Delp S L, Zajac F E
Biomedical Engineering Department, Northwestern University, Evanston, Illinois.
Clin Orthop Relat Res. 1992 Nov(284):247-59.
A computer model of the human lower extremity was developed to study how surgical lengthening of tendon affects the force- and moment-generating capacity of the muscles. This model computes the maximum isometric force and the resulting joint moments that each muscle-tendon complex can develop at any body position. Tendon lengthenings were simulated by increasing the tendon length of each muscle-tendon complex and computing the change in the maximum isometric muscle force and joint moments at a specific body position. These simulations showed that the forces and moments developed by the ankle plantarflexors are extremely sensitive to changes in tendon length. For example, at a body position corresponding to the midstance phase of gait, the maximum isometric moment generated by soleus decreased 30% with a 1-cm increase in tendon length, and 85% with a 2-cm increase in tendon length. In contrast, 1- and 2-cm increases in iliopsoas tendon length decreased its hip flexion moment by only 4% and 9%, respectively. This article quantifies the sensitivity of muscle force and joint moments to changes in tendon length for the most commonly lengthened lower-extremity tendons. These results indicate how much each of these tendons should be lengthened to achieve an incremental decrease in muscle force or joint moment.
为了研究肌腱手术延长如何影响肌肉产生力和力矩的能力,开发了一种人体下肢计算机模型。该模型计算每个肌腱复合体在任何身体位置都能产生的最大等长力和由此产生的关节力矩。通过增加每个肌腱复合体的肌腱长度,并计算特定身体位置下最大等长肌力和关节力矩的变化,来模拟肌腱延长。这些模拟结果表明,踝关节跖屈肌产生的力和力矩对肌腱长度的变化极为敏感。例如,在与步态中期相对应的身体位置,比目鱼肌的肌腱长度每增加1厘米,其最大等长力矩就会降低30%,肌腱长度增加2厘米时,最大等长力矩降低85%。相比之下,髂腰肌肌腱长度增加1厘米和2厘米时,其髋关节屈曲力矩仅分别降低4%和9%。本文量化了最常延长的下肢肌腱的肌力和关节力矩对肌腱长度变化的敏感性。这些结果表明,为了使肌力或关节力矩逐渐降低,每条肌腱应延长多少。