Wolfson N, Hearn T C, Thomason J J, Armstrong P F
Orthopaedic Biomechanics Research Laboratory, Sunnybrook Medical Centre, Toronto, Ontario, Canada.
Clin Orthop Relat Res. 1990 Jan(250):58-60.
Biomechanical considerations of limb lengthening procedures are fundamental to their clinical outcome. The purpose of this study was to determine the relationships among force, stiffness, and distracted length in a patient whose leg was lengthened 50 mm with the Ilizarov procedure. A modified Ilizarov apparatus with force transducers in its three columns was surgically applied to the left tibia of an 11-year-old female patient after corticotomy of the proximal metaphysis. The leg was distracted 0.25 mm four times daily for 50 days, commencing six days after surgery. At approximately weekly intervals, forces at rest were recorded before and after distraction. Resting predistractional force magnitudes increased almost linearly during the first three weeks of lengthening, from 49 N to 223 N. The rate of increase slowed markedly thereafter with a further force increase of 11 N in the next three weeks. The stiffness of the limb, derived from the change in force accompanying the 0.25-mm change in length, increased by approximately 3.9%/mm of distracted length with 95% confidence limits of 6.8% and 0.9%. These results show marked differences from the nonlinearly increasing force-displacement relationship during in vitro limb distraction.
肢体延长手术的生物力学因素对其临床效果至关重要。本研究的目的是确定一名采用伊里扎洛夫手术延长腿部50毫米的患者中力、刚度和延长长度之间的关系。在近端干骺端行皮质切开术后,将一种在其三根支柱中装有力传感器的改良伊里扎洛夫器械手术应用于一名11岁女性患者的左胫骨。术后6天开始,每天4次将腿部延长0.25毫米,持续50天。大约每周一次,在延长前后记录静息力。在延长的前三周,静息预延长力大小几乎呈线性增加,从49牛增加到223牛。此后增加速率明显减慢,在接下来的三周内又增加了11牛。肢体的刚度由长度0.25毫米变化时伴随的力的变化得出,随着延长长度每毫米增加约3.9%,95%置信区间为6.8%和0.9%。这些结果与体外肢体延长过程中力 - 位移关系的非线性增加有显著差异。