Fujie H, Yamamoto N, Murakami T, Hayashi K
Biomechanics Laboratory, Division of Mechanical Science, Department of Systems and Human Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka, Japan.
Clin Biomech (Bristol). 2000 Jun;15(5):370-8. doi: 10.1016/s0268-0033(99)00077-7.
To know the effect of stress deprivation on the dimensions and mechanical properties of the patellar tendon during growth.
The dimensions and tensile properties of stress-shielded patellar tendons were studied in growing rabbits and compared to those in mature animals.
Although the effects of stress deprivation on the remodeling of ligaments and tendons have been studied in various animal models, the effect of growth on the remodeling has not been studied well.
A stress shielding technique was applied to 1-, 2-, and 3-month-old Japanese white rabbits to completely remove stress in the patellar tendons for 4, 7, and 14 days. Changes in the dimensions and mechanical properties as well as fibroblast density of the tendon were determined.
The tensile strength and tangent modulus of the patellar tendons were markedly decreased by stress shielding, while the cross-sectional area was significantly increased, with the largest changes in 1-month-old rabbits. Fibroblast density also increased; however, the degree of increase was highest in 3-month-old rabbits.
The changes in the dimensions and mechanical properties of the patellar tendons induced by stress shielding were greater in younger animals.
The biomechanical response of tendons and ligaments to stress deprivation induced by, for example, limb immobilization is greater and occurs earlier in younger subjects, which is important for the surgical treatment and rehabilitation protocol of joint diseases in young subjects.
了解应力剥夺对生长过程中髌腱尺寸和力学性能的影响。
研究生长中的家兔应力屏蔽髌腱的尺寸和拉伸性能,并与成年动物的进行比较。
尽管在各种动物模型中已经研究了应力剥夺对韧带和肌腱重塑的影响,但生长对重塑的影响尚未得到充分研究。
对1、2、3月龄的日本白兔应用应力屏蔽技术,使髌腱完全去除应力4、7和14天。测定肌腱的尺寸、力学性能以及成纤维细胞密度的变化。
应力屏蔽使髌腱的拉伸强度和切线模量显著降低,而横截面积显著增加,1月龄家兔的变化最大。成纤维细胞密度也增加;然而,3月龄家兔的增加程度最高。
应力屏蔽引起的髌腱尺寸和力学性能变化在幼龄动物中更大。
例如肢体固定引起的应力剥夺对肌腱和韧带的生物力学反应在年轻受试者中更大且更早发生,这对年轻受试者关节疾病的手术治疗和康复方案很重要。