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BIO-HEAT TRANSFER IN A MODEL SKIN SUBJECT TO A TRAIN OF SHORT PULSE IRRADIATION

机译:模型皮肤中的生物传热受到短脉冲辐射的火车

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Thermal analysis of biological tissues subject to a train of ultrashort pulse irradiations was made of developing a combined time-dependent radiation and conduction bio-heat transfer model. A model skin tissue stratified as three layers with different optical, thermal and physiological properties was considered. Temperature response of the skin tissue exposed to a single ultrashort pulse irradiation was firstly analyzed by the finite volume method in combination with the transient discrete ordinales method. This temperature rise was found to reach pseudo steady state within an extremely short time period in which thermal diffusion is negligible. Since the tissue properties were assumed to be constant during a train of pulse irradiation, this temperature rise subject to a single pulse can be employed for repeated pulses. In the same time, Pennes' equation was employed to study the bio-heat transfer in the meso-time scale. The effects of pulse strengths and repetition rate on the temperature response in the multi-layer skin tissue were investigated.
机译:通过开发组合的时间依赖性辐射和传导生物传热模型,制成对超短脉冲射线火车进行的生物组织的热分析。考虑了分层为三层具有不同光学,热和生理性质的模型皮肤组织。通过有限体积法与瞬态离散序列法组合分析暴露于单个超短脉冲照射的皮肤组织的温度响应。发现这种温度升高在热扩散可忽略不计的极短的时间段内达到伪稳态。由于假设组织特性在脉冲照射的列车期间恒定,因此可以采用对单个脉冲进行的该温度升高用于重复脉冲。同时,采用彭尼斯的等式来研究中间尺度的生物传热。研究了脉冲强度和重复率对多层皮肤组织中温度响应的影响。

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