Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL 60617, USA.
Am J Sports Med. 2013 Apr;41(4):835-40. doi: 10.1177/0363546512473816. Epub 2013 Feb 6.
Recent data suggest that anterior cruciate ligament (ACL) reconstruction with irradiated allograft tissue may lead to increased failure rates.
Low-dose (1.0-1.2 Mrad) gamma irradiation does not significantly alter the preimplantation biomechanical properties of bone-patellar tendon-bone (BTB) allografts.
Controlled laboratory study.
Cyclic and failure mechanical properties were evaluated for 20 paired central-third human BTB allografts, with and without 1.0 to 1.2 Mrad of gamma irradiation. Testing included cyclic loading at 0.5 Hz for 100 cycles from 50 to 200 N and failure testing at a strain rate of 10% per second.
Cyclic elongation did not change significantly (P = .151) with irradiation, increasing from a mean ± SD of 9.4 ± 2.1 mm to 11.3 ± 3.4 mm. Cyclic creep strain approached a significant increase with irradiation (1.3% ± 0.8% to 2.6% ± 1.5%; P = .076). Failure testing was not affected with irradiation with regard to maximum load (1680 ± 417 mm to 1494 ± 435 mm), maximum stress (40.8 ± 10.6 MPa to 37.5 ± 15.7 MPa), elongation (7.85 ± 1.35 mm to 8.67 ± 2.05 mm), or strain at maximum stress (0.158 ± 0.03 to 0.175 ± 0.03). Graft stiffness significantly decreased by 20% with irradiation (278 ± 67 N/mm to 221 ± 50 N/mm; P = .035).
Low-dose (1.0-1.2 Mrad) gamma irradiation decreases BTB graft stiffness by 20%, but it does not affect other failure or cyclic parameters.
Aside from graft stiffness during load to failure testing, low-dose (1.0-1.2 Mrad) gamma irradiation of central-third human BTB allografts is not deleterious to preimplantation biomechanical properties.
最近的数据表明,前交叉韧带(ACL)重建使用放射性同种异体移植物可能会导致失败率增加。
低剂量(1.0-1.2 Mrad)γ 射线照射不会显著改变骨-髌腱-骨(BTB)同种异体移植物的植入前生物力学特性。
对照实验室研究。
对 20 对中央三分之一的人 BTB 同种异体移植物进行循环和失效力学性能评估,包括有无 1.0 至 1.2 Mrad γ 射线照射。测试包括在 0.5 Hz 下进行 100 次循环,从 50 到 200 N 的载荷,应变率为 10%/秒的失效测试。
循环伸长率没有显著变化(P =.151),照射后从平均±标准差 9.4 ± 2.1 毫米增加到 11.3 ± 3.4 毫米。循环蠕变应变随着照射而显著增加(1.3%±0.8%至 2.6%±1.5%;P =.076)。照射对失效试验的最大载荷(1680 ± 417 毫米至 1494 ± 435 毫米)、最大应力(40.8 ± 10.6 MPa 至 37.5 ± 15.7 MPa)、伸长率(7.85 ± 1.35 毫米至 8.67 ± 2.05 毫米)和最大应力处的应变(0.158 ± 0.03 至 0.175 ± 0.03)没有影响。照射使移植物刚度显著降低 20%(278 ± 67 N/mm 至 221 ± 50 N/mm;P =.035)。
低剂量(1.0-1.2 Mrad)γ 射线照射可使 BTB 移植物刚度降低 20%,但不影响其他失效或循环参数。
除了失效试验中的载荷至失效测试外,低剂量(1.0-1.2 Mrad)γ 射线照射对中央三分之一的人 BTB 同种异体移植物的植入前生物力学特性没有不良影响。