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Carrying and spine loading

机译:背负和脊柱负荷

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摘要

The advantages and disadvantages of different methods of carrying objects on spine loading are still not fully understood. Previous studies have either examined the effects of carrying using physiological measures or examined isolated spine segments using biomechanical models. Additionally, most studies have been restricted to only a small number of carrying conditions. Very few studies have attempted to examine the various factors influencing spine loading together. To improve understanding of interacting factors on carrying, this study assessed the lumbar spine loads of 16 subjects as they assumed six styles of carrying at two weight levels and two activity levels (walking vs. standing). Concurrent with each trial, a subject-specific biomechanical model was used to assess spine forces over the full lumbar spine. Most carrying methods in the trials resulted in relatively low levels of spine loading. Anterior/posterior (A/P) shear loading was the only spine-loading dimension that reached biomechanically meaningful levels. Two carrying conditions, with bins carried in front of the body, significantly increased A/P shear compared with other carrying styles. This increase appeared to be due to the greater moment arms occurring in these conditions. Many of the other carrying styles produced A/P shears that were similar to those observed when carrying nothing at all. Of all the tasks, the backpack carry characteristically produced especially low spine loads. The findings of the study suggest that to achieve optimal carrying in terms of spine loading, loads should be positioned close to the body, even when carrying relatively light loads. Practitioner Summary: The risks carrying poses to the spine are still not fully understood. This study analysed forces on the lumbar spine for various realistic carrying styles. The findings indicate methods of carrying that increase the relative risk to the lumbar spine and others that have a minimal effect at the weights tested.
机译:仍然没有完全理解在脊柱负荷下携带物体的不同方法的优缺点。以前的研究要么使用生理学方法检查了携带的影响,要么使用生物力学模型检查了孤立的脊柱节段。另外,大多数研究仅限于少数携带条件。很少有研究试图检验影响脊柱负荷的各种因素。为了更好地理解携带的相互作用因素,本研究评估了16位受试者的腰椎负重,因为他们假设在两种体重水平和两种活动水平(行走与站立)下的六种携带方式。在每次试验的同时,使用特定于受试者的生物力学模型评估整个腰椎的脊柱力量。该试验中大多数携带方法导致脊柱负荷相对较低。前/后(A / P)剪切负荷是达到生物力学意义的唯一脊柱负荷尺寸。与其他携带方式相比,两种携带条件(将垃圾箱携带在身体前面)显着提高了A / P剪切力。这种增加似乎是由于在这些情况下发生的力矩臂更大。许多其他携带方式产生的A / P剪切力与根本不携带任何东西时观察到的相似。在所有任务中,背包都具有特征性的特别低的脊椎负荷。研究的结果表明,要实现最佳的脊柱负荷,即使负荷较轻,负荷也应靠近身体。从业者摘要:尚不完全了解脊柱姿势带来的风险。这项研究分析了各种现实携带方式对腰椎的作用力。研究结果表明,这种携带方法会增加腰椎和其他对测试重量影响最小的相对风险。

著录项

  • 来源
    《Ergonomics》 |2013年第11期|1722-1732|共11页
  • 作者单位

    Biodynamics Laboratory, The Ohio State University, Columbus, OH 43210, USA;

    Department of Neurological Surgery, The Ohio State University, Columbus, OH 43210, USA;

    Biodynamics Laboratory, The Ohio State University, Columbus, OH 43210, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carry; low back disorders; spine biomechanics; manual materials handling;

    机译:携带;下背部疾病;脊柱生物力学人工物料搬运;

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