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Preclinical evaluation of a novel anterior non-fusion fixation device for atlantoaxial instability: an in vivo comparison study in a canine model

机译:一种新型非融合固定装置的临床临床评价,用于寰枢窦不稳定性:犬模型的体内比较研究

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The Anterior Atlantoaxial Non-Fusion Fixation System (AANFS) was a novel motion preservation device for atlantoaxial instability to replace traditional fusion techniques. The purpose of this in vivo study was to evaluate the clinical features and biomechanical properties of this new device in a canine model by comparing it with a conventional method. Eighteen adult male canines were randomly divided into group 1, which received the AANFS replacement, group 2 which received the Harms rigid fixation procedures, and group 3, which served as the control group. Routine follow-up evaluations were performed postoperatively. Specimens were harvested 12weeks after the operation. Biomechanical tests were conducted to obtain the range of motion (ROM) and neutral zone (NZ) at C1 C2 segment in different groups. The canines successfully tolerated the entire experimental procedure. No significant differences were found in surgery time, blood loss and recovery time between the AANFS group and the Harms rigid fixation group. Radiological examinations revealed that the position of the implant was good. Biomechanical results showed that, compared with the intact group, the mean ROM and NZ in flexion, extension, lateral bending and rotation were significantly reduced after rigid fixation. However, after the AANFS implantation, ROM and NZ in all directions were similar to those of the intact state. This study for the first time provides an animal model for studying non-fusion strategies of upper cervical spine. The AANFS was able to maintain movement function of the atlantoaxial joint and may be an alternative to traditional fusion techniques. These slides can be retrieved under Electronic Supplementary Material.
机译:前寰枢绕非融合固定系统(AANFS)是一种用于atlantoaxial不稳定性的新型运动保存装置,以取代传统的融合技术。体内研究的目的是通过将其与常规方法进行比较来评估该新装置在犬模型中的临床特征和生物力学特性。将十八个成年雄性犬随机分为第1组,该组接受AANFS替代品,第2组接受危害刚性固定程序的损伤,第3组,其担任对照组。术后进行常规后续评估。操作后收获了12周的标本。进行生物力学试验以在不同组中获得C1 C2段的运动(ROM)和中性区(NZ)的范围。犬油公司成功耐受整个实验程序。在AANFS组和危害刚性固定组之间的手术时间,血液损失和恢复时间内没有发现显着差异。放射检查显示植入物的位置良好。生物力学结果表明,与完整组相比,刚性固定后屈曲,延伸,横向弯曲和旋转中的平均ROM和NZ显着减少。然而,在AANFS植入之后,所有方向的ROM和NZ类似于完整状态的ROM和NZ。本研究首次为研究上颈椎的非融合策略提供了一种动物模型。 AANFS能够维持寰枢膜关节的运动功能,并且可以是传统融合技术的替代方案。这些幻灯片可以在电子补充材料下检索。

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