Study on an Onset Mechanism of MDRPU by Wearing Elastic Stockings: Numerical Simulation by Two-Dimensional Mechanical Model.

IF 0.6 Q4 PERIPHERAL VASCULAR DISEASE Annals of vascular diseases Pub Date : 2023-09-25 DOI:10.3400/avd.oa.23-00045
Kokichi Hashimoto, Ayako Tosaki, Nanae Matsuda
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Abstract

As compared with pressure injuries, the mechanism the development of medical device related pressure ulcers (MDRPU) is not revealed enough. According to studies on severity and frequent site of occurrence, MDRPUs are surmised to occur the surface of the skin. In this study, we assess theoretical and experimental analysis by two-dimensional mechanical model for elastic stockings (ES) wear the lower limbs with or without dug into the skin by the wrinkles and curling up of ES. The Finite Element Method (FEM) was used to calculate the stress on the skin and subcutaneous tissue, because of elucidating the mechanism of MDRPU. The FEM used a triple-layered cylindrical model simulating the skin, subcutaneous tissue, and bone. Regarding the interface pressure (compression pressure), two samples were created: the one is applying a uniform pressure of 5.3 kPa on the skin surface simulating the correct wearing of ES, and the other is applying a pressure of 16 kPa on the part of the skin on which ES dug in. The results were as follows: the internal stress on the skin and subcutaneous tissue was maximum at the site where ES dug in, producing stresses of 54 kPa, 50 kPa, and 21 kPa in the circumferential, longitudinal, and radial directions, respectively. The uniform pressure produced an internal stress of 5-9 kPa on the skin surface. Unlike the mechanism of pressure injury formation, we considered compressive strength from tensile of the circumferential and longitudinal directions, furthermore the additive radial pressure at the digging site on the skin due to the wrinkles and curling of ES, which is one of the factor to cause strong external force in the MDRPU formation. (This is secondary publication from Jpn J Phlebol 2021; 32(1): 119-126.).

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MDRPU穿弹性袜引发机理的研究——二维力学模型的数值模拟。
与压力损伤相比,医疗器械相关压疮(MDRPU)的发生机制尚未得到足够的揭示。根据对严重程度和频繁发生部位的研究,MDRPU推测发生在皮肤表面。在本研究中,我们通过二维力学模型对弹性袜(ES)穿着的理论和实验分析进行了评估,无论是否由于ES的褶皱和卷曲而深入皮肤。由于阐明了MDRPU的机理,我们使用有限元方法(FEM)来计算皮肤和皮下组织上的应力。有限元法使用三层圆柱模型模拟皮肤、皮下组织和骨骼。关于界面压力(压缩压力),创建了两个样本:一个是施加5.3的均匀压力 在皮肤表面施加kPa,模拟ES的正确佩戴,另一种是施加16的压力 kPa。结果如下:皮肤和皮下组织上的内应力在ES挖掘的部位最大,产生的应力为54 kPa,50 kPa和21 分别在周向、纵向和径向上为kPa。均匀的压力产生5-9的内应力 kPa。与压力损伤形成的机制不同,我们从周向和纵向的拉伸角度考虑了压缩强度,此外,由于ES的褶皱和卷曲,挖掘部位对皮肤的附加径向压力,这是在MDRPU形成中引起强外力的因素之一。(这是Jpn J Phlebol 2021的第二期出版物;32(1):119-126。)。
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来源期刊
Annals of vascular diseases
Annals of vascular diseases PERIPHERAL VASCULAR DISEASE-
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