Kurosawa H, Yamakoshi K, Yasuda K, Sasaki T
Department of Orthopedic Surgery, School of Medicine, Hokkaido University, Sapporo, Japan.
Clin Orthop Relat Res. 1991 Apr(265):233-40.
The changes in length of electrolyte-in-rubber strain-gauge transducers implanted along the fibers of the anterior (ACL) and posterior (PCL) cruciate ligaments of the human anatomic specimen knees were measured simultaneously and continuously during knee motion. In unconstrained flexion and extension of the knee, all transducers in the ACL showed the maximum shortening peak at about 30 degrees flexion. After this, the length of the transducers in the anterior bundle increased, whereas those in the posterior bundle remained shortened. Transducers in the anterior and posterior bundles of the PCL, on the other hand, showed maximum lengthening peaks at approximately 50 degrees and 0 degrees flexion, respectively. The middle bundle of the PCL showed a smaller change. When simulated quadriceps forces were applied, the transducers in the ACL lengthened and those in the PCL shortened. At more than 90 degrees, however, the changes in length decreased. After cutting the ACL, the quadriceps force increased the shortening of the PCL.
在人体解剖标本膝关节运动过程中,同时连续测量了沿前交叉韧带(ACL)和后交叉韧带(PCL)纤维植入的橡胶应变片式电解质传感器的长度变化。在膝关节无约束的屈伸过程中,ACL中的所有传感器在屈膝约30度时显示出最大缩短峰值。在此之后,前束中的传感器长度增加,而后束中的传感器仍保持缩短状态。另一方面,PCL前后束中的传感器分别在屈膝约50度和0度时显示出最大伸长峰值。PCL的中间束变化较小。当施加模拟股四头肌力量时,ACL中的传感器伸长,PCL中的传感器缩短。然而,在超过90度时,长度变化减小。切断ACL后,股四头肌力量增加了PCL的缩短程度。