Woo S L, Ohland K J, Weiss J A
Orthopaedic Bioengineering Laboratory, San Diego Veterans Administration Medical Center, California.
Mech Ageing Dev. 1990 Nov;56(2):129-42. doi: 10.1016/0047-6374(90)90004-y.
The effects of aging and sex on the tensile properties of the rabbit medial collateral ligament (MCL) were examined. The femur-MCL-tibia complex (FMTC) of male and female rabbits, of representative ages before and after epiphyseal closure up to the onset of senescence (i.e., 3.5, 6, 12 and 36 months of age) were examined. A group of 48-month-old female rabbits was also tested. The specimens were tensile tested to failure in order to obtain both the load-elongation curve of the FMTC (structural properties) and the stress-strain curve of the MCL substance (mechanical properties). Significant increases in the linear stiffness, ultimate load and energy absorbed at failure of the FMTC were noted in both the males and females during skeletal maturation, but the FMTCs of the older rabbits began to show a slight decrease in these properties. The ultimate load of the FMTC for the male rabbits reached its plateau at approximately 6 months of age, while that of the females did not plateau until 12 months of age. The modes of failure correlated well with closure of the epiphyses in both sexes, i.e., tibial avulsion failure for the skeletally immature groups and mid-substance for the skeletally mature groups. The modulus of the MCL substance increased during maturation for both sexes until 12 months, and then gradually declined until 48 months. The tensile strength remained relatively constant after 12 months of age but was slightly reduced at 48 months for the females. Thus, the rate of skeletal maturation contributed in part to the differences in the tensile properties of both the male and female rabbits.
研究了衰老和性别对兔内侧副韧带(MCL)拉伸性能的影响。对雄性和雌性兔的股骨 - 内侧副韧带 - 胫骨复合体(FMTC)进行了检查,这些兔代表了骨骺闭合前后直至衰老开始的不同年龄(即3.5、6、12和36月龄)。还测试了一组48月龄的雌性兔。对标本进行拉伸试验直至破坏,以获得FMTC的载荷 - 伸长曲线(结构特性)和MCL物质的应力 - 应变曲线(力学性能)。在骨骼成熟过程中,雄性和雌性兔的FMTC的线性刚度、极限载荷和破坏时吸收的能量均显著增加,但老年兔的FMTC在这些特性上开始出现轻微下降。雄性兔FMTC的极限载荷在约6月龄时达到平台期,而雌性兔直到12月龄才达到平台期。破坏模式与两性的骨骺闭合情况密切相关,即骨骼未成熟组为胫骨撕脱性破坏,骨骼成熟组为韧带中部破坏。两性MCL物质的模量在成熟过程中均增加,直至12月龄,然后逐渐下降直至48月龄。12月龄后拉伸强度保持相对恒定,但雌性兔在48月龄时略有降低。因此,骨骼成熟速率在一定程度上导致了雄性和雌性兔拉伸性能的差异。