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Importance of adequate pressure in compression therapy Basis for successful treatment

机译:成功治疗压缩治疗依据的足够压力的重要性

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Background The pressure exerted by a compression device on a part of the body corresponds to the dosage of the compression therapy. Therefore, the pressure course under compression materials should be investigated in different clinical situations. Material and methods Pressure measurements were carried out under different compression materials in lying, standing and walking positions within the framework of training, self-experimentation and in patients with venous leg ulcers. Results The results showed that the pressure varied considerably depending on the material used, the firmness of application, the local configuration (body position) and the time interval between applications. A loss of pressure occurred under each compression therapy, especially under inelastic short-stretch material, mainly due to movement and edema reduction. This pressure loss is decisive for the timing of dressing changes and a reason for the good tolerance of high-pressure levels in mobile patients. Conclusion Low pressures are particularly suitable for edema reduction. Hemodynamic effects require higher pressures (60-80 & x202f;mmHg). For this purpose, inelastic materials are preferred which enable lower pressures when lying down (40-60 & x202f;mmHg). As compression bandages are too loosely applied by many users, pressure indicators on bandages or adaptive bandages with templates are helpful to apply the material with the correct pressure. As a consequence of these findings it is postulated that, at least in studies comparing different compression media, pressure measurements should be carried out in the future, whereby the measuring point and body position should be documented.
机译:背景技术压缩装置在身体的一部分上施加的压力对应于压缩疗法的剂量。因此,应在不同的临床情况下调查压缩材料下的压力过程。材料和方法在培训,自我实验和静脉腿部溃疡患者框架内的不同压缩材料下进行压力测量。结果结果表明,压力随着所用材料,应用的坚固性,局部配置(机身位置)和应用之间的时间间隔而变化。在每个压缩疗法下发生的压力损失,特别是在非弹性短伸展材料下,主要是由于运动和水肿的减少。这种压力损失对于敷料变化的时间以及移动患者中高压水平的良好耐受性的原因是决定性的。结论低压特别适用于水肿还原。血流动力学效应需要更高的压力(60-80&x202f; mmhg)。为此目的,优选非弹性材料,其在躺下时能够降低压力(40-60&x202F; mmHg)。随着许多用户的压缩绷带太松散地应用于绷带或带模板的自适应绷带上的压力指示器有助于将材料用正确的压力施加。由于这些发现的结果,假设至少在比较不同的压缩介质的研究中,应在将来进行压力测量,由此应记录测量点和身体位置。

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