首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Skin stiffness determined from occlusion of a horizontally running microvessel in response to skin surface pressure: a finite element study of sacral pressure ulcers
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Skin stiffness determined from occlusion of a horizontally running microvessel in response to skin surface pressure: a finite element study of sacral pressure ulcers

机译:响应皮肤表面压力的水平运行微血管的闭塞确定皮肤刚度:骶骨压力溃疡的有限元研究

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摘要

Pressure ulcers occur following sustained occlusion of microvessels at bony prominences under skin surface pressure (SSP). However, the mechanical conditions of the surrounding soft tissue leading to microvascular occlusion are not fully understood. This study determined the stiffness of homogenized skin with microvasculature at the sacrum that occludes microvessels at an SSP of 10 kPa (consistent with a standard mattress) and recovers from occlusion at 5 kPa (consistent with a pressure-redistribution mattress). We conducted two-dimensional finite element analyses under plane stress and plane strain conditions to determine the stiffness of the skin. The results for plane stress conditions show that the microvessel was occluded with a Young's modulus of 23 kPa in response to an SSP of 10 kPa at the center of the sacrum and that the circulation recovered following a reduction in the SSP to 5 kPa. The resulting Young's modulus is consistent with reported data. Our study indicates that the critical value of the SSP for microvascular occlusion is determined not only by the stiffness of homogenized skin with microvasculature but also by the intraluminal pressure, microvascular wall stiffness, and body support conditions.
机译:在皮肤表面压力(SSP)下的骨骼突出下,在微孔锁定后发生压力溃疡。然而,导致微血管闭塞的周围软组织的机械状况尚不完全理解。这项研究确定了在骶骨处的微血管固化的均质皮肤僵硬,其在10kPa(与标准床垫一致)的SSP处闭塞微血管,并在5kPa(与压力再分配床垫一致)恢复。我们在平面应力和平面应变条件下进行了二维有限元分析,以确定皮肤的刚度。平面应力条件的结果表明,响应于骶骨中心的10kPa的SSP,微血管的杨氏模量堵塞,响应于骶骨的中心的SSP,并且在SSP还原后回收循环至5kPa。由此产生的杨氏模量与报告的数据一致。我们的研究表明,微血管闭塞的SSP的临界值不仅由具有微血管系统的均质皮肤的刚度而不是腔内压力,微血管壁刚度和身体支撑条件来确定。

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