Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.
Int Wound J. 2020 Jun;17(3):562-577. doi: 10.1111/iwj.13309. Epub 2020 Jan 28.
Pressure ulcers (PUs) are one of the most prevalent adverse events in acute and chronic care. The root aetiological cause of PUs is sustained cell and tissue deformations, which triggers a synergistic tissue damage cascade that accelerates over relatively short time periods. Changes in skin microclimate conditions are known to indirectly contribute to PU-risk levels or to exacerbation of existing wounds. It is therefore surprising that information concerning heat accumulation under dressings is poor. Here, we aimed to investigate the effects of dressings on the microclimate of weight-bearing buttocks skin in 1-hour supine lying sessions. Using a novel and originally developed experimental-computational approach, we compared the combined influence of the mechanical and thermal properties of a polymeric membrane dressing (PolyMem, Ferris Mfg. Corp., Fort Worth, TX) on skin microclimate under and near the dressings with those of a standard placebo foam dressing. We specifically identified the thermal conductivity properties of dressings as being highly important in the context of protective dressing performances, given its association with potential heat accumulation under dressings. Accordingly, this article highlights, for the first time in the literature, the relevance of thermal properties of a dressing in effectively mitigating the risk of developing PUs or aggravating an injury, and offers a systematic, methodological bioengineering process for assessing the thermal performances of dressings.
压力性溃疡(PU)是急性和慢性护理中最常见的不良事件之一。PU 的根本病因是持续的细胞和组织变形,这引发了协同的组织损伤级联反应,在相对较短的时间内加速。众所周知,皮肤微气候条件的变化会间接导致 PU 风险水平的增加或现有伤口的恶化。令人惊讶的是,有关敷料下热量积累的信息却很少。在这里,我们旨在研究敷料在 1 小时仰卧位期间对承重臀部皮肤微气候的影响。使用新颖的原始开发的实验计算方法,我们比较了聚合物膜敷料(PolyMem,Ferris Mfg. Corp.,Fort Worth,TX)的机械和热性能对敷料下和附近皮肤微气候的综合影响与标准安慰剂泡沫敷料的影响。我们特别指出,鉴于敷料下潜在的热量积累与敷料热导率特性密切相关,敷料的热导率特性在保护敷料性能方面非常重要。因此,本文首次在文献中强调了敷料的热性能在有效降低发生 PU 或加重损伤的风险方面的相关性,并提供了一种评估敷料热性能的系统、方法学的生物工程方法。