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首页> 外文期刊>Nursing Research and Practice >Spinal Cord Injury and Pressure Ulcer Prevention: Using Functional Activity in Pressure Relief
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Spinal Cord Injury and Pressure Ulcer Prevention: Using Functional Activity in Pressure Relief

机译:脊髓损伤和压疮预防:在缓解压力中使用功能活动

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Background. People with spinal cord injury (SCI) are at increased risk of pressure ulcers due to prolonged periods of sitting. Concordance with pressure relieving movements is poor amongst this population, and one potential alternative to improve this would be to integrate pressure relieving movements into everyday functional activities.Objectives.To investigate both the current pressure relieving behaviours of SCI individuals during computer use and the application of an ergonomically adapted computer-based activity to reduce interface pressure.Design.Observational and repeated measures design.Setting.Regional Spinal Cord Injury Unit.Participants.Fourteen subjects diagnosed with SCI (12 male, 2 female).Intervention.Comparing normal sitting to seated movements and induced forward reaching positions.Main Outcome Measures.Interface pressure measurements: dispersion index (DI), peak pressure index (PPI), and total contact area (CA). The angle of trunk tilt was also measured.Results.The majority of movements yielded less than 25% reduction in interface pressure compared to normal sitting. Reaching forward by 150% of arm length during an adapted computer activity significantly reduced DI (P<0.05), angle of trunk tilt (p<0.05), and PPI for both ischial tuberosity regions (P<0.001) compared to normal sitting.Conclusion.Reaching forward significantly redistributed pressure at the seating interface, as evidenced by the change in interface pressures compared to upright sitting.
机译:背景。脊髓损伤(SCI)的人由于长时间坐着而患压疮的风险增加。在这一人群中,与缓解压力运动的一致性很差,改善这一状况的一种可能的替代方法是将缓解压力运动整合到日常功能活动中。目的:研究SCI个人当前在计算机使用过程中的缓解压力行为以及应用符合人体工程学的计算机化活动以减轻界面压力设计,观察和重复测量设计设置区域脊髓损伤单位参与者14名被诊断患有SCI的受试者(男12例,女2例)干预正常坐与坐位比较主要结果界面压力测量:分散指数(DI),峰值压力指数(PPI)和总接触面积(CA)。结果:与正常坐姿相比,大多数动作所产生的界面压力降低幅度均不到25%。与正常坐姿相比,在两个坐骨结节区域,在适应的计算机活动中向前伸臂长度的150%均显着降低了DI(P <0.05),躯干倾斜角度(p <0.05)和PPI(P <0.001)。 。向前伸展会大大重新分配座椅接口处的压力,与直立就座相比,接口压力的变化就可以证明这一点。

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