Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.
Int Wound J. 2022 Nov;19(7):1797-1809. doi: 10.1111/iwj.13784. Epub 2022 Mar 10.
Alleviation of localised, sustained tissue loads and microclimate management are the most critical performance criteria for materials in use for pressure ulcer prevention, such as in prophylactic dressings, padding or cushioning. These material performance criteria can be evaluated by calculating the extents of matching between the material stiffness (elastic modulus) and the thermal conductivity of the protective dressing, padding or cushioning with the corresponding properties of native skin, separately or in combination. Based on these bioengineering performance criteria, hydrocolloids, which are commonly used for prophylaxis of medical device-related pressure ulcers, exhibit poor stiffness matching with skin. In addition, there is remarkable variability in the modulus and thermal conductivity matching levels of different material types used for pressure ulcer prevention, however, it appears that among the materials tested, hydrogels provide the optimal matching with skin, followed by gels and silicone foams. The stiffness matching for hydrocolloids appears to be inferior even to that of gauze. This article provides quantitative performance criteria and metrics for these evaluations, and grades commonly used material types to biomechanically guide clinicians and industry with regards to the selection of dressings for pressure ulcer prevention, both due to bodyweight forces and as a result of applied medical devices.
减轻局部持续组织压力和微气候管理是预防压疮用材料(如预防性敷料、衬垫或气垫)的最重要性能标准,例如在预防压力性溃疡中。这些材料性能标准可以通过计算材料硬度(弹性模量)与保护性敷料、衬垫或气垫的热导率与天然皮肤相应特性之间的匹配程度来评估,也可以单独或组合评估。基于这些生物工程性能标准,水胶体在预防医疗器械相关性压疮中通常被用于预防,但其与皮肤的硬度匹配不佳。此外,用于预防压疮的不同材料类型的模量和热导率匹配水平存在显著差异,然而,在测试的材料中,水凝胶与皮肤的匹配度似乎最佳,其次是凝胶和硅酮泡沫。水胶体的硬度匹配甚至不如纱布。本文提供了这些评估的定量性能标准和指标,并对常用材料类型进行分级,以便根据体重力和应用医疗器械的结果,为临床医生和行业提供预防压疮的敷料选择的生物力学指导。