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Microstructural analysis of deformation-induced hypoxic damage in skeletal muscle

机译:变形引起的骨骼肌缺氧损伤的微观结构分析

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摘要

Deep pressure ulcers are caused by sustained mechanical loading and involve skeletal muscle tissue injury. The exact underlying mechanisms are unclear, and the prevalence is high. Our hypothesis is that the aetiology is dominated by cellular deformation (Bouten et al. in Ann Biomed Eng 29:153–63, 2001; Breuls et al. in Ann Biomed Eng 31:1357–364, 2003; Stekelenburg et al. in J App Physiol 100(6):1946–954, 2006) and deformation-induced ischaemia. The experimental observation that mechanical compression induced a pattern of interspersed healthy and dead cells in skeletal muscle (Stekelenburg et al. in J App Physiol 100(6):1946–954, 2006) strongly suggests to take into account the muscle microstructure in studying damage development. The present paper describes a computational model for deformation-induced hypoxic damage in skeletal muscle tissue. Dead cells stop consuming oxygen and are assumed to decrease in stiffness due to loss of structure. The questions addressed are if these two consequences of cell death influence the development of cell injury in the remaining cells. The results show that weakening of dead cells indeed affects the damage accumulation in other cells. Further, the fact that cells stop consuming oxygen after they have died, delays cell death of other cells.
机译:深压性溃疡是由持续的机械负荷引起的,并涉及骨骼肌组织损伤。确切的潜在机制尚不清楚,并且患病率很高。我们的假设是,病因主要由细胞变形引起(Bouten等人,Ann Biomed Eng 29:153-63,2001; Bruels等人,Ann Biomed Eng 31:1357-364,2003; Stekelenburg等人,J App Physiol 100(6):1946–954,2006)和变形诱发的缺血。机械压缩在骨骼肌中散布着健康细胞和死亡细胞的模式的实验观察结果(Stekelenburg等人,J App Physiol 100(6):1946–954,2006)强烈建议在研究损伤时要考虑到肌肉的微观结构发展。本文描述了骨骼肌组织中变形引起的缺氧性损伤的计算模型。死细胞停止消耗氧气,并被认为由于结构损失而使刚度降低。解决的问题是细胞死亡的这两种后果是否会影响其余细胞中细胞损伤的发展。结果表明,死细胞的衰弱确实会影响其他细胞的损伤积累。此外,细胞死亡后停止消耗氧气的事实延迟了其他细胞的细胞死亡。

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  • 来源
    《Biomechanics and Modeling in Mechanobiology 》 |2008年第4期| 277-284| 共8页
  • 作者单位

    Department of Biomedical Engineering Eindhoven University of Technology P.O. Box 513 5600 MB Eindhoven The Netherlands;

    Department of Biomedical Engineering Eindhoven University of Technology P.O. Box 513 5600 MB Eindhoven The Netherlands;

    Department of Biomedical Engineering Eindhoven University of Technology P.O. Box 513 5600 MB Eindhoven The Netherlands;

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