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Rabbit Achilles tendon full transection model - wound healing, adhesion formation and biomechanics at 3, 6 and 12 weeks post-surgery

机译:兔跟腱完全横断模型-术后3、6和12周的伤口愈合,粘连形成和生物力学

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摘要

After tendon rupture repair, two main problems may occur: re-rupture and adhesion formation. Suitable non-murine animal models are needed to study the healing tendon in terms of biomechanical properties and extent of adhesion formation. In this study 24 New Zealand White rabbits received a full transection of the Achilles tendon 2 cm above the calcaneus, sutured with a 4-strand Becker suture. Post-surgical analysis was performed at 3, 6 and 12 weeks. In the 6-week group, animals received a cast either in a 180 deg stretched position during 6 weeks (adhesion provoking immobilization), or were re-casted with a 150 deg position after 3 weeks (adhesion inhibiting immobilization), while in the other groups (3 and 12 weeks) a 180 deg position cast was applied for 3 weeks. Adhesion extent was analyzed by histology and ultrasound. Histopathological scoring was performed according to a method by Stoll et al. (2011), and the main biomechanical properties were assessed. Histopathological scores increased as a function of time, but did not reach values of healthy tendons after 12 weeks (only around 15 out of 20 points). Adhesion provoking immobilization led to an adhesion extent of 82.7±9.7%, while adhesion inhibiting immobilization led to 31.9±9.8% after 6 weeks. Biomechanical properties increased over time, however, they did not reach full strength nor elastic modulus at 12 weeks post-operation. Furthermore, the rabbit Achilles tendon model can be modulated in terms of adhesion formation to the surrounding tissue. It clearly shows the different healing stages in terms of histopathology and offers a suitable model regarding biomechanics because it exhibits similar biomechanics as the human flexor tendons of the hand.
机译:肌腱断裂修复后,可能会出现两个主要问题:再次断裂和粘连形成。需要合适的非鼠类动物模型来研究愈合肌腱的生物力学特性和粘附形成程度。在这项研究中,用4线贝克尔缝合法将24只新西兰白兔的跟腱完整横切在跟骨上方2chillcm处。术后3、6和12周进行分析。在6周组中,动物在6周中处于180度拉伸位置(引起粘连固定),或在3周周中具有150度位置重新铸造(抑制粘着固定),而在另一周中则被浇铸。小组(3周和12周)应用180度的角度投射3周。通过组织学和超声分析粘附程度。根据Stoll等人的方法进行组织病理学评分。 (2011年),并评估了主要的生物力学性能。组织病理学评分随时间增加,但在12周后未达到健康肌腱的值(仅20分中的15分左右)。引起粘附的固定化导致粘附程度为82.7±9.7%,而抑制粘附的固定化导致6周后达到31.9±9.8%。生物力学性能随着时间的推移而增加,但是,它们在术后12周未达到完全强度或弹性模量。此外,可以根据与周围组织的粘附形成来调节兔跟腱模型。它清楚地显示了组织病理学上不同的愈合阶段,并提供了有关生物力学的合适模型,因为它表现出与手的人体屈肌腱相似的生物力学。

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