controlling the energy of the laser for getting the most suitable depth and trace of injury for each skin disease is very important. Testing the right amount of laser energy for a biopsy from volunteer patients is difficult in terms of data analysis. The sample size could be very limited, which leads to an insignificant statistical result problem. This is because of the ethical problem with regards to conducting research on humans. Therefore, the development of lasers in dermatological profession has been slower than in other industrial and science fields. Inventing a substitute material for experiment with a fractional 1550 nm laser is very important. The substitute material has to have a physical reaction similar to human skin. This will benefit the study of the microscopic heating expansion in human skin before operating with the laser treatment for patients. This research presents natural egg white as a substitute material. Egg white has a mechanism to absorb the energy from a fractional 1550 nm laser, which is similar to mechanism in human skin. Analysis of the pattern of laser beam in egg white by microscope from liquid egg white is fast. This could be done immediately after conducting the experiment. The experiment time and expenses of egg white experiment are 1 and 0.33% comparing to the experiment with volunteer patients.
机译:如今,皮肤病学领域的激光技术已经得到发展,并通过使用1550 nm分数激光为患者提供了有效的结果。皮肤深度和治疗量可以逐步控制。治疗后患者可能没有副作用,并且可以继续有规律的生活方式。这是因为对于每个治疗区域,激光束被分成许多小束。眼睛看不到受伤的痕迹。控制激光的能量以获得每种皮肤疾病最合适的深度和损伤痕迹非常重要。在数据分析方面,很难为志愿者患者的活检测试正确数量的激光能量。样本数量可能非常有限,从而导致无关紧要的统计结果问题。这是因为在进行人类研究方面存在伦理问题。因此,激光在皮肤病学领域的发展比其他工业和科学领域要慢。发明一种用于1550 nm分数激光的替代材料非常重要。替代材料必须具有类似于人体皮肤的物理反应。这将有利于在对患者进行激光治疗之前研究人体皮肤的微观热膨胀。这项研究提出了天然蛋清作为替代材料。蛋清具有吸收1550 nm分数激光的能量的机制,与人体皮肤的机制相似。用显微镜从蛋清中快速分析蛋清中的激光束图。可以在进行实验后立即完成。蛋清实验的实验时间和费用与自愿患者的实验相比分别为1%和0.33%。

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