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裁剪成合适形状的敷料可减轻使用氧气面罩时对面部组织的压力。

Dressings cut to shape alleviate facial tissue loads while using an oxygen mask.

机构信息

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

Department of Medical Engineering, Afeka Tel Aviv Academic College of Engineering, Tel Aviv, Israel.

出版信息

Int Wound J. 2019 Jun;16(3):813-826. doi: 10.1111/iwj.13101. Epub 2019 Mar 5.

Abstract

Non-invasive ventilation (NIV) masks are commonly used for respiratory support where intubation or a surgical procedure can be avoided. However, prolonged use of NIV masks involves risk to facial tissues, which are subjected to sustained deformations caused by tightening of the mask and microclimate conditions. The risk of developing such medical device-related pressure ulcers can be reduced by providing additional cushioning at the mask-face interface. In this work, we determined differences in facial tissue stresses while using an NIV mask with versus without using dressing cuts (Mepilex Lite; Mölnlycke Health Care, Gothenburg, Sweden). First, we developed a force measurement system that was used to experimentally determine local forces applied to skin at the bridge of the nose, cheeks, and chin in a healthy sample group while using a NIV mask. We further demonstrated facial temperature distributions after use of the mask using infrared thermography. Next, using the finite element method, we delivered the measured compressive forces per site of the face in the model and compared maximal effective stresses in facial tissues with versus without the dressing cuts. The dressings have shown substantial biomechanical effectiveness in alleviating facial tissues deformations and stresses by providing localised cushioning to the tissues at risk.

摘要

无创通气(NIV)面罩常用于避免插管或手术的呼吸支持。然而,长时间使用 NIV 面罩会对面部组织造成风险,这些组织会因面罩的收紧和微气候条件而持续变形。通过在面罩与面部的接口处提供额外的缓冲,可以降低因使用医疗设备而导致压疮的风险。在这项工作中,我们比较了使用和不使用敷料切口(Mepilex Lite;Mölnlycke Health Care,哥德堡,瑞典)的 NIV 面罩对面部组织的影响。首先,我们开发了一个力测量系统,用于在健康样本组中使用 NIV 面罩时,实验确定鼻桥、脸颊和下巴处皮肤的局部力。然后,我们使用红外热成像技术展示了使用面罩后的面部温度分布。接下来,我们使用有限元法,将每个面部位置的测量压缩力施加到模型中,并比较了有和没有敷料切口时面部组织的最大有效应力。敷料通过为有风险的组织提供局部缓冲,在减轻面部组织变形和应力方面具有显著的生物力学效果。

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