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Immediate and lasting improvements in weight distribution seen in baropodometry following a high-velocity, low-amplitude thrust manipulation of the sacroiliac joint

机译:sa关节的高速,低幅推力操纵后,通过足部测量法可以看到重量分布的即时和持久改善

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摘要

The biomechanics of the sacroiliac joint makes the pelvic segment responsible for proper weight distribution between lower extremities; however, it is known to be susceptible to altered mobility. The objective of this study was to analyze baropodometric responses following thrust manipulation on subjects with sacroiliac joint restrictions. Twenty asymptomatic subjects were submitted to computerized baropodometric analysis before, after, and seven days following sacroiliac manipulation. The variables peak pressure and contact area were obtained at each of these periods as the average of absolute values of the difference between the right and left foot based on three trials. Data revealed significant reduction only in peak pressure immediately after manipulation and at follow-up when compared to pre-manipulative values (p < 0.05). Strong correlation was found between the dominant foot and the foot with greater contact area (r = 0.978), as well as between the side of joint restriction and the foot with greater contact area (r = 0.884). Weak correlation was observed between the dominant foot and the foot with greater peak pressure (r = 0.501), as well as between the side of joint restriction and the foot with greater peak pressure (r = 0.694). The results suggest that sacroiliac joint manipulation can influence peak pressure distribution between feet, but contact area does not seem to be related to the biomechanical aspects addressed in this study.
机译:the关节的生物力学使骨盆节段负责下肢之间的适当重量分配。但是,已知容易受到迁移率的影响。这项研究的目的是分析thrust关节受限受试者进行推力操作后的足部测量反应。在sa操作之前,之后和之后的7天,对20名无症状受试者进行了计算机气压计分析。根据三个试验,在这些时段的每个时段获得变量峰值压力和接触面积,作为右脚和左脚之间差异的绝对值的平均值。数据显示,与操作前的值相比,仅在操作后立即和随访时峰值压力显着降低(p <0.05)。发现优势脚与接触面积较大的脚之间的相关性很强(r = 0.978),以及关节约束面与接触面积较大的脚之间的相关性很强(r = 0.884)。在优势足和峰值压力较大的脚之间(r = 0.501),以及在关节约束侧和峰值压力较大的脚之间(r = 0.694),观察到弱相关性。结果表明sa关节操纵可以影响双脚之间的峰值压力分布,但接触面积似乎与本研究中涉及的生物力学方面无关。

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