Spine Research Institute, The Ohio State University, Columbus, OH, USA.
Department of Integrated Systems Engineering, The Ohio State University, Columbus, OH, USA.
Ergonomics. 2020 Apr;63(4):505-521. doi: 10.1080/00140139.2020.1727023. Epub 2020 Feb 17.
The objectives of this study were to quantify loads imposed upon the lumbar spine while lifting/lowering with one versus two hands and to create guidelines for one-handed lifting/lowering that are protective of the lower back. Thirty subjects (15 male, 15 female) performed one- and two-handed exertions in a laboratory, lifting from/lowering to 18 lift origins/destinations using medicine balls of varying masses. An electromyography-assisted model predicted peak spinal loads, which were related to tissue tolerance limits to create recommended weight limits. Compared to two-handed exertions, one-handed exertions resulted in decreased spinal compression and A/P shear loading ( < 0.001) but increased lateral shear ( < 0.001). Effects were likely driven by altered moment exposures attributable to altered torso kinematics. Differences between spinal loads for one- versus two-handed exertions were influenced by asymmetry ( < 0.001) and amplified at lower lift origin/destination heights, lower object masses and larger horizontal distances between the body and the load ( < 0.001). A biomechanical model was utilised to compare spinal loading for one versus two-handed lifting/lowering. Spinal loads in compression and A/P shear were reduced for one-handed relative to two-handed exertions. As current lifting guidelines cannot appropriately be applied to one-handed scenarios, one-handed weight limits protecting the lower back are presented herein. LBD: low back disorder, EMG: electromyography, A/P: anterior/posterior, MVC: maximum voluntary contraction.
本研究的目的是量化单手和双手提起/放下时对腰椎施加的负荷,并制定保护下背部的单手提起/放下指南。30 名受试者(15 名男性,15 名女性)在实验室中进行了单手和双手的用力,使用不同质量的药球从 18 个举重起源/目的地提起/放下。肌电图辅助模型预测了峰值脊柱负荷,这些负荷与组织耐受极限相关,以创建推荐的重量限制。与双手用力相比,单手用力导致脊柱压缩和前后剪切加载减少(<0.001),但侧向剪切增加(<0.001)。这些影响可能是由于躯干运动学改变导致的力矩暴露改变所致。单手与双手用力之间的脊柱负荷差异受不对称性(<0.001)的影响,在较低的举重起源/目的地高度、较低的物体质量和身体与负载之间较大的水平距离时放大(<0.001)。利用生物力学模型比较单手和双手提起/放下时的脊柱负荷。与双手用力相比,单手用力时脊柱的压缩和前后剪切负荷降低。由于当前的举重指南不能适用于单手情况,因此本文提出了保护下背部的单手举重限制。LBD:下背部疾病,EMG:肌电图,A/P:前后,MVC:最大自主收缩。