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一种用于深部组织损伤恶化的新型大鼠模型的建立。

Establishment of a novel rat model for deep tissue injury deterioration.

作者信息

Sari Yunita, Minematsu Takeo, Huang Lijuan, Noguchi Hiroshi, Mori Taketoshi, Nakagami Gojiro, Nagase Takashi, Oe Makoto, Sugama Junko, Yoshimura Kotaro, Sanada Hiromi

机构信息

Department of Gerontological Nursing/Wound Care Management, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan; Department of Nursing, Jenderal Soedirman University, Purwokerto, Indonesia.

出版信息

Int Wound J. 2015 Apr;12(2):202-9. doi: 10.1111/iwj.12082. Epub 2013 May 7.

Abstract

Deep tissue injuries (DTIs) can become significant problems because of their rapid deterioration into deep pressure ulcers. Presently, no animal model of DTI deterioration has been developed. By concentrating pressure and shear stress in deep tissues while minimising pressure and shear stress in the overlying skin, we produced an effective rat model of DTI deterioration. Two-dimensional finite element method (FEM) simulated the distribution of pressure and shear stress under several pressure-loading conditions. FEM showed that concentrated shear stress in deep tissue with minimum shear stress in the overlying skin could be created by using a prominence and a cushion, respectively. On the basis of the results of FEM analysis, we selected suitable conditions for testing the rat DTI deterioration model. The compressed area was macroscopically observed until day 13, and histopathologic analysis via haematoxylin and eosin (H&E) staining was performed on days 3, 7 and 13. H&E staining showed that the distribution of tissue damage was similar to the predicted FEM results. Deep ulceration and tissue damage extending from deep tissues to the overlying skin and surrounding tissues were observed in the DTI deterioration model, which are similar to the clinical manifestations of DTI deterioration. In conclusion, a representative DTI deterioration model was established by concentrating high shear stress in deep tissues while minimising shear stress in the overlying skin. This model will allow a better understanding of the mechanisms behind DTI deterioration and the development of preventative strategies.

摘要

深部组织损伤(DTIs)因其迅速恶化为深部压疮而可能成为严重问题。目前,尚未建立DTI恶化的动物模型。通过在深部组织中集中压力和剪切应力,同时将覆盖皮肤中的压力和剪切应力降至最低,我们建立了一种有效的DTI恶化大鼠模型。二维有限元法(FEM)模拟了几种压力加载条件下压力和剪切应力的分布。有限元法表明,分别使用突出物和垫子可以在深部组织中产生集中的剪切应力,而覆盖皮肤中的剪切应力最小。基于有限元分析结果,我们选择了合适的条件来测试大鼠DTI恶化模型。在第13天之前宏观观察压缩区域,并在第3、7和13天通过苏木精和伊红(H&E)染色进行组织病理学分析。H&E染色显示组织损伤的分布与预测的有限元结果相似。在DTI恶化模型中观察到深部溃疡以及从深部组织延伸至覆盖皮肤和周围组织的组织损伤,这与DTI恶化的临床表现相似。总之,通过在深部组织中集中高剪切应力,同时将覆盖皮肤中的剪切应力降至最低,建立了一个具有代表性的DTI恶化模型。该模型将有助于更好地理解DTI恶化背后的机制以及制定预防策略。

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