【功能性鞋垫在糖尿病足防治中的应用进展】。

Q4 Medicine
Heng-Yu Liu, Zhen-de Jiang, Yao-Kuan Ruan, Qiu-Ju Li, Si-Yuan Chen, Shun-Yu Wei, Nan Mei, Chou Wu, Fei Chang
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引用次数: 0

摘要

糖尿病足是糖尿病最严重的慢性并发症之一。在全球糖尿病患者中的发病率高达15% ~ 25%,约50%的患者在首次单侧溃疡后5年内会发生对侧足溃疡。功能性鞋垫作为一种非侵入性的防控解决方案,其应用进展主要体现在以下几个方面:(1)材料创新。新型复合材料和智能材料的应用,显著增强了减压效果和舒适性。(2)结构优化。多层设计和局部减压结构的发展,实现了更精确的压力分布调节。(3)制造过程。3D打印和参数化设计实现了功能性鞋垫的个性化定制。(4)智能监控。它集成了压力传感和温度监测等功能,实现了对足部状况的实时监测和预警。临床研究证实,个性化的功能性鞋垫可以减少足部溃疡的发生率,缩短溃疡的愈合时间。目前的研究热点主要集中在智能材料的开发、多功能集成和远程监控系统的建设等方面。但在生物力学机制、标准化评价体系和远期疗效评价等方面仍需深入研究。未来功能鞋垫的发展应注重“个性化-智能化-标准化”的协调推进,为DF的防治提供更有效的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Application progress on functional insoles in the prevention and treatment of diabetic foot].

Diabetic foot (DF) is one of the most serious chronic complications of diabetes. The incidence rate among global diabetes patients is as high as 15% to 25%, and about 50% of patients will develop contralateral foot ulcers within 5 years after the first unilateral ulcer. As a non-invasive prevention and control solution, the application progress of functional insoles is mainly reflected in the following aspects:(1) Material innovation. The application of new composite materials and smart materials has significantly enhanced the pressure reduction effect and comfort. (2) Structural optimization. The development of multi-layer design and local pressure reduction structure has achieved more precise pressure distribution regulation. (3) Manufacturing process. 3D printing and parametric design have enabled the personalized customization of functional insoles. (4) Intelligent monitoring. It integrates functions such as pressure sensing and temperature monitoring, achieving real-time monitoring and early warning of foot conditions. Clinical research has confirmed that personalized functional insoles could reduce the incidence of foot ulcers and shorten the healing time of ulcers. At present, the research hotspots mainly focus on the development of smart materials, the construction of multi-functional integration and remote monitoring systems. However, in-depth research is still needed in the aspects of biomechanical mechanisms, standardized evaluation systems and long-term efficacy assessment. The development of future functional insoles should focus on the coordinated advancement of "personalization-intelligence-standardization", with the aim of providing more effective solutions for the prevention and treatment of DF.

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CiteScore
0.50
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