Department of Sport Science and Kinesiology, University of Salzburg, Salzburg, Austria.
Scand J Med Sci Sports. 2013 Jun;23(3):e194-201. doi: 10.1111/sms.12053. Epub 2013 Jan 22.
The current study was conducted to evaluate the effects of unstable footwear on spine kinematics and trunk muscle activity during bipedal stance. Therefore, spinal alignment and concurrent angular velocity measures were assessed in 27 asymptomatic adults while standing with unstable Masai Barefoot Technology (MBT) shoes and standard footwear, respectively, employing a multisegmental three-dimensional trunk model. Electromyographic (EMG) analyses included recordings of the rectus abdominis, internal oblique, external oblique, upper thoracic paraspinals, lower thoracic erector spinae, and lumbar erector spinae. Kinematic and EMG variables were compared for the two shoe conditions via paired Student's t-tests (α = 0.05). Results showed that wearing unstable MBT shoes increased flexion at the mid-thoracic level (0.8°; P = 0.001) and led to greater mean velocities of angular displacement at the thoracolumbar (11.2%; P = 0.003) and at the lumbopelvic (10.8%; P = 0.02) regions, accompanied by more lumbar erector spinae activity (18.2%; P = 0.003). Accordingly, using MBT shoes may have potential implications in promoting spine tissue health, notably at the low back area, through expected improvements in terms of muscle conditioning and/or motor performance. However, additional investigations are warranted to further examine the framework of unstable footwear constructions within prevention and rehabilitation settings.
本研究旨在评估不稳定鞋类对双足站立时脊柱运动学和躯干肌肉活动的影响。因此,在 27 名无症状成年人中,采用多节段三维躯干模型分别评估了使用不稳定的 Masai Barefoot Technology (MBT) 鞋和标准鞋类站立时的脊柱排列和伴随的角速度测量值。肌电图 (EMG) 分析包括记录腹直肌、内斜肌、外斜肌、上胸椎竖脊肌、下胸椎竖脊肌和腰椎竖脊肌。通过配对学生 t 检验 (α = 0.05) 比较了两种鞋类条件下的运动学和 EMG 变量。结果表明,穿不稳定的 MBT 鞋会增加中胸段的屈曲度 (0.8°; P = 0.001),并导致胸腰椎 (11.2%; P = 0.003) 和腰骶部 (10.8%; P = 0.02) 的角位移平均速度更大,同时腰椎竖脊肌活动增加 (18.2%; P = 0.003)。因此,使用 MBT 鞋可能通过肌肉调节和/或运动表现的预期改善,对促进脊柱组织健康具有潜在意义,尤其是在腰部区域。然而,需要进一步的研究来进一步研究不稳定鞋类结构在预防和康复环境中的框架。