Li D, Wang G X, He Y L, Kelly K M, Wu W J, Wang Y X, Ying Z X
State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, China.
State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, China ; Department of Mechanical Engineering, The University of Akron, Akron, Ohio, 44325-3903, USA.
Appl Therm Eng. 2013 Sep 25;59(1-2):41-51. doi: 10.1016/j.applthermaleng.2013.05.007.
Selective photothermolysis is the basic principle for laser treatment of vascular malformations such as port wine stain birthmarks (PWS). During cutaneous laser surgery, blood inside blood vessels is heated due to selective absorption of laser energy, while the surrounding normal tissue is spared. As a result, the blood and the surrounding tissue experience a local thermodynamic non-equilibrium condition. Traditionally, the PWS laser treatment process was simulated by a discrete-blood-vessel model that simplifies blood vessels into parallel cylinders buried in a multi-layer skin model. In this paper, PWS skin is treated as a porous medium made of tissue matrix and blood in the dermis. A two-temperature model is constructed following the local thermal non-equilibrium theory of porous media. Both transient and steady heat conduction problems are solved in a unit cell for the interfacial heat transfer between blood vessels and the surrounding tissue to close the present two-temperature model. The present two-temperature model is validated by good agreement with those from the discrete-blood-vessel model. The characteristics of the present two-temperature model are further illustrated through a comparison with the previously-used homogenous model, in which a local thermodynamic equilibrium assumption between the blood and the surrounding tissue is employed.
选择性光热解是激光治疗诸如葡萄酒色斑胎记(PWS)等血管畸形的基本原理。在皮肤激光手术过程中,血管内的血液由于激光能量的选择性吸收而被加热,而周围的正常组织则得以幸免。结果,血液和周围组织经历局部热力学非平衡状态。传统上,PWS激光治疗过程是通过离散血管模型模拟的,该模型将血管简化为埋在多层皮肤模型中的平行圆柱体。在本文中,PWS皮肤被视为由真皮中的组织基质和血液组成的多孔介质。根据多孔介质的局部热非平衡理论构建了一个双温度模型。在一个单元胞中求解了血管与周围组织之间界面传热的瞬态和稳态热传导问题,以完善当前的双温度模型。通过与离散血管模型的结果良好吻合,验证了当前的双温度模型。通过与先前使用的均匀模型进行比较,进一步说明了当前双温度模型的特点,在均匀模型中采用了血液与周围组织之间的局部热力学平衡假设。