Sprigle Stephen, Deshpande Yogesh
Georgia Institute of Technology, Atlanta, GA, United States.
Front Bioeng Biotechnol. 2022 Sep 30;10:1006767. doi: 10.3389/fbioe.2022.1006767. eCollection 2022.
Wheelchair cushion prescription often seeks to address tissue integrity in addition to other clinical indicators. Because hundreds of wheelchair cushion models are available, a benefit would result if cushions were classified in a more valid manner to help guide selection by clinicians and users. The objective of this research was to develop an approach to evaluate and classify wheelchair cushion performance with respect to pressure redistribution. Two anatomically-based buttock models were designed consisting of an elastomeric shell that models overall buttock form and a rigid substructure that abstracts load-bearing aspects of the skeleton. Model shapes were based upon elliptical and trigonometric equations, respectively. Two performance parameters were defined, pressure magnitude and pressure redistribution. The pressure magnitude parameter compared internal pressure values of the test cushion to a flat foam reference material, resulting in three classifications, superior, comparable, and inferior. Surface sensors were used to distinguish cushions with high, moderate or low pressure redistribution performance. Ten wheelchair cushions were evaluated by both models using two loads that represent a range of body weights expected for 41-43 cm wide cushions. A classification matrix is proposed using both models and performance parameters. Two cushions met criteria for the highest level of performance, and one cushion was deemed to have inadequate performance for therapeutic value. The proposed method has a sensitivity to discern differences, compatibility with different sized cushions, and a versatility in classification. As such, it stands as an improvement over existing classification approaches.
轮椅坐垫的处方除了考虑其他临床指标外,通常还旨在解决组织完整性问题。由于市面上有数百种轮椅坐垫型号,如果能以更有效的方式对坐垫进行分类,以帮助临床医生和使用者进行选择,将会带来益处。本研究的目的是开发一种方法,以评估和分类轮椅坐垫在压力再分布方面的性能。设计了两种基于解剖学的臀部模型,一种由模拟整体臀部形状的弹性体外壳和抽象骨骼承重方面的刚性子结构组成。模型形状分别基于椭圆方程和三角方程。定义了两个性能参数,即压力大小和压力再分布。压力大小参数将测试坐垫的内部压力值与平板泡沫参考材料进行比较,得出三个分类: superior( superior意为“优越的”,此处结合语境,可理解为“性能优越”)、 comparable(意为“相当的”,即“性能相当”)和 inferior(意为“较差的”,即“性能较差”)。使用表面传感器区分压力再分布性能高、中或低的坐垫。两种模型使用两种代表41 - 43厘米宽坐垫预期体重范围的负载对十个轮椅坐垫进行了评估。提出了一个使用两种模型和性能参数的分类矩阵。有两个坐垫符合最高性能水平标准,一个坐垫被认为治疗价值的性能不足。所提出的方法具有辨别差异的敏感性、与不同尺寸坐垫的兼容性以及分类的通用性。因此,它是对现有分类方法的一种改进。