变色致动器:在婴儿模型模拟器中设计紫绀的综述

N. Azmi, F. Delbressine, L. Feijs, P. Andriessen, T. Pols
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引用次数: 2

摘要

本文报道了现实的颜色产生和颜色变化,由于紫绀是指蓝色的嘴唇周围的区域。通过对真实婴儿图像的颜色测量和紫绀校正,确定了人体模型的设计要求。文献研究的分类是以能量为基础的物理工作原理。可逆的变色机制是通过外部能量如电、热、机械、光能和磁能的刺激来实现的。在这里,紫绀颜色的概述是提出作为一个新的设计的基础上,一个生理启发的颜色变化致动器在婴儿模型中的紫绀。在所需的颜色范围,切换时间,尺寸和形状的颜色变化执行器的最新技术的审查,包括安全问题的每个执行工作原理,提出。采用加权目标法的简化版本,通过给每种执行器类型分配分数来评估执行器类型的实用价值,这表明了它们的标准。这项工作突出了设计的规范,目的是在不久的将来设计一个紫绀变色执行器。最终,所设想的系统将提高医学培训中紫绀颜色的视觉评价和评估的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Color Changing Actuators: A Review Towards Designing Cyanosis in a Baby Manikin Simulator
This paper reports on the realistic color generation and color change due to cyanosis which refers to the blue coloration around the lips’ area. The design requirements for the manikin were identified based on the color measurement and corrections of cyanosis in images of real babies. The classification of the literature study is according to physics working principles based on energy. A reversible color changing mechanism is achievable by stimuli of external energy such as electric, heat, mechanical, light and magnetic energy. Here, the overview of cyanosis coloration is presented to serve as a basis for a new design of a physiologically-inspired color change actuator for cyanosis in a baby manikin. A state-of-the-art review of color change actuators in the desired color ranges, switching time, dimensions and shape, including the safety issues of each actuating working principle, is presented. Employing a simplified version of the Weighted Objectives method, the practical value of the actuator types was evaluated by assigning scores to each actuator’s type, which indicates their criteria. This work highlights the design’s specifications which aim to design a cyanosis color change actuator in the near future. Ultimately, the envisioned system will increase the efficiency of the visual evaluation and assessment of cyanosis coloration in medical training.
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