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Structural design optimization and lipolytic effect prediction of vacuum suction cryolipolysis applicator: Simulation study

机译:真空吸乳冷溶胶机结构设计优化及溶脂效果预测:仿真研究

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Abstract Background and Objectives Cryolipolysis is a popular noninvasive lipolytic method that uses low temperature to induce apoptosis or necrosis of adipocytes to reduce local fat in the human body. Vacuum suction applicator is a commonly used cryolipolysis equipment, which suction human skin and fat into a chamber for cooling. The structure of vacuum suction applicator is usually irregular, its cooling characteristic is also complex, and unreasonable suction structure will cause human discomfort. Biological experiments and clinical studies are often used to study the structural design of applicators, whereas these methods are impossible to obtain the three‐dimensional cooling characteristic of applicator comprehensively and require a lot of costs. This study aims to optimize the structure of applicator for lowering discomfort, evaluate the cooling characteristic and lipolytic effect of applicators, which could provide guidance for clinical application of applicators and reduce costs. Materials and Methods Cryolipolysis applicators models with four vacuum suction angles were established, and COMSOL was used to compare the cooling performance parameters, cooling kinetics, and lipolytic effects of the applicators. Specific evaluation indicators also include: cooling capacity analysis, temperature field analysis, lipolytic percentage, lipolytic volume, lipolytic weight, lipolytic thickness, lipolytic waistline, and lipolysis temperature threshold analysis. Results The applicator with a small suction angle has a greater cooling capacity to cool deeper level of fat. When the cooling temperature is ?10°C, the temperature of skin layer is about ?10°C at 60?minutes, the temperature of fat layer is ?7.36 to 3.01°C at 10?mm, ?3.67 to 5.91°C at 20?mm and 2.01?10.81°C at 30?mm. The percentage of lipolytic declined with the increase of suction angle, the final lipolytic percentage (35.81%) of the 90° applicator is the highest, the percentage (28.72%) of 150° applicator (28.72%) is the lowest. The lipolytic volume, weight, and average thickness of applicator constantly increased with the increase of the suction angle, the final lipolytic volume range of the four suction angle applicators is 171.88?310.18?cm3, the lipolytic weight range is 160.11?288.93?g, and the lipolytic average thickness range is 1.21?1.36?cm. Lower lipolysis temperature threshold will reduce the lipolysis effect, but it may also lead to another lipolysis mechanism‐cell necrosis. Conclusion Different suction angles significantly affect the cooling characteristics and lipolytic effects of cryolipolysis applicator. A reasonable suction angle is one of the critical factors to improve the efficiency and comfort of cryolipolysis.
机译:抽象的背景和目标州是一个受欢迎的无损分解脂肪的方法吗使用低温诱导细胞凋亡坏死的脂肪细胞减少局部脂肪人类的身体。常用的州设备,吸入人体皮肤和脂肪变成一个室冷却。器通常是不规则的,其冷却特性也是复杂的,不合理的吸入结构会导致人体不适。生物实验和临床研究常用于研究的结构设计涂抹器,而这些方法都是不可能的获取三维冷却涂布全面的特点需要大量的成本。为降低优化器结构不适,评估冷却特性和应用者,分解脂肪的效果为临床应用提供指导涂抹器并降低成本。州应用者模型与方法四个真空抽吸的角度建立了COMSOL被用来比较的冷却性能参数、冷却动力学和涂抹器分解脂肪的影响。评价指标包括:冷却能力分析、温度场分析、分解脂肪的百分比,分解脂肪的体积,分解脂肪的重量,分解脂肪的厚度,分解脂肪的腰围,和脂类分解温度阈值分析。结果小吸角器有一个更大的冷却能力酷更深水平的脂肪。? 10°C,皮肤层的温度10°C 60岁?是7.36到3.01°C 10点?20吗?增加的脂解的拒绝吸入角,最后分解脂肪的百分比(35.81%)的90°涂布是最高的,比例(28.72%)的150°器(28.72%)是最低的。重量,涂布的平均厚度不断增加的增加吸入角,最后分解脂肪的体积范围的四个吸角涂抹器171.88 ? 310.18 ?160.11 ? 288.93 ?厚度范围是1.21 ? 1.36 ?厘米。温度阈值将减少脂类分解效果,但是它也可能导致另一种脂类分解机制的细胞坏死。吸入角度显著影响冷却的特点和分解脂肪的影响州涂布。角是提高的关键因素之一州的效率和安慰。

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