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Enhancing percutaneous pedicle screw fixation with hydroxyapatite granules: A biomechanical study using an osteoporotic bone model

机译:用羟基磷灰石颗粒增强经皮椎弓根螺钉固定:使用骨质疏松骨模型的生物力学研究

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摘要

INTRODUCTION:Percutaneous pedicle screw (PPS) can provide internal fixation of the thoracolumbar spine through a minimally invasive surgical procedure. PPS fixation has been widely used to treat various spinal diseases. Rigid fixation of PPS is essential for managing osteoporotic spine in order to prevent the risks of screw loosening and implant failure. We recently developed a novel augmentation method using hydroxyapatite (HA) granules for PPS fixation. The aim of this study was to evaluate the strength and stiffness of PPS fixation augmented with HA granules using an osteoporotic bone model. METHODS:Screws were inserted into uniform synthetic bone (sawbones) with and without augmentation. The uniaxial pullout strength and insertion torque of the screws were evaluated. In addition, each screw underwent cyclic toggling under incrementally increasing physiological loads until 2 mm of screwhead displacement occurred. The maximal pullout strength (N), maximal insertion torque (N·cm), number of toggle cycles and maximal load (N) required to achieve 2-mm screwhead displacement were compared between the screws with and without augmentation. RESULTS:The maximal pullout strength was significantly stronger for screws with augmentation than for those without augmentation (302 ± 19 N vs. 254 ± 17 N, p < 0.05). In addition, the maximal insertion torque was significantly increased in screws with augmentation compared to those without augmentation (48 ± 4 N·cm vs. 26 ± 5 N·cm, p < 0.05). Furthermore, the number of toggle cycles and the maximal load required to reach 2 mm of displacement were significantly greater in screws with augmentation than in those without augmentation (106 ± 9 vs. 52 ± 10 cycles; 152 ± 4 N vs. 124 ± 5 N, p < 0.05). CONCLUSIONS:Augmentation using HA granules significantly enhanced the rigidity of PPS fixation in the osteoporotic bone model. The present study suggested that novel augmentation with HA granules may be a useful technique for PPS fixation in patients with osteoporotic spine.
机译:引言:经皮椎弓根螺钉(PPS)可以通过微创外科手术提供胸腰椎的内固定。 PPS固定已被广泛用于治疗各种脊柱疾病。 PPS的刚性固定是为了防止螺丝松动和植入失败的风险管理骨质疏松性脊柱至关重要。最近,我们开发了使用羟磷灰石(HA)颗粒,用于PPS固定的新型增强方法。本研究的目的是使用骨质疏松的骨模型颗粒剂,以评估与HA增强PPS固定的强度和刚度。方法:螺丝插入到均匀的合成的骨(sawbones)有和没有增强。螺杆的单轴拔出强度和插入扭矩进行了评价。此外,每个螺钉进行循环反复递增地增加生理负荷下直至发生screwhead位移为2mm。最大拔出力(N),最大扭矩插入(N·cm)以上,肘节周期和最大负荷(N)数须达到2毫米的位移screwhead比较有和没有增强的螺钉之间。结果:最大拔出力是用于与增强比那些螺钉显著强而不增大(302±19 N与254±17 N,P <0.05)。此外,最大插入扭矩显著与增强螺钉相比那些没有增强增加(48±4 N·厘米与26±5 N·cm时,P <0.05)。此外,所需的切换周期和最大负载数量达到位移2mm的刚与增强螺钉比那些没有增强(106±9对52±10个循环显著更大; 152±4 N与124±5 N,p <0.05)。结论:增强使用HA颗粒剂显著增强PPS固定在骨质疏松的骨模型的刚性。本研究表明,与HA颗粒新颖增强可以是用于在患者的骨质疏松脊柱PPS固定的有用技术。

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