Yu Chung-Huang, Chou Tung-Yu, Chen Cheng-Huan, Chen Poyin, Wang Fu-Cheng
Department of Physical Therapy & Assistive Technology, National Yang-Ming University, No.155, Sec.2, Linong Street, Taipei 11221, Taiwan.
Department of Mechanical Engineering, National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei 10617, Taiwan.
Sensors (Basel). 2014 Aug 5;14(8):14235-52. doi: 10.3390/s140814235.
Pressure ulcers can be a fatal complication. Many immobile wheelchair users face this threat. Current passive and active cushions do reduce the incidence of pressure ulcers and they have different merits. We proposed an active approach to combine their advantages which is based on the concept that the interface pressure can be changed with different supporting shapes. The purpose of this paper is to verify the proposed approach. With practical applications in mind, we have developed a modular system whose support surface is composed by height-adjustable support elements. Each four-element module was self-contained and composed of force sensors, position sensors, linear actuators, signal conditioners, driving circuits, and signal processors. The modules could be chained and assembled together easily to form different-sized support surfaces. Each support element took up a 3 cm × 3 cm supporting area. The displacement resolution was less than 0.1 mm and the force sensor error was less than 1% in the 2000 g range. Each support element of the system could provide 49 N pushing force (408 mmHg over the 3 cm × 3 cm area) at a speed of 2.36 mm/s. Several verification tests were performed to assess the whole system's feasibility. Further improvements and clinical applications were discussed. In conclusion, this modularized system is capable of actively managing interface pressure in real time.
压疮可能是一种致命的并发症。许多行动不便的轮椅使用者面临这种威胁。目前的被动和主动坐垫确实能降低压疮的发生率,且它们各有优点。我们提出了一种主动方法,将它们的优势结合起来,其基于界面压力可随不同支撑形状而改变的概念。本文的目的是验证所提出的方法。考虑到实际应用,我们开发了一个模块化系统,其支撑表面由高度可调的支撑元件组成。每个四元件模块自成一体,由力传感器、位置传感器、线性致动器、信号调节器、驱动电路和信号处理器组成。这些模块可以轻松地链接和组装在一起,形成不同尺寸的支撑表面。每个支撑元件占据3厘米×3厘米的支撑面积。位移分辨率小于0.1毫米,在2000克范围内力传感器误差小于1%。系统的每个支撑元件能够以2.36毫米/秒的速度提供49牛的推力(在3厘米×3厘米的面积上为408毫米汞柱)。进行了几次验证测试以评估整个系统的可行性。还讨论了进一步的改进和临床应用。总之,这个模块化系统能够实时主动管理界面压力。