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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Thermoelectric Heat Patch for Clinical and Self-Management: Melanoma Excision Wound Care
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Thermoelectric Heat Patch for Clinical and Self-Management: Melanoma Excision Wound Care

机译:用于临床和自我管理的热电热贴片:黑色素瘤切除伤口护理

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摘要

Thermotherapy is considered to have potential beneficial effects when applied to wounds. Of particular relevance to this research are wounds that have dropped in temperature due to regional anaesthesia. This study is aimed at developing a normothermic system comprising of a heat patch controlled by external hardware. The study is divided into three parts: (i) the analyses of the skin temperature that form the foundation of the system; (ii) the development of an efficient wearable heat patch incorporating thermoelectric elements to electrical and thermal conductive textiles; and (iii) the hardware development to control the current flow to the thermoelectric elements thus managing the temperature of the heat patch and conserving current. It was observed that a distance of 3cm between the thermoelectric elements provides ideal heat distribution relative to the surface area. The system allowed for an 80% reduction in current, while maintaining the temperature of the heat patch at the required thermophysiological skin temperature. Future studies will include development of a temperature sensor identifying the real-time temperature of the wound; and circuitry for switching the polarity of the thermoelectric elements. The cooling capabilities of the thermoelectric elements can be applied to wounds that have increased in temperature.
机译:在施用伤口时,热疗被认为具有潜在的有益效果。特别是与该研究的相关性是由于区域麻醉而在温度下降的伤口。该研究旨在开发一种常温系统,包括由外部硬件控制的热贴片。该研究分为三个部分:(i)分析形成系统基础的皮肤温度; (ii)在电气和导热纺织品上利用热电元件的高效可穿戴热贴片的发展; (iii)硬件开发以控制电流流到热电元件,从而管理热贴片的温度和节能电流。观察到,热电元件之间3cm的距离相对于表面积提供理想的热分布。该系统允许减少电流的80%,同时保持热性能热性能温度下的热贴片温度。未来的研究将包括识别伤口的实时温度的温度传感器的开发;和用于切换热电元件极性的电路。热电元件的冷却能力可以应用于在温度下增加的伤口。

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