Suppr超能文献

热力学刚性缓冲加载压头:一种用于在解剖学压缩条件下缓冲表面的臀部形状的温度和湿度测量系统。

Thermodynamic rigid cushion loading indenter: a buttock-shaped temperature and humidity measurement system for cushioning surfaces under anatomical compression conditions.

作者信息

Ferguson-Pell Martin, Hirose Hideyuki, Nicholson Graham, Call Evan

机构信息

Faculty of Rehabilitation Medicine, University of Alberta, Edmonton, Canada, T6G 2G4.

出版信息

J Rehabil Res Dev. 2009;46(7):945-56. doi: 10.1682/jrrd.2008.10.0142.

Abstract

A method is described for measuring the heat and water vapor dissipation characteristics of wheelchair cushions and seating systems while under simulated loading conditions. Thermal interaction between the body and seating surfaces can result in elevated tissue temperature and moisture build-up, which may increase the risk of pressure ulcers associated with prolonged ischemia or due to macerative damage. Both the materials and geometry of commercial seating systems are thought to influence the body-support surface microclimate. A thermodynamic rigid cushion loading indenter (TRCLI) has been developed to simulate the thermal and loading conditions of the body on seating surfaces. Results are reported for 32 commercially available wheelchair cushions. The results differentiate the cushions into clusters of comparable properties that offer the potential for classification of support surfaces based on their heat and water vapor dissipation performance. This study has shown that deducing the heat and water vapor dissipation characteristics of a seating system from material physical properties is of limited value because of the influences of particular design features of combinations of materials. Testing of individual products with the use of the TRCLI can, however, reliably differentiate wheelchair cushions by their ability to dissipate heat and water vapor.

摘要

本文描述了一种在模拟负载条件下测量轮椅坐垫和座椅系统热量及水汽消散特性的方法。身体与座椅表面之间的热相互作用会导致组织温度升高和水分积聚,这可能会增加因长时间局部缺血或浸渍损伤而引发压疮的风险。人们认为,商用座椅系统的材料和几何形状都会影响身体支撑表面的微气候。现已开发出一种热力学刚性坐垫加载压头(TRCLI),用于模拟身体在座椅表面的热和负载条件。报告了32种市售轮椅坐垫的测试结果。这些结果将坐垫分为具有可比特性的几类,这为根据支撑表面的热量和水汽消散性能对其进行分类提供了可能。这项研究表明,由于材料组合的特定设计特征的影响,从材料物理性能推断座椅系统的热量和水汽消散特性价值有限。然而,使用TRCLI对单个产品进行测试,可以根据其散热和散水汽的能力可靠地区分轮椅坐垫。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验