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搬运负荷的高低起伏:对健康成年人在负荷增加的手动搬运过程中多节段脊柱角度的脊柱姿势监测分析

The highs and lows of lifting loads: SPM analysis of multi-segmental spine angles in healthy adults during manual handling with increased load.

作者信息

Proud Jasmine K, Garofolini Alessandro, Mudie Kurt L, Lai Daniel T H, Begg Rezaul K

机构信息

Institute for Health and Sport (IHES), Victoria University, Melbourne, VIC, Australia.

Land Division, Defence Science and Technology (DST), Melbourne, VIC, Australia.

出版信息

Front Bioeng Biotechnol. 2024 Jan 25;12:1282867. doi: 10.3389/fbioe.2024.1282867. eCollection 2024.

Abstract

Manual handling personnel and those performing manual handling tasks in non-traditional manual handling industries continue to suffer debilitating and costly workplace injuries. Smart assistive devices are one solution to reducing musculoskeletal back injuries. Devices that provide targeted assistance need to be able to predict when and where to provide augmentation via predictive algorithms trained on functional datasets. The aim of this study was to describe how an increase in load impacts spine kinematics during a ground-to-platform manual handling task. Twenty-nine participants performed ground-to-platform lifts for six standardised loading conditions (50%, 60%, 70%, 80%, 90%, and 100% of maximum lift capacity). Six thoracic and lumbar spine segments were measured using inertial measurement units that were processed using an attitude-heading-reference filter and normalised to the duration of the lift. The lift was divided into four phases weight-acceptance, standing, lift-to-height and place-on-platform. Statistical significance of sagittal angles from the six spine segments were identified through statistical parametric mapping one-way analysis of variance with repeated measures and paired t-tests. Two regions of interest were identified during a period of peak flexion and a period of peak extension. There was a significant increase in spine range of motion and peak extension angle for all spine segments when the load conditions were increased ( < 0.001). There was a decrease in spine angles (more flexion) during the weight acceptance to standing phase at the upper thoracic to upper lumbar spine segments for some condition comparisons. A significant increase in spine angles (more extension) during the place-on-platform phase was seen in all spine segments when comparing heavy loads (>80% maximum lift capacity, inclusive) to light loads (<80% maximum lift capacity) ( < 0.001). The 50%-70% maximum lift capacity conditions being significantly different from heavier load conditions is representative that the kinematics of a lift do change consistently when a participant's load is increased. The understanding of how changes in loading are reflected in spine angles could inform the design of targeted assistance devices that can predict where and when in a task assistance may be needed, possibly reducing instances of back injuries in manual handling personnel.

摘要

从事体力搬运工作的人员以及在非传统体力搬运行业中执行体力搬运任务的人员,仍在遭受使人衰弱且代价高昂的工作场所伤害。智能辅助设备是减少肌肉骨骼背部损伤的一种解决方案。能够提供有针对性协助的设备需要能够通过在功能数据集上训练的预测算法,预测何时何地提供增强助力。本研究的目的是描述在从地面到平台的体力搬运任务中,负荷增加如何影响脊柱运动学。29名参与者针对六种标准化负荷条件(最大举重能力的50%、60%、70%、80%、90%和100%)进行从地面到平台的举重操作。使用惯性测量单元测量六个胸腰椎节段,这些数据通过姿态航向参考滤波器进行处理,并根据举重持续时间进行归一化。举重过程分为四个阶段:负重接受、站立、举升至高度和放置在平台上。通过统计参数映射、重复测量的单因素方差分析和配对t检验,确定六个脊柱节段矢状角的统计学显著性。在屈曲峰值期和伸展峰值期确定了两个感兴趣区域。当负荷条件增加时,所有脊柱节段的脊柱运动范围和伸展峰值角度均显著增加(<0.001)。在某些条件比较中,上胸段至上腰段在从负重接受阶段到站立阶段,脊柱角度减小(更多屈曲)。当比较重负荷(>最大举重能力的80%,含80%)和轻负荷(<最大举重能力的80%)时,所有脊柱节段在放置在平台阶段的脊柱角度均显著增加(更多伸展)(<0.001)。最大举重能力50%-70%的条件与较重负荷条件存在显著差异,这表明当参与者的负荷增加时,举重的运动学确实会持续变化。了解负荷变化如何反映在脊柱角度上,可为有针对性的辅助设备设计提供参考,这些设备可以预测在任务中的何处以及何时可能需要协助,从而可能减少体力搬运人员背部受伤的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8307/10850312/2e876c7749e9/fbioe-12-1282867-g001.jpg

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