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Three-Dimensional Blood Vessel Model with Temperature-Indicating Function for Evaluation of Thermal Damage during Surgery

机译:具有温度指示功能的三维血管模型用于评估手术过程中的热损伤

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摘要

Surgical simulators have recently attracted attention because they enable the evaluation of the surgical skills of medical doctors and the performance of medical devices. However, thermal damage to the human body during surgery is difficult to evaluate using conventional surgical simulators. In this study, we propose a functional surgical model with a temperature-indicating function for the evaluation of thermal damage during surgery. The simulator is made of a composite material of polydimethylsiloxane and a thermochromic dye, which produces an irreversible color change as the temperature increases. Using this material, we fabricated a three-dimensional blood vessel model using the lost-wax process. We succeeded in fabricating a renal vessel model for simulation of catheter ablation. Increases in the temperature of the materials can be measured by image analysis of their color change. The maximum measurement error of the temperature was approximately −1.6 °C/+2.4 °C within the range of 60 °C to 100 °C.
机译:外科手术模拟器最近引起了人们的注意,因为它们可以评估医生的外科手术技能和医疗设备的性能。但是,使用传统的手术模拟器很难评估手术过程中对人体的热损伤。在这项研究中,我们提出了一种具有温度指示功能的功能性手术模型,用于评估手术中的热损伤。该模拟器由聚二甲基硅氧烷和热致变色染料的复合材料制成,随着温度的升高,该材料会产生不可逆的颜色变化。使用这种材料,我们使用失蜡工艺制作了三维血管模型。我们成功地制造了用于模拟导管消融的肾血管模型。可以通过对材料颜色变化的图像分析来测量材料温度的升高。在60°C至100°C的范围内,温度的最大测量误差约为-1.6°C / + 2.4°C。

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