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Laser Hair Removal: Comparative Study of Light Wavelength and its Effect on Laser Hair Removal

机译:激光脱毛:光波长及其对激光脱毛影响的比较研究

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摘要

For some people, hirsuteness (having excess body hair) can be an embarrassing problem. Many attempts have been made to find a solution to these problems, including electrolysis, tweezing, shaving, and waxing. However, most of these solutions are painful, are not useful in treating large areas of skin, or are not permanent. Laser hair removal stands out amongst these other methods as a permanent method of reducing hirsuteness that can cover large areas of the body, such as the chest or the legs. While laser hair removal is a widely used technology, few studies have explored the physical aspects of why it works so well. More specifically, there is a significant lack of computer models that show how temperature profiles look inside the hair and surrounding skin. Using the physical properties and dimensions of hair, we constructed a model of the hair that approximates how actual hair resides in the skin. Using COMSOL Multiphysics, we tested this model with five different lasers of varying wavelengths in order to determine the relationship between laser wavelength and temperature in the hair. Using a laser pulse duration of 0.01 seconds (10 milliseconds), we found a positive correlation between wavelength and temperature, with all wavelengths except the lowest (595 nm) achieving a temperature above the threshold temperature required for hair destruction. In addition, while all lasers caused a temperature rise in the surrounding skin, the extent of thermal damage was minimal. However, since we could not find physical properties of the hair follicle itself, we were forced to approximate those properties using the hair shaft properties, ultimately leading us to treat the follicle and shaft as one entity. This is a slight limitation with our design. Regardless, we have provided a greater understanding of the physiological temperatures involved in hair removal, and have reinforced the fact that laser hair removal can be a safe method and effective method for treating hirsuteness by showing that hair follicles can be heated to a temperature that kill them by using lasers, and that this heating does not severely or irreparably damage surrounding skin.
机译:对于某些人来说,多毛(身体多余的头发)可能是一个令人尴尬的问题。已经进行了许多尝试来找到解决这些问题的方法,包括电解,镊子,剃毛和打蜡。然而,这些解决方案中的大多数都是痛苦的,不能用于治疗大面积的皮肤,或者不是永久性的。在其他方法中,激光脱毛是一种减少多毛症的永久性方法,该方法可以覆盖身体的大部分区域,例如胸部或腿部,是一种永久性的方法。尽管激光脱毛是一种广泛使用的技术,但很少有研究探讨其为何如此有效的物理方面。更具体地说,显着缺乏计算机模型来显示温度分布在头发和周围皮肤内部的外观。利用头发的物理特性和尺寸,我们构建了一个头发模型,该模型近似于实际头发在皮肤中的驻留方式。使用COMSOL Multiphysics,我们用五种不同波长的不同激光测试了该模型,以确定激光波长与头发温度之间的关系。使用0.01秒(10毫秒)的激光脉冲持续时间,我们发现波长与温度之间呈正相关,除最低波长(595 nm)以外的所有其他波长的温度均达到破坏头发所需的阈值温度以上。此外,尽管所有激光都使周围皮肤温度升高,但热损伤的程度很小。但是,由于找不到毛囊本身的物理特性,因此我们不得不使用毛干特性来近似这些特性,最终导致我们将毛囊和毛干视为一个整体。这是我们设计的一个轻微限制。无论如何,我们已经对脱毛涉及的生理温度有了更深入的了解,并通过证明毛囊可以加热到可以杀死毛发的温度来强调激光脱毛是治疗多毛症的安全方法和有效方法这一事实。使用激光对它们进行加热,并且这种加热不会严重或无法修复地损坏周围的皮肤。

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