La Trobe Rural Health School, La Trobe University, Bendigo, Australia.
La Trobe Rural Health School, La Trobe University, Bendigo, Australia.
Appl Ergon. 2019 Feb;75:243-249. doi: 10.1016/j.apergo.2018.11.004. Epub 2018 Nov 17.
This study quantified the biomechanical (movements and forces) and physiological (energy expenditure) demands of postal delivery performed with electrically assisted bicycles (EABs). Ten postal workers and 10 recreational athletes performed three simulated postal tasks (simulated mail delivery circuit, delivery distance [close vs. far], and 3-min stationary cycling) while carrying 0, 16 and 32 kg. Physiological (energy expenditure) and biomechanical (internal and external forces and joint angles) responses were calculated. Energy expenditure (10-20%; p < 0.05) and power output (30-44%; p < 0.05) increased with increasing mail loads. Ground reaction force increased (∼10%) for the far delivery distance, but joint reaction forces were unchanged. Lower hip flexion (p < 0.01), less hip abduction (p < 0.01) and larger spine anterior flexion (p < 0.01) were observed for the far delivery distance. Joint forces were not affected by the mail load transported (0-32 kg) or distance from the mailbox (close vs far). EABs can provide a suitable transportation method to assist mail delivery in terms of energy expenditure reduction.
本研究量化了使用电动自行车(EAB)进行邮递工作时的生物力学(运动和力量)和生理(能量消耗)需求。10 名邮递员和 10 名休闲运动员在携带 0、16 和 32 公斤的情况下,完成了三个模拟邮递任务(模拟邮件投递回路、投递距离(近和远)和 3 分钟固定自行车骑行)。计算了生理(能量消耗)和生物力学(内部和外部力量以及关节角度)反应。随着邮件负荷的增加,能量消耗(10-20%;p<0.05)和功率输出(30-44%;p<0.05)增加。对于远距离投递,地面反作用力增加(约 10%),但关节反作用力不变。对于远距离投递,观察到较低的髋关节屈曲(p<0.01)、较少的髋关节外展(p<0.01)和更大的脊柱前屈(p<0.01)。关节力不受运输的邮件负荷(0-32 公斤)或邮箱距离(近或远)的影响。EAB 可以提供一种合适的运输方式,以减少能量消耗,从而辅助邮件投递。