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Effect of Same-Sided and Cross-Body load carriage on 3D Back Shape in Young Adults

机译:同侧面和跨体重携线对年轻成人3D背体的影响

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Regular carriage of heavy loads such as backpacks, satchels and mailbags results in a variety of acute medical problems and increased potential for back injury. There is a paucity of information about the specific changes in back posture that occur in response to asymmetrical loading. The purpose of this study was to examine the changes in back shape that occurred in response to asymmetrical load carriage, either on one shoulder (same-side) or across the body (cross-body), in healthy young adults. Methods: A convenience sample of 21 physiotherapy students randomly performed three trials (unloaded, same-side loaded, cross-body loaded) in standing with a 15% body load. The Microscribe 3DX digitiser (Immersion Group Ltd) recorded the three dimensional coordinates of 15 Key anatomical landmarks on the back in the three conditions. Results: A one-way ANOVA with repeated measures and post-hoc tests was implemented to highlight statistical differences in the data collected (p<0.05). Significant differences were found in the x, y and z coordinates of the anatomical landmarks in the upper back between unloaded and loaded conditions. Results demonstrated significantly less impact on spinal posture from cross-body loading as compared to same-sided loading. Conclusion: This study confirms that there are significant three-dimensional changes in back shape in response to asymmetrical loading. Further work is needed to evaluate the optimal carriage type and maximal body load that results in the least spinal impact and injury potential in young adults.
机译:经常运输重载,如背包,挎包和邮袋,导致各种急性医学问题和后损伤的潜力增加。有关于响应于不对称负载而发生的背部姿势的具体变化的信息。本研究的目的是检查响应于不对称负载托架的背形状的变化,无论是在一个肩部(同一侧)还是穿过身体(跨体),在健康的年轻人身上。方法:21个物理治疗学生的便利性样本随机进行三次试验(卸载,同侧装载,跨体装载),站立15%的体重。微谱3DX DigIender(浸入集团Ltd)记录了三个条件下背部15个关键解剖标志的三维坐标。结果:实施了具有重复措施和后期检验的单向ANOVA,以突出收集数据的统计差异(P <0.05)。在卸载和加载条件下的上背部的解剖学地标的X,Y和Z坐标中发现了显着差异。结果表明,与横向荷载量相比,脊柱姿势的影响显着较低。结论:本研究证实,响应于不对称负载,对背形状有显着的三维变化。需要进一步的工作来评估最佳的托架式和最大体重,导致年轻成年人的脊髓抗冲击和损伤潜力。

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