Sezaki Shunsuke, Otsuki Shuhei, Ikeda Kuniaki, Okuno Nobuhiro, Okamoto Yoshinori, Wakama Hitoshi, Okayoshi Tomohiro, Neo Masashi
Department of Orthopedic Surgery, Osaka Medical and Pharmaceutical University, 2-7 Daigakumachi Takatsuki, Osaka 569-8686, Japan.
QOL Research Laboratory, Gunze Limited, 1 Zeze Aonotyo Ayabe, Kyoto 623-8511, Japan.
Appl Bionics Biomech. 2021 Nov 3;2021:4931092. doi: 10.1155/2021/4931092. eCollection 2021.
The assessment of the distribution of contact pressure on the meniscus is important in the elucidation of kinematics, etiology of joint diseases, and establishment of treatment methods. Compared with sensors widely used in recent years, pressure-sensitive conductive rubber sensors are easy to mold, flexible, durable, and resistant to shearing forces. This study is aimed at developing a rubber sensor for meniscal research and evaluating the pressure distribution after meniscal injury using porcine models. After confirming the reliability of the rubber sensor, contact pressure was obtained from the rubber sensor using the medial meniscus and femur of the porcine knee. Three test conditions of intact meniscus, radial tear, and meniscectomy were prepared, and a compressive load of 100 N was applied. After confirming the high reliability of the rubber sensor, the intact meniscus had the most uniform pressure distribution map, while the pressure in the meniscectomy model was concentrated in the resection region. The high-pressure region was significantly smaller in the intact group than in the radial tear models after 80 and 100 N ( < 0.05). The rubber sensor captured the pressure concentration specific to each examination group and was useful for evaluating the relationship between the pattern of meniscal injury and changes in the biomechanical condition of the knee.
评估半月板上接触压力的分布对于阐明膝关节运动学、关节疾病病因以及确立治疗方法具有重要意义。与近年来广泛使用的传感器相比,压敏导电橡胶传感器易于成型、柔韧性好、耐用且抗剪切力。本研究旨在开发一种用于半月板研究的橡胶传感器,并使用猪模型评估半月板损伤后的压力分布。在确认橡胶传感器的可靠性后,利用猪膝关节的内侧半月板和股骨从橡胶传感器获取接触压力。制备了完整半月板、放射状撕裂和半月板切除术三种测试条件,并施加100 N的压缩载荷。在确认橡胶传感器具有高可靠性后,完整半月板的压力分布图最为均匀,而半月板切除术模型中的压力集中在切除区域。在80 N和100 N时,完整组的高压区域明显小于放射状撕裂模型(P<0.05)。橡胶传感器捕捉到了每个检查组特有的压力集中情况,有助于评估半月板损伤模式与膝关节生物力学状况变化之间的关系。