Impact of Self-Contained Breathing Apparatus (SCBA) Weights on Firefighter's Kinematics During Simulated Firefighter Tasks.

Susan Xu, Rachel Jones, Neethan Ratnakumar, Kubra Akbas, Jeff Powell, Ziqing Zhuang, Xianlian Zhou
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Abstract

Firefighters face a multitude of hazards in their line of duty, with overexertion being one of the foremost causes of injuries or fatalities. This high risk is often exacerbated by the burden of carrying a heavy self-contained breathing apparatus (SCBA). This study aims to explore the impact of SCBA weight on firefighters' musculoskeletal joint movements. Six firefighters participated in this study, performing four simulated firefighting tasks under three different SCBA weight conditions. A hybrid inverse kinematics approach was employed to analyze the kinematic data from two participants. The results revealed a notable decrease in lumbar range of motion (ROM) as the weight increased, particularly noticeable during hose advancement and stair climbing tasks. Conversely, an increase in hip ROM during stair climbing was observed, suggesting a compensatory response to reduced spinal flexibility. These findings underscore the critical need to understand the implications of turnout gear and SCBA weight to enhance firefighter performance and reduce the risk of injury.

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自给式呼吸器(SCBA)重量对模拟消防员任务中消防员运动学的影响。
消防员在执行任务时面临着多种危险,而过度疲劳是造成伤亡的主要原因之一。携带沉重的自给式呼吸器(SCBA)往往会加剧这种高风险。本研究旨在探讨 SCBA 重量对消防员肌肉骨骼关节运动的影响。六名消防员参与了这项研究,在三种不同的 SCBA 重量条件下执行了四项模拟消防任务。研究人员采用混合逆运动学方法分析了两名参与者的运动学数据。结果显示,随着重量的增加,腰部运动范围(ROM)明显减小,在水带推进和爬楼梯任务中尤为明显。相反,在爬楼梯的过程中,髋关节的活动范围却有所增加,这表明脊柱灵活性降低是一种代偿反应。这些发现强调了了解消防装备和 SCBA 重量对提高消防员工作表现和降低受伤风险的重要意义。
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Exploring Intraoperative Cognitive Biases in Cardiac Surgery Teams. Impact of Self-Contained Breathing Apparatus (SCBA) Weights on Firefighter's Kinematics During Simulated Firefighter Tasks. 3D Numerical Simulation for Thermal Protection of Phase Change Material-Integrated Firefighters' Turnout Gear. Biomechanical Modeling and 3D Simulation of Firefighting Tasks.
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