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Medial Longitudinal Arch Pad Influences Landing Control of the Lower Limbs during Single-Leg Jump-Landing

机译:内侧纵向拱垫在单腿跳转期间影响下肢的着陆控制

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Background: Arch support has the effect of maintaining arch and correcting alignment, and it is broadly used for the prevention of sports impediment and treatment of athletes with lowered MLA and foot problems. The fact that the morphological change of MLA damages balance sense and postural control, it was reported that the insole supporting the arch of MLA improved postural balance. There are several studies regarding the effects of arch support;however, its effects on landing control have not been clarified. Therefore, in our research, we discussed the effect of MLA support for landing control, using lower limb dynamic alignment and the moment during landing as indexes. Methods: This study measured the landing motion to be evaluated was to jump from a platform with a height of 30 cm by taking-off with a single foot, and landing on a single foot on a floor reaction force gauge placed ahead and stay still for three seconds for the subjects were 13 healthy females. A soft 6 mm Boron sheet cut in the size of 9 × 3.5 cm, applied with double-sided tape (MLA pad) was used for arch support (hereafter referred to as “pad”). For the lower limb evaluation, an 8-camera with a three-dimensional behavioral analyzer (CORTEX, NAC product, sampling frequency: 120 Hz) and a floor reaction force gauge (AMTI product, sampling frequency: 1000 Hz) were used. Ten successful jump-landing tests for each limb were used for further analyses using Visual 3D software (Cmotion Inc., Kingston, Canada). Analysis objects were knee joint bending angle and valgus angle during landing;knee joint maximum bending angle;bending knee joint valgus angle, hip joint bending angle, adduction angle, ankle joint plantar flexion angle, varus angle at the time of knee joint maximum bending angle;and each joint moment. For statistical processing, the average value of three trials out of five trials was regarded as a representative value. Results: Regarding joint angles, significant differences were observed in maximum knee joint bending angle, knee joint bending angle during maximum valgus knee joint and ankle joint varus angle during knee joint maximum bending angle between before and after intervention. No significant differences were observed in other joint angles. Regarding joint moments, no significant difference was observed in each joint moment before and after the intervention. Significance: The decrease of knee joint valgus angle during landing by the use of MLA pad suggests the possibility of decreasing the risk of ACL injury. As the incidence of ACL injury in females is higher than that of males, and the evaluation for females had proceeded, it can be useful information for the prevention of ACL injury.
机译:背景:拱形支持具有维护拱门和校正对齐的效果,并且广泛用于预防体育障碍和运动员的治疗,具有降低的MLA和脚部问题。据报道,MLA损坏的形态变化损害平衡感和姿势控制的事实,据报道,鞋垫支持MLA拱的姿势平衡。关于拱形支持的影响有几项研究;然而,它对着陆控制的影响尚未澄清。因此,在我们的研究中,我们讨论了MLA支持对降落控制的影响,使用较低的肢体动态对准以及作为指数的降落期间的瞬间。方法:本研究测量了要评估的着陆运动是从一个高度的平台跳跃,通过单脚起飞,并在一个脚上着陆地板反作用力测量,并保持静止受试者三秒钟是13名健康的女性。使用双面胶带(MLA焊盘)施加9×3.5cm的柔软6mm硼板切割,用于拱形支撑(以下称为“垫”)。对于较低的肢体评估,使用具有三维行为分析仪(皮质,NAC产品,采样频率:120Hz)和地板反作用力计(AMTI产品,取样频率:1000Hz)的8相机。每个肢体的十个成功的跳转试验用于使用Visual 3D软件进一步分析(CMOTION Inc.,Canada)。分析对象是着陆期间的膝关节弯曲角度和旋流角;膝关节最大弯曲角;弯曲膝关节旋流角,髋关节弯曲角度,内膜凸起角度,踝关节跖屈角,膝关节时的旋转角度最大弯曲角度;每个联合时刻。对于统计处理,五项试验中的三项试验的平均值被视为代表价值。结果:关于关节角度,在最大旋流膝关节和踝关节最大弯曲角度在介入之前和之后,最大膝关节弯曲角,膝关节弯曲角度,膝关节弯曲角度的最大膝关节弯曲角度观察到显着差异。在其他关节角度没有观察到显着差异。关于联合时刻,干预前后的每个联合时刻没有观察到显着差异。意义:通过使用MLA垫在着陆过程中降低膝关节旋流角度表明,降低ACL损伤风险的可能性。由于女性的ACL损伤的发生率高于男性,并且对女性的评估进行了,因此可以是预防ACL损伤的有用信息。

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