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Identification of Design Requirements for Ergonomic Long Spinal Board Using Quality Function Deployment (QFD)

机译:使用质量功能展开(QFD)识别符合人体工程学的长脊椎板的设计要求

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Emergency Medical Services (EMS) is a basic medical acts carried to an accident victim with the purpose of sustaining life and preventing a decline in body condition before the victim finally getting further treatment from medical personnel. One evacuation tool of first aid commonly used is Long Spinal Board (LSB). This tool is set up as an emergency stretcher boards made from wood or polymer with a flat surface that is used to perform the evacuation of the injured spinal cord. The basic principle of the LSB use is to immobilize the position of the spine so that the secondary injury on the spine due to swing, clash, or shocks that occurred during the evacuation process can be minimized. However, the existing LSB has several disadvantages, both in terms of user comfort, and also the effectiveness and efficiency of the evacuation process when done. A recent study found the LSB use can cause pain, discomfort, and respiratory disorders to the patients. Furthermore, the LSB can blockage the flow of oxygen in the tissue capillaries at the placement of strap. Therefore, it is important to improve the design of the LSB with the aims to achieve mobility and better equipment compatibility when used, so that the evacuation process can be done more effectively, efficiently and safely. This study identifies the design requirements of ergonomic LSB using Quality Function Deployment (QFD). QFD is an effective design method to integrate ergonomics needs and comfort into LSB design because it explicitly addresses the translation of customer requirements into engineering characteristics. Preliminary survey was conducted through direct observation of the actual use of LSB that exists today and interviews with volunteers from the Indonesian Red Cross of West Sumatera. Data gathered was translated into questionnaire and answered by 47 participants from medics, Red Cross, Ambulance Unit Medical Officer and rescue team of Padang, West Sumatera. Then it was clarified and used in the House of Quality matrix. The QFD analysis of the LSB revealed that the selection of LSB main board materials, the application of LSB strap systems, as well as the addition of LSB features were receiving the highest overall weighting, which means that improving the design of those criteria would lead to higher customer satisfaction.
机译:紧急医疗服务(EMS)是为事故受害者提供的一种基本医疗行为,目的是在受害者最终从医务人员处接受进一步治疗之前维持生命并防止身体状况下降。常用的一种急救疏散工具是长脊椎板(LSB)。该工具设置为紧急担架板,该担架板由木材或聚合物制成,表面平坦,可用于撤离受伤的脊髓。使用LSB的基本原理是固定脊柱的位置,以使因疏散过程中发生的摆动,碰撞或震动引起的脊柱继发伤害最小化。然而,现有的LSB在用户舒适性以及完成后的疏散过程的有效性和效率方面均具有若干缺点。最近的一项研究发现,使用LSB会导致患者疼痛,不适和呼吸道疾病。此外,LSB可以在绑带放置时阻塞组织毛细血管中的氧气流动。因此,重要的是要改进LSB的设计,以在使用时实现机动性和更好的设备兼容性,以便可以更有效,高效和安全地进行疏散过程。本研究使用质量功能展开(QFD)来确定符合人体工程学的LSB的设计要求。 QFD是一种有效的设计方法,可将人体工程学的需求和舒适性整合到LSB设计中,因为它明确解决了将客户需求转化为工程特征的问题。通过直接观察今天存在的LSB的实际用途并与印度尼西亚西苏门答腊红十字会的志愿者进行了采访,进行了初步调查。收集到的数据被转换成问卷,并由来自西苏门答腊巴东的医务人员,红十字会,救护队医务人员和救援队的47名参与者回答。然后将其澄清并在“质量屋”矩阵中使用。对LSB的QFD分析显示,LSB主板材料的选择,LSB皮带系统的应用以及LSB功能的添加获得了最高的总体权重,这意味着改进这些标准的设计将导致更高的客户满意度。

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