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Aging Decreases the Ultimate Tensile Strength of Bone-Patellar Tendon-Bone Allografts

机译:衰老的极限抗拉强度降低同种异体骨-髌腱-骨

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Purpose: The purpose of this study was to determine whether aging imparts a clinically significant effect on the (1) mechanism of graft failure and (2) structural, material, and viscoelastic properties of patellar tendon allografts by evaluating these properties in younger donors ( 50 years of age). Methods: A total of 34 younger ( 50 years of age) nonirradiated, whole bone-tendon-bone allografts were prepared for testing by isolating the central third of the patellar tendon using a double-bladed 10-mm width scalpel under a 10-N load to ensure uniformity of harvest.Bone blocks were potted in polymethylmethacrylate within custom molds. Tendon length and cross-sectional area were measured using an area micrometer. A mechanical loading system was used to precondition the grafts for 100 cycles with a load between 50 N and 250 N (1 Hz). A creep load (500 N) was then applied at a rate of 100 mm/min (10 minutes). Grafts were allowed to recover at 1 N (10 minutes), followed by pull-to-failure at a rate of 100% strain per second. Mechanisms of failure (midsubstance vs avulsion) were noted and the structural, material, and viscoelastic properties calculated and compared between groups. Results: There were 33 (97%) midsubstance tears in the younger group and 28 (82%) in the older group (P = .034). Younger grafts showed greater ultimate load to failure (1,782 N [1,533, 2,032] vs 1,319 N [1,103, 1,533]) (P = .006) and ultimate tensile stress (37.4 MPa [32.4, 42.4] vs 27.5 MPa [22.9, 32.0]) (P = .006). There were no significant differences in displacement (P = .595), stiffness (P = .950), strain (P = .783), elastic modulus (P = .114), creep displacement (P = .881), and creep strain (P = .614). Conclusions: This in vitro study suggests that aging weakens the bone-tendon junction and decreases the ultimate tensile strength of patellar tendon allografts. However, aging did not affect the displacement, strain, stiffness, elastic modulus, creep displacement, or creep strain of patellar tendon allografts.
机译:目的:本研究的目的确定是否老化传授临床显著的影响(1)机制的贪污失败和(2)的结构、材料、和髌韧带的粘弹性特性同种异体通过评估这些属性年轻的捐助者(50岁)。共有34个年轻(50岁)未照射,整个bone-tendon-bone异体移植被隔离的准备测试吗中央第三髌腱的使用double-bladed 10毫米宽度手术刀10 n负载,以确保一致性的收成。盆栽在有机玻璃吗定制的模具。面积测量使用千分尺。机械加载系统被用来100年移植周期的前提负载之间50 N - 250 N(1赫兹)。(500 N)被应用于100毫米/分钟的速度(10分钟)。N(10分钟),其次是pull-to-failure在100%的速度每秒应变。(研究、撕裂)指出,失败结构、材料和粘弹性属性计算和对比组。年轻组的眼泪和28 (82%)老组(P = .034)。更大的极限载荷失败(1782 N [1533,2032] vs 1319 N(1103、1533))(P = .006)极限拉伸应力(37.4 MPa [32.4, 42.4] vs27.5 MPa [22.9, 32.0]) (P = .006)。在位移显著差异(P =.595)、刚度(P = .950)、压力(P = .783),弹性模量(P = .114)、蠕变位移(P= .881)和蠕变应变(P = .614)。结论:体外研究表明削弱了bone-tendon结和老化减少的极限抗拉强度髌腱移植。不影响位移、应变、刚度、弹性模量、蠕变位移或蠕变应变的髌腱移植。

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