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在机器人骶部压疮模型中测试的伤口敷料的三维形状适应性能。

Three-dimensional shape-conformation performances of wound dressings tested in a robotic sacral pressure ulcer phantom.

机构信息

Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.

出版信息

Int Wound J. 2021 Oct;18(5):670-680. doi: 10.1111/iwj.13569. Epub 2021 Feb 19.

Abstract

Effective exudate retention by dressings requires close and intimate dressing-wound contact, immediately and continuously after the dressing application. Any dressing-wound spaces may allow for build-up of non-retained fluids, causing exudate pooling which forms a favourable environment for pathogen growth. Maceration may follow if the pooled exudates spread to peri-wound skin. Dressings with a claimed 3D-shape-conformation technology are commercially available; however, their effectiveness in minimising dressing-wound gaps has never been scientifically investigated. We present a novel bioengineering methodology for testing the effectiveness of such 3D-shape-conformation dressings, using our recently reported robotic phantom system of a sacral pressure ulcer. By means of 3D laser scanning and bespoke software, we reconstructed dressing shapes after simulated use and calculated the goodness-of-fit between each dressing (swelled to near-saturation) and the corresponding wound geometry. Two dressing sizes (10 × 10 cm and 12.5 × 12.5 cm) and two wound depths (2.5 or 2 cm) were considered. All the tested dressings were far from reaching good contact with the (simulated) wounds: Approximately one-third of the wound volume and nearly half of the wound surface were not in contact with the swelled dressings. Our present findings question whether 3D-shape-conformation dressings are effective, by revealing their swelling behaviour which was previously unknown.

摘要

有效的伤口渗出液保留需要敷料紧密且密切贴合伤口,即在敷料应用后立即且持续贴合。任何敷料与伤口之间的间隙都可能导致未保留的液体积聚,形成渗出液积聚,为病原体生长提供有利环境。如果积聚的渗出液扩散到伤口周围的皮肤,可能会出现糜烂。市场上有声称具有 3D 形状顺应性技术的敷料,但它们在最小化敷料与伤口之间间隙方面的有效性从未经过科学研究。我们提出了一种新的生物工程方法来测试这种 3D 形状顺应性敷料的有效性,使用我们最近报道的骶部压疮机器人虚拟模型系统。通过 3D 激光扫描和定制软件,我们在模拟使用后重建了敷料的形状,并计算了每个敷料(膨胀至接近饱和)与相应伤口几何形状之间的拟合度。考虑了两种敷料尺寸(10×10cm 和 12.5×12.5cm)和两种伤口深度(2.5 或 2cm)。所有测试的敷料都远未与(模拟)伤口达到良好接触:大约三分之一的伤口体积和近一半的伤口表面没有与膨胀的敷料接触。我们目前的研究结果质疑 3D 形状顺应性敷料是否有效,因为它们的膨胀行为是以前未知的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1b3/8450790/ca1092f72272/IWJ-18-670-g002.jpg

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