Xu Yi, Hou Qing-Hua, Han Xiu-Lan, Wang Chu-Huai, Huang Dong-Feng
Department of Rehabilitation Medicine, the 7th Affiliated Hospital, Sun-Yat Sen University, Shenzhen, 518107, China.
Guangdong Provincial Engineering Technology Research Center for Rehabilitation Medicine and Clinical Translation, Guangzhou, 510080, China.
Curr Med Sci. 2022 Feb;42(1):159-168. doi: 10.1007/s11596-021-2471-6. Epub 2021 Nov 30.
To investigate the effectiveness of molding custom-made insoles for female patients with foot pain.
The study included 20 patients whose insoles were prescribed according to biomechanical evaluations and molded by repositioning the subtalar joint in its neutral position using a simple set of tools. Plantar biomechanics were measured under the following conditions: static stand, walking at self-comfortable walking speed (CWS) barefoot, walking in patient owned running shoes, and walking in running shoes plus insoles. Each patient's upper arm isometric muscle strength and subjective feelings before and after the insole intervention were assessed.
The molded insoles increased plantar contact area both during static standing and walking at CWS compared to the barefoot condition. The insoles also had more evenly distributed plantar contact area and loading rate, with the changes in the medial arch area being most significant. Moreover, the custom-made insole intervention immediately increased maximum resistance and duration of bilateral upper arms, as well as improved foot comfort, especially at the medial arch area during single leg squat tests.
Molding custom-made insoles by repositioning the subtalar joint in its neutral position can be accomplished with a simple set of tools, making this method highly applicable for a majority of less developed regions. Insoles molded using this method are effective in immediately improving plantar biomechanics disorders and enhancing isometric upper muscle performance in female patients with foot pain.
探讨定制塑形鞋垫对足部疼痛女性患者的有效性。
该研究纳入了20例患者,其鞋垫根据生物力学评估进行定制,并使用一套简单工具通过将距下关节重新定位到中立位来塑形。在以下条件下测量足底生物力学:静态站立、以自我舒适步行速度(CWS)赤脚行走、穿着患者自己的跑鞋行走以及穿着跑鞋加鞋垫行走。评估了每位患者在鞋垫干预前后的上臂等长肌力和主观感受。
与赤脚状态相比,塑形鞋垫在静态站立和以CWS行走时均增加了足底接触面积。鞋垫的足底接触面积和负荷率分布也更均匀,其中内侧足弓区域的变化最为显著。此外,定制鞋垫干预立即增加了双侧上臂的最大阻力和持续时间,并改善了足部舒适度,尤其是在单腿深蹲测试期间的内侧足弓区域。
使用一套简单工具通过将距下关节重新定位到中立位来定制塑形鞋垫是可行的,这使得该方法在大多数欠发达地区具有高度适用性。使用该方法塑形的鞋垫可有效立即改善足部疼痛女性患者的足底生物力学紊乱,并增强等长上肢肌肉性能。