开发用于预防糖尿病足溃疡的循环压力卸载鞋垫。

Veysel Erel, Aida Nasirian, Yixin Gu, Larry Lavery, Muthu B J Wijesundara
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引用次数: 0

摘要

导言。糖尿病患者一生中发生糖尿病足溃疡(DFU)的可能性约为 19% 至 34%。软组织的持续和重复负荷是导致糖尿病足溃疡的主要致病因素。本文介绍了一种空气细胞阵列鞋垫,设计用于循环卸载足底区域的压力,以减少足部的重复压力和负荷。材料和方法。鞋垫由气室阵列鞋垫和气动控制装置组成。在 3 种不同的气室内部压力(6.9、10.3 和 13.8 千帕)下,对静态和动态条件下的界面压力进行了评估。使用商用压力系统测量足底界面压力,并使用配对 t 检验对数据进行分析。研究了平均界面压力和峰值压力(PP),以评估鞋垫的功能性和有效性。结果显示对静态压力数据的分析表明,周期性卸载对鞋垫的功能和有效性有显著影响。结果显示鞋垫能够通过循环卸载降低足底压力。气垫的内部压力对整体减压效果有很大影响,必须根据使用者的体重来选择。结论。结果证实,具有卸载功能的鞋垫有可能在静态和动态条件下减轻足底压力,从而降低罹患 DFUs 的风险。
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Development of Cyclic Pressure Offloading Insole for Diabetic Foot Ulcer Prevention.

Introduction. The likelihood of developing a diabetic foot ulcer (DFU) during one's lifetime for individuals with diabetes mellitus is around 19% to 34%. Continuous and repetitive loading on soft tissues are the major causative factors for DFU. This paper introduces an air cell array insole designed for cyclically offloading pressure from plantar regions to reduce repetitive stress and loading on foot. Materials and Methods. The insole comprises an air cell array insole and a pneumatic control unit. The interface pressure was evaluated in static and dynamic conditions at 3 different air cell internal pressures (6.9, 10.3, and 13.8 kPa). Plantar interface pressure was measured using a commercial pressure system, and data were analyzed using paired t test. Average interface pressure and peak pressure (PP) were studied to evaluate the functionality and effectiveness of the insole. Results. The analysis of static pressure data revealed that cyclic offloading significantly (p < .05) reduced PP in 4 tested cells corresponding to big toe, metatarsal heads, and heel areas with the maximum mean difference of 12.9 kPa observed in big toe region. Similarly, dynamic pressure data analysis showed that cyclic offloading significantly (p < .05) reduced PP in these areas, with the highest mean PP reduction of 36.98 kPa in the big toe region. Discussion. Results show the insole's capability to reduce plantar pressure through cyclic offloading. Internal pressure of air cells significantly affects the overall pressure reduction and must be chosen based on the user's weight. Conclusion. Results confirm that the insole with offloading capabilities has the potential to reduce the risk of developing DFUs by alleviating the plantar stress during both static and dynamic conditions.

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