Cox Stephen, Mukherjee Debi P, Ogden Alan L, Mayuex Raymond H, Sadasivan Kalia K, Albright James A, Pietrzak William S
LSU Health Sciences Center, Shreveport, LA, USA.
J Foot Ankle Surg. 2005 Mar-Apr;44(2):144-51. doi: 10.1053/j.jfas.2005.01.010.
Metal screws that are used for ruptured tibiofibular syndesmosis repair are often removed within 3 months of placement, suggesting the utility of bioabsorbable screws. A biomechanical study was performed to compare fixation of a simulated syndesmosis separation with a 5-mm oriented copolymer bioabsorbable (82:18 poly-L-lactic acid/poly-glycolic acid) versus a stainless steel screw. Eight pairs of cadaveric lower-leg specimens were cleaned and a pronation external rotation-type injury was created in each. The syndesmosis was fixed with a single, tricortical bioabsorbable screw in 1 ankle and a metal screw in the contralateral ankle (matched pairs). Sequential testing of the specimens showed that torsional stiffness of the fixed, relative to intact, specimens was nearly equivalent (0.730 +/- 0.260 for copolymer, 0.770 +/- 0.300 for stainless steel; P = .401). Application of 1000 cycles of axial load (90 to 900 N) resulted in a significant decrease ( P < .0001) in axial stiffness for each fixation method, but the relative decrease was equivalent for both ( P = .211). Failure torque (17.8 +/- 8.3 N.m copolymer, 21.0 +/- 11.5 N.m stainless steel; P = .238) and angle of rotation at failure (47.9 +/- 13.6 degrees copolymer, 42.0 +/- 11.5 degrees stainless steel; P = .199) were also nearly equivalent. It appears that the 5.0-mm diameter copolymer screw is biomechanically equivalent to the 5.0-mm diameter stainless steel screw for repair of syndesmosis disruption.
用于胫腓下联合韧带断裂修复的金属螺钉通常在植入后3个月内取出,这表明可生物吸收螺钉具有实用性。进行了一项生物力学研究,以比较5毫米定向共聚物生物可吸收螺钉(82:18聚-L-乳酸/聚乙醇酸)与不锈钢螺钉对模拟胫腓下联合分离的固定效果。对八对尸体小腿标本进行清理,并在每个标本上造成旋前外旋型损伤。在1个踝关节中用单枚三皮质生物可吸收螺钉固定胫腓下联合,在对侧踝关节中用金属螺钉固定(配对)。对标本进行连续测试表明,固定标本相对于完整标本的扭转刚度几乎相等(共聚物为0.730±0.260,不锈钢为0.770±0.300;P = 0.401)。施加1000次轴向载荷循环(90至900 N)后,每种固定方法的轴向刚度均显著降低(P < 0.0001),但相对降低幅度两者相当(P = 0.211)。破坏扭矩(共聚物为17.8±8.3 N·m,不锈钢为21.0±11.5 N·m;P = 0.238)和破坏时的旋转角度(共聚物为47.9±13.6度,不锈钢为42.0±11.5度;P = 0.199)也几乎相等。对于胫腓下联合损伤的修复,直径5.0毫米的共聚物螺钉在生物力学上似乎与直径5.0毫米的不锈钢螺钉相当。