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首页> 外文期刊>Journal of bodywork and movement therapies >Lumbopelvic muscle activation patterns in three stances under graded loading conditions: Proposing a tensegrity model for load transfer through the sacroiliac joints
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Lumbopelvic muscle activation patterns in three stances under graded loading conditions: Proposing a tensegrity model for load transfer through the sacroiliac joints

机译:分级负荷条件下三种姿势的腰骨盆肌激活模式:提出通过se关节负荷转移的张力模型

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Purpose: According to the conventional arch model of the pelvis, stability of the sacroiliac joints may require a predominance of form and force closure mechanisms: the greater the vertical shear force at the sacroiliac joints, the greater the reliance on self-bracing by horizontally or obliquely oriented muscles (such as the internal oblique). But what happens to the arch model when a person stands on one leg? In such cases, the pelvis no longer has imposts, leaving both the arch, and the arch model theory, without support. Do lumbopelvic muscle activation patterns in one-legged stances under load suggest compatibility with a different model? This study compares lumbopelvic muscle activation patterns in two-legged and one-legged stances in response to four levels of graded trunk loading in order to further our understanding the stabilization of the sacroiliac joints. Methods: Thirty male subjects experienced four levels of trunk loading (0%, 5%, 10% and 15% of body weight) by holding a bucket at one side, at three conditions: 1) two-legged standing with the bucket in the dominant hand, 2) ipsilateral loading: one-legged standing with the bucket in the dominant hand while using the same-side leg, and 3) contralateral loading: one-legged standing using the same leg used in condition 2, but with the bucket in the non-dominant hand. During these tasks, EMG signals from eight lumbopelvic muscles were collected. ANOVA with repeated design was performed on normalized EMG's to test the main effect of load and condition, and interaction effects of load by condition. Results: Latissimus dorsi and erector spinae muscles showed an antagonistic pattern of activity toward the direction of load which may suggest these muscles as lateral trunk stabilizers. Internal oblique muscles showed a co-activation pattern with increasing task demand, which may function to increase lumbopelvic stability (P<0.05). No unilateral pattern of the internal obliques was observed during all trials. Conclusions: Our results suggest that the lumbopelvic region uses a similar strategy for load transfer in both double and single leg support positions which is not compatible with the arch analogy. Our findings are more consistent with a suspensory system (wire-spoke wheel model). If our proposed model holds true, the pelvic ring can only be integrated by adjusting tension in the spokes and by preserving rim integrity or continuity. Thus, we propose that in order to restore tension integrity throughout the pelvic ring, efforts to unlock restrictions, muscular correction of positional faults and lumbopelvic or even respiratory exercises following sacroiliac joint dysfunctions must be taken into consideration. Our hypothetical model may initiate thinking and act as a guide to future work based on a biomechanical approach to the problem of sacroiliac joint dysfunction.
机译:目的:根据传统的骨盆弓模型,stability关节的稳定性可能需要主要的形状和力闭合机制:the关节的垂直剪切力越大,依靠水平或垂直自支撑的依赖性就越大。倾斜的肌肉(例如内部斜肌)。但是,当一个人站在一条腿上时,足弓模型会怎样?在这种情况下,骨盆不再具有假牙,既没有牙弓,也没有牙弓模型理论支持。在负荷下单腿姿势的腰盆肌激活模式是否暗示与其他模型兼容?这项研究比较了四级梯度躯干负荷对两腿和单腿姿势的腰盆肌激活模式的影响,以进一步了解understanding关节的稳定性。方法:30名男性受试者在以下三种情况下,一侧握着水桶,经历了四个水平的躯干负荷(分别为体重的0%,5%,10%和15%):1)两脚站立,水桶在优势手,2)同侧负载:使用同侧腿时,主腿在水桶中单腿站立,以及3)对侧负载:在条件2中使用但与水桶相同的腿,单腿站立在非主导的手中。在这些任务中,收集了来自8个腰盆肌的EMG信号。对归一化的肌电图进行重复设计的方差分析,以测试载荷和条件的主要影响以及载荷与条件之间的相互作用。结果:背阔肌和竖脊肌对负荷的方向表现出拮抗作用,这表明这些肌肉可以作为侧躯干稳定器。内斜肌显示出伴随任务需求增加的共激活模式,这可能起到增加腰椎骨盆稳定性的作用(P <0.05)。在所有试验中均未观察到内斜肌的单侧图案。结论:我们的结果表明腰部骨盆区域在双腿和单腿支撑位置使用相似的策略进行负荷转移,这与弓类推法不兼容。我们的发现与悬架系统(钢丝轮模型)更加一致。如果我们提出的模型成立,则只能通过调节辐条中的张力并保持轮缘的完整性或连续性来整合骨盆环。因此,我们建议,为了恢复整个骨盆环的张力完整性,必须考虑解锁限制,位置缺陷的肌肉矫正以及sa关节功能障碍后腰椎甚至呼吸运动的努力。我们的假想模型可以基于thinking关节功能障碍问题的生物力学方法,引发思想并充当未来工作的指南。

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