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Controlling the temperature of bones using pulsed CO2 lasers: observations and mathematical modeling

机译:使用脉冲CO2激光控制骨骼温度:观察和数学建模

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摘要

Temperature of porcine bone specimens are investigated by aiming a pulsed CO2 laser beam at the bone-air surface. This method of controlling temperature is believed to be flexible in medical applications as it avoids the uses of thermal devices, which are often cumbersome and generate rather larger temperature variations with time. The control of temperature using this method is modeled by the heat-conduction equation. In this investigation, it is assumed that the energy delivered by the CO2 laser is confined within a very thin surface layer of roughly 9 μm. It is shown that temperature can be maintained at a steady temperature using a CO2 laser and we demonstrate that the method can be adapted to be used in tandem with another laser beam. This method to control the temperature is believed to be useful in de-contamination of bone during the implantation treatment, in bone augmentation when using natural or synthetic materials and in low-level laser therapy.
机译:通过将脉冲CO2激光束对准骨骼空气表面来研究猪骨骼标本的温度。人们认为这种控制温度的方法在医学应用中是灵活的,因为它避免了使用热设备,该设备通常很麻烦并且会随时间产生较大的温度变化。使用此方法对温度的控制由热传导方程建模。在这项研究中,假设由CO2激光器传递的能量被限制在大约9μm的非常薄的表面层内。结果表明,使用CO2激光可以将温度保持在稳定温度,并且我们证明了该方法可以与另一激光束串联使用。据信这种控制温度的方法可用于植入治疗期间的骨净化,使用天然或合成材料时的骨增强以及低水平激光治疗中。

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