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Simulation of Laser-Induced Thermo-Mechanical Changes in Tissue Using RF Heating Method

机译:射频加热法模拟激光诱导的组织热机械变化

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摘要

Successful application of laser cartilage reshaping (LCR) for the in-situ treatment of structural deformities in the nasal septum, external ear and trachea requires a better understanding of the evolution of cartilage mechanical properties with temperature. We develop a method of Radio Frequency (RF) heating for reliable evaluation of mechanical changes in septal cartilage undergoing heating and used obtained data to model the mechanical changes in cartilage at steady state following laser heating. Cartilage specimens harvested from porcine septum were secured between two flat parallel copper platens connected to a surgical radiofrequency source. The current was user-selectable and controlled to achieve any desired heating rate mimicking heating rate obtained during laser irradiation. Surface and internal temperatures were monitored by an IR camera and embedding a small electrically insulated thermocouple inside the specimen. Cylindrical and rectangular samples were fashioned from the heated specimens and their equilibrium elastic modulus was measured in a step unconfined compression and tension experiments, respectively. Functional dependencies of the elastic modulus and maximum temperature were interpolated from the measurements. The calculated elastic modulus profiles were incorporated into a numerical model of uniaxial unconfined compression and tension of laser irradiated samples. The reaction force to a 0.1 strain was calculated and compared with the reaction force obtained in analogous mechanical measurements experiment. The results of the numerical simulation of uniaxial compression of laser heated samples demonstrate good correlation with experimentally obtained reaction force. Generalization of this methodology to incorporate orthogonal mechanical properties may aid in optimizing clinical LCR procedures.
机译:激光软骨整形(LCR)成功用于鼻中隔,外耳和气管的结构畸形的原位治疗需要更好地了解软骨力学性能随温度的变化。我们开发了一种射频(RF)加热方法,用于可靠地评估经历加热的间隔软骨的机械变化,并使用获得的数据来模拟激光加热后稳态时软骨的机械变化。从猪隔中收获的软骨标本固定在连接到手术射频源的两个扁平平行铜压板之间。电流是用户可选择的,并且可以控制以实现任何所需的加热速率,从而模仿激光照射过程中获得的加热速率。用红外热像仪监测表面和内部温度,并在样品内部嵌入一个小的电绝缘热电偶。圆柱和矩形样品是从加热的样品中制成的,并且它们的平衡弹性模量分别在无限制压缩和拉伸实验的步骤中进行了测量。从测量值中得出弹性模量和最高温度的函数依赖性。将计算出的弹性模量分布图合并到激光辐照样品的单轴无侧限压缩和拉伸数值模型中。计算出对0.1应变的反作用力,并将其与在类似的机械测量实验中获得的反作用力进行比较。激光加热样品的单轴压缩数值模拟结果表明与实验获得的反作用力具有良好的相关性。此方法的一般化以纳入正交机械性能可能有助于优化临床LCR程序。

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