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Evaluation of hollow mesh augmentation on the biomechanical properties of the flexor tendon repaired with modified Kessler technique

机译:改良凯斯勒技术修复中空网膜对修复屈肌腱生物力学性能的评估

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PurposeThe aim of the study was to test flexor tendon repair with a novel hollow mesh suture augmentation served as a centre core cable [Triple-C (Tri-C)] in anin vitrostudy using a turkey model.MethodsForty long digits from white turkey feet were divided into the following four groups based on repair techniques: Group 0, intact tendon without repair; Group 1, modified Kessler (MK) repair only (MKo); Group 2, MK repair plus Tri-C (MK??+??Tri-C); and Group 3, MK repair plus an additional outside knot plus Tri-C (MK-2knots??+??Tri-C). Mechanical evaluations were performed for all groups.ResultsThe frictions of the two groups with Tri-C were not significantly different than those of the MKo group. The ultimate tensile strength of the MK??+??Tri-C group was not significantly different from that of the MKo group or the MK-2knots??+??Tri-C group. In contrast, the MK-2knots??+??Tri-C group had a significantly greater ultimate tensile strength compared with that of the MKo group. Forces at 2-mm gap formation in the groups with Tri-C were significantly stronger than that of MK alone.ConclusionOur data have demonstrated that MK repair augmented with the centre hollow mesh suture increased failure strength without inducing increased friction.The translational potential of this articleOur study elucidates that a Tri-C augmentation designed in this study can achieve mechanical enhancements without increasing the repaired tendon friction. Hence, this novel technique has potential biological validity and clinical application.
机译:目的本研究的目的是使用火鸡模型在体外研究中使用新型空心网状缝合线作为中心芯电缆[Triple-C(Tri-C)]测试屈肌腱的修复方法。根据修复技术分为以下四组:第0组,完整肌腱,无修复;第1组,仅修改Kessler(MK)维修(MKo);第2组,MK维修加Tri-C(MK ?? + ?? Tri-C);第3组,MK修理,外加一个附加的结,再加上Tri-C(MK-2结++ Tri-C)。结果:两组与Tri-C的摩擦力与MKo组无明显差异。 MK 12 + ++ Tri-C组的极限抗拉强度与MKo组或MK-2结β+ ++ Tri-C组的极限抗拉强度没有显着差异。相反,与MKo-2组相比,MK-2结Δε+β-Tri-C组的极限抗拉强度明显更高。结论Tri-C组的2mm间隙形成力明显强于单独的MK。结论我们的数据表明,用中空网状缝合线增强MK修复可增加破坏强度而不会引起摩擦增加。文章我们的研究阐明了本研究中设计的Tri-C增强可以实现机械增强,而不会增加修复的肌腱摩擦。因此,该新技术具有潜在的生物学有效性和临床应用价值。

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