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Using thermochromic ink for medical simulations

机译:使用热变色油墨进行医学模拟

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Background: In medical simulation and training, blood is used to exhibit its different behaviors in context. In some cases, blood color differential is an imperative visual effect to ensure high-fidelity training and practical understanding. High simulation realism is usually achieved by using animal or artificial blood (which mimics some biological features of blood), which has high cost, requires disposable equipment such as oxygenators, and entails contamination or infection risks. Methods: A novel method for blood simulation is introduced. Using the thermal properties of thermochromic ink, its color can be altered by adjustment of temperature. 1 The unique red color of blood can be mimicked to a high fidelity using a custom hue of thermochromic ink. Then, by adjusting its temperature, realistic dark and bright red can be employed to simulate the low and high oxygen concentrations of blood, respectively. Although thermochromic ink currently does not imitate other blood properties such as viscosity and clotting, it has superior merits when color change simulation is a paramount priority. The major advantages of the proposed solution are reusability and cost. Thermochromic ink can be used for multiple simulations without any noticeable change in quality. It also costs significantly less than using actual or artificial blood. Results: Testing results of the proposed solution in extracorporeal membrane oxygenation (ECMO) simulation has proven its efficacy as a practical solution for medical simulations (see Figure 1). To prevent membrane occlusion because of the thermochromic ink, the latter needs to be pierced. In addition to ECMO simulation, other medical applications are being considered. Conclusions: The use of thermochromic ink in medical training provides reproducible color change simulation features of blood while maintaining significantly lower equipment costs and contamination risks as all circuit components can be reused.
机译:背景:在医学模拟和训练中,血液被用来表现其在环境中的不同行为。在某些情况下,血色差异是必不可少的视觉效果,以确保高保真训练和实际理解。高度仿真的逼真度通常是通过使用动物或人造血液(模仿血液的某些生物学特性)来实现的,动物血液或人造血液的成本较高,需要使用一次性设备(例如充氧器),并且存在污染或感染风险。方法:介绍了一种新的血液模拟方法。利用热致变色油墨的热特性,可以通过调节温度来改变其颜色。 1使用自定义色相的热致变色墨水可以将血液的独特红色模仿到高保真度。然后,通过调节温度,可以使用逼真的深红色和亮红色分别模拟血液中的低氧浓度和高氧浓度。尽管热变色油墨目前不能模仿其他血液特性,例如粘度和凝块,但当将变色模拟作为首要任务时,它具有优越的优点。提出的解决方案的主要优点是可重用性和成本。热致变色油墨可用于多种模拟,而质量没有明显变化。它的成本也大大低于使用实际或人工血液。结果:建议的解决方案在体外膜氧合(ECMO)模拟中的测试结果证明了其作为医学模拟的实用解决方案的功效(参见图1)。为了防止由于热致变色油墨而引起的膜堵塞,需要将后者刺穿。除了ECMO模拟之外,还考虑了其​​他医学应用。结论:在医疗培训中使用热致变色墨水可提供可重现的血液模拟仿真功能,同时由于可重复使用所有电路组件,因此可显着降低设备成本和污染风险。

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