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Can Functional Electrical Stimulation for Pressure Ulcer Prevention reduce efficiently the Incidence of Deep-Tissue Injury?

机译:预防压力性溃疡的功能性电刺激疗法能否有效降低深层组织损伤的发生率?

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In the United States, 1.4 million people who rely on wheelchairs for mobility develop serious pressure ulcer (PU) at pressure areas such as ischium and sacrum due to prolonged sitting. Recently, functional electrical stimulation (FES) has been proposed as a means to prevent development of PU through the redistribution and the reduction of the internal stresses within the deep tissue of the buttock, which were achieved by the increase of the muscle thickness, particular in the gluteus maximus. However, rare information about how much reduction of the incidence of deep-tissue injury in the FES application for PU prevention are positively induced through the internal stress relief resulting from the alteration of the muscle thickness achieved by the FES is currently available. The objective of the current study was therefore to identify if the FES application may efficiently reduce the incidence of deep-tissue injury, by evaluating a degree of the internal stress relief through the alteration of the gluteus maximus muscle thickness using Finite Element (FE) analysis combined with MRI image analysis. Four FE models were created through 3D reconstruction model made from buttock-thigh MRI images, which were obtained in an actual sitting posture of a specific subject. The internal von Mises stresses within the gluteus maximus were computed and analyzed with alterations of the gluteus maximus muscle thickness considered in the current study. The results showed that the distributions of the high internal von Mises stresses within the gluteus maximus were gradually decreased with the increase of the gluteus maximus muscle thickness. However, the maximum von Mises stresses within the gluteus maximus were irregularly changed. The current study confirms that the internal von Mises stress relief effects of the FES application for PU prevention may have substantial benefits in terms of reduction of the incidence of the deep-tissue injury. It can be concluded that incorporating the FES system into a rehabilitation and treatment program for individuals who have sitting-related PU wounds may promote the healing progress while maintaining their mobility.
机译:在美国,由于长时间坐着,有140万人依靠轮椅出行,在坐骨和骨等压力部位出现严重的压疮(PU)。最近,功能性电刺激(FES)已被提议作为一种手段,通过增加臀部的肌肉厚度(特别是在肌肉中)来防止臀部深部组织内的重新分布和内部应力的减少,从而防止PU的发展。臀大肌。然而,目前尚无有关通过FES达到的肌肉厚度改变而产生的内部应力释放而积极地诱导FES预防PU中深层组织损伤发生率降低的罕见信息。因此,本研究的目的是通过使用有限元(FE)分析通过改变臀大肌厚度来评估内应力缓解程度,从而确定FES应用是否可以有效降低深层组织损伤的发生率。结合MRI图像分析。通过由臀部-大腿MRI图像制成的3D重建模型创建了四个有限元模型,这些模型是在特定对象的实际坐姿中获得的。计算并分析了臀大肌内的内部von Mises应力,并分析了当前研究中臀大肌厚度的变化。结果表明,随着臀大肌厚度的增加,臀大肌内von Mises高应力的分布逐渐减小。但是,臀大肌内最大的von Mises应力不规则地变化。目前的研究证实,FES应用预防PU的内部von Mises缓解压力的作用在减少深层组织损伤的发生方面可能具有实质性的益处。可以得出结论,将FES系统纳入针对与坐位相关的PU伤口的个人的康复和治疗计划中,可以促进愈合进程,同时保持其活动能力。

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