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Pedobarographic and kinematic analysis in the functional evaluation of two post-operative forefoot offloading shoes

机译:职业性评价的职业性评价鞋前足卸载鞋的功能评价

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Background Forefoot offloading shoes are special orthopaedic footwear designed to protect and unload the injured part of the foot after surgery and for conservative treatments. The offloading action is often achieved by transferring plantar load to the rearfoot via rocker shoes with reduced contact area between shoe and ground. While these shoes are intended to be worn only for short periods, a compromise must be found between functionality and the risk of alterations in gait patterns at the lower limb joints. In this study, the pedobarographic, kinematic and kinetic effects of a traditional half-shoe and a double-rocker full-outsole shoe were compared to those of a comfortable shoe (control). Methods Ten healthy female participants (28.2?±?10.0?years) were asked to walk in three different footwear conditions for the left/right foot: control/half-shoe, control/full-outsole, and control/control. Full gait analysis was obtained in three walking trials for each participant in each condition. Simultaneously a sensor insole system recorded plantar pressure in different foot regions. Normalized root-mean-square error, coefficient of determination, and frame-by-frame statistical analysis were used to assess differences in time-histories of kinematic and kinetic parameters between shoes. Results The half -shoe group showed the slowest walking speed and the shortest stride length. Forefoot plantar load was significantly reduced in the half-shoe (maximum force as % of Body Weight: half-shoe?=?62.1; full-outsole?=?86.9; control?=?93.5; p??0.001). At the rearfoot, mean pressure was the highest in the full-outsole shoe. At the ankle, sagittal-plane kinematics in the full-outsole shoe had a pattern more similar to control. Conclusions The half-shoe appears significantly more effective in reducing plantar load at the forefoot than a double-rocker full-outsole shoe, which is designed to reduce forefoot loading by using an insole with a thicker profile anteriorly as to maintain the foot in slight dorsiflexion. However, the half-shoe is also associated with altered gait spatio-temporal parameters, more kinematic modifications at the proximal lower limb joints and reduced propulsion in late stance.
机译:背景技术前脚卸载鞋是特殊的矫形鞋,旨在保护和卸下手术后脚的受伤部分和保守治疗。通常通过将Plantar载荷转移到后脚通过摇杆和地面之间的接触区域转移到后脚来实现卸载动作。虽然这些鞋旨在仅在短时间内佩戴,但必须在功能性和下肢关节处的步态模式中的改变的风险之间找到妥协。在这项研究中,将传统半蹄和双摇杆全外鞋的父目,运动和动力学效应与舒适的鞋子(控制)进行比较。方法十分健康女性参与者(28.2?±10.0岁)被要求走在左/右脚的三种不同的鞋类条件下:控制/半鞋,控制/全外底,控制/控制。在每个条件下的每个参与者的三项步行试验中获得全步骤分析。同时传感器鞋垫系统在不同脚部区域记录了跖跖。标准化的根均方误差,测定系数和逐帧统计分析用于评估鞋子之间运动和动力学参数的时间历史的差异。结果半岛集团展示了最慢的行走速度和最短的步伐。在半蹄(最大力量为体重的最大力:半蹄= 62.1;全外底?=?86.9;控制?=Δ= 93.5; p?=?0.001)。在后脚下,平均压力是全外底鞋中的最高压力。在脚踝处,全外鞋垫中的矢状平面运动学具有更类似于对照的图案。结论,半蹄在前足的Portharar载荷上显着更有效,而不是双摇臂全外鞋子,这旨在通过使用较厚的型材向较厚的轮廓保持较厚的脚尖,以便在轻微的背离的脚下来减少鞋垫。然而,半蹄也与改变的步态时空参数相关,在近端下肢接头处的更多运动学修饰,并在晚期的后期推进。

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