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A numerical study to analyse the risk for pressure ulcer development on a spine board

机译:数值研究分析脊柱板上压力性溃疡发展的风险

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Background Spine boards are used to immobilise accident victims suspected of having spinal injury. Guidelines about the maximum time patients remain on the board are often exceeded and on occasions may lead to pressure ulcers. Etiological research has shown that two processes ultimately lead to pressure ulcers:"Ischemic damage" which takes several hours to initiate and "deformation damage" at high strains. The latter process is very quick and the first signs of cell damage are already evident within minutes. Thus in order to minimise the risk of pressure ulcer development during prolonged loading, a new soft-layered long spine board has been designed. Methods A subject specific numerical approach has been adopted to evaluate the prototype spine board in comparison to a conventional spine board, with reference to the estimated strains in the soft tissues adjacent to the sacrum in the supine position. The model geometry is derived from magnetic resonance images of three human volunteers in an unloaded situation. The loaded images are used to "tune" the material parameters of skin, fat and muscle. The prediction of the deformed contours on the soft-layered board is used to validate the model. Findings Comparison of the internal strains in muscle tissue near the spine showed that internal strains on the soft-layered board are reduced and maximum strains are considerably less than the threshold at which deformation damage is possible. By contrast, on the rigid spine board this threshold is exceeded in all cases. Interpretation The prototype comfort board is able to reduce the risk for deformation damage and thus reduces the risk of developing pressure ulcers.
机译:背景技术脊柱板用于固定怀疑患有脊髓损伤的事故受害者。通常会超出有关患者留在董事会上的最长时间的准则,有时可能会导致压疮。病因学研究表明,最终导致压疮的有两个过程:“缺血性损伤”需要数小时才能引发,高应变下的“变形损伤”。后者的过程非常快,并且细胞损伤的最初迹象已经在几分钟之内显现出来。因此,为了最大程度地减少长时间加载过程中发生压疮的风险,设计了一种新的软层长脊柱板。方法参照特定仰卧位the骨附近软组织中的应变估计值,采用特定主题的数值方法来评估原型脊柱板与常规脊柱板。该模型的几何形状是从三位处于空载状态的志愿者的磁共振图像得出的。加载的图像用于“调整”皮肤,脂肪和肌肉的材料参数。软层板上变形轮廓的预测用于验证模型。脊柱附近肌肉组织内部应变的比较结果表明,软层板上的内部应变降低了,最大应变大大低于可能发生变形破坏的阈值。相反,在所有情况下,在刚性脊柱板上都超过了该阈值。解释原型舒适板能够降低变形损坏的风险,从而降低发生压疮的风险。

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