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Effects of running in minimal, maximal and traditional running shoes: a musculoskeletal simulation exploration using statistical parametric mapping and Bayesian analyses

机译:最小,最大和传统跑步鞋中运行的影响:使用统计参数映射和贝叶斯分析的肌肉骨骼模拟探索

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摘要

The current study aimed to use a musculoskeletal simulation approach to examine running bio-mechanics in minimal, maximal and traditional running shoes using a concurrent SPM and Bayesian approach. Thirteen male participants ran over a force platform at 4.0 m/s in minimal maximal and traditional running shoes. Lower extremity joint loading and muscle forces were explored using a musculoskeletal simulation approach. Differences between conditions were examined using statistical parametric mapping (SPM) and Bayesian one-way repeated measures ANOVA. Bayesian analyses showed that traditional running shoes increased vastus intermedius (208.8BW·ms), vastus lateralis (320.2BW·ms) vastus medialis (188.7BW·ms), lateral tibiofemoral (495.9BW·ms) and patellofemoral joint stress (1683.4KPa/BW·s) integrals compared to minimal running shoes (185.0BW·ms, 281.9BW·ms, 167.2BW·ms, 456.5BW·ms & 1524.9KPa/BW·s). Furthermore, SPM showed that minimal footwear increased glutaeal, medial tibiofemoral and hip forces during the first 10% of the stance phase and Achilles tendon forces from 20 to 40% stance compared to traditional running shoes, whereas Bayesian analysis showed that minimal footwear increased loading rates (366.9BW/s) compared to maximal and traditional running shoes. (186.5BW/S) and traditional running shoes (161.5BW/s). Finally, SPM also showed that maximal footwear enhanced ankle eversion from 10 to 30% of stance compared to both minimal and traditional running shoes. This study therefore shows that minimal footwear may place runners at increased risk from impact related chronic injuries yet attenuate risk from patellofemoral and lateral tibiofemoral pathologies compared to traditional running shoes. In addition, owing to increases in ankle eversion, maximal running shoes may enhance risk to the aetiology of medial tibial stress syndrome compared to minimal and traditional running shoes.
机译:目前的研究旨在使用肌肉骨架仿真方法来使用并行SPM和贝叶斯方法在最小,最大和传统的跑步鞋中检查运行生物力学。十三个男性参与者在最大的最大和传统的跑步鞋中跑过4.0米/秒的力平台。利用肌肉骨骼模拟方法探索下肢关节载荷和肌肉力。使用统计参数映射(SPM)和贝叶斯单向重复测量ANOVA检查条件之间的差异。贝叶斯分析表明,传统的跑步鞋增加了夸张的中间座(208.8bw·ms),夸张的侧面(320.2bw·ms)夸张(188.7bw·ms),外侧胫骨(495.9bw·ms)和Patellofemoral联合压力(1683.4kpa / BW·S)与最小跑步鞋相比的积分(185.0bw·ms,281.9bw·ms,167.2bw·ms,456.5bw·ms&1524.9kpa / bw·s)。此外,SPM显示,与传统的跑步鞋相比,在姿势期的前10%和Achilles肌腱力量的前10%的级联阶段和Achilles肌腱势的前10%增加,而贝叶斯分析表明,贝叶斯分析表明,贝叶斯分析表明,贝叶斯分析显示最小鞋类的增加(366.9bw / s)与最大和传统的跑步鞋相比。 (186.5bw / s)和传统的跑步鞋(161.5bw / s)。最后,SPM还表明,与最小和传统的跑步鞋相比,最大鞋类增强的脚踝转换从姿势的10%到30%。因此,本研究表明,与传统跑鞋相比,最小鞋类可能将跑步者增加患者的风险增加,但与传统的跑步鞋相比,髌果实和横向胫甲术病症的风险。此外,由于脚踝转化增加,与最小和传统的跑步鞋相比,最大跑步鞋可能会增强内侧胫骨压力综合征的病症。

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