Abe Isao, Ishiya Kohei, Oshimoto Taiki, Kikuchi Takehito, Tanida Sosuke, Yasuda Takashi
Annu Int Conf IEEE Eng Med Biol Soc. 2017 Jul;2017:4499-4502. doi: 10.1109/EMBC.2017.8037856.
We proposed a new ankle-foot orthosis using elastomer-embedded flexible joints (EEFJ), composed of C-shaped springs and 3D-printed circular elastomer. This orthosis was designed to reduce burden on the tibialis anterior muscle (TA) and to achieve clearance between the tip of the toe and the ground. Strength testing, and gait analysis were conducted for the orthosis. According to the results of strength testing, the combination of the C-spring with 0.3 mm and 0.5 mm thickness and the elastomer with 30% and 60% filling density performs a supporting torque of 0.7-2.3 Nm to plantarflexion. In contrast, torques in the other directions were relatively small. According to the results of gait experiments in seven healthy young subjects, the proposed orthosis successfully reduced the TA activation on initial contact and in the swing phase, and range of motion on initial contact.
我们提出了一种使用嵌入弹性体的柔性关节(EEFJ)的新型踝足矫形器,它由C形弹簧和3D打印的圆形弹性体组成。该矫形器旨在减轻胫骨前肌(TA)的负担,并实现脚趾尖与地面之间的间隙。对该矫形器进行了强度测试和步态分析。根据强度测试结果,厚度为0.3毫米和0.5毫米的C形弹簧与填充密度为30%和60%的弹性体相结合,对跖屈产生0.7-2.3牛米的支撑扭矩。相比之下,其他方向的扭矩相对较小。根据对七名健康年轻受试者的步态实验结果,所提出的矫形器成功降低了初始接触和摆动阶段的TA激活,以及初始接触时的运动范围。