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Modeling of the heat distribution in the intervertebral disk.

机译:椎间盘热分布的模型。

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The heat transfer equation was used to model the heat distribution in an intervertebral disk during ultrasound (US) exposure. The influence of thermal and acoustic parameters was studied to get a quantitative understanding of the heat transfer in the system. Heating of collagen to 65 degrees C or above will lead to denaturation and is believed to stabilize and contract the outer part of the disk in a herniated disk. In our model, the US intensity was approximated by a Gaussian distribution and nonlinear propagation was excluded. The effect of self-heating and cooling of the transducer was also studied. The simulations were performed using the finite element method. From this model, it can be concluded that it is possible to heat parts of the disk to treatment temperature using a focused 5-mm diameter US probe. The physical constraints on the piezocrystal set the limit of the size of the treatment volume. (E-mail: ).
机译:在超声(US)暴露期间,使用热传递方程来模拟椎间盘中的热分布。研究了热和声学参数的影响,以定量了解系统中的热传递。将胶原蛋白加热到65摄氏度或更高温度将导致变性,并且可以稳定和收缩椎间盘的椎间盘外部。在我们的模型中,美国强度通过高斯分布近似,非线性传播被排除在外。还研究了换能器的自加热和冷却效果。使用有限元方法进行了仿真。从该模型可以得出结论,可以使用直径为5毫米的聚焦US探针将磁盘的各个部分加热到治疗温度。压电晶体的物理约束条件限制了处理体积的大小。 (电子邮件:)。

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