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首页> 外文期刊>Spine >Augmentation of anterior vertebral body screw fixation by an injectable, biodegradable calcium phosphate bone substitute.
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Augmentation of anterior vertebral body screw fixation by an injectable, biodegradable calcium phosphate bone substitute.

机译:通过可注射,可生物降解的磷酸钙骨替代物增强椎体前螺钉固定。

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摘要

STUDY DESIGN: A biomechanical study to evaluate the effects of a biodegradable calcium phosphate (Ca-P) bone substitute on the fixation strength and bending rigidity of vertebral body screws. OBJECTIVES: To determine if an injectable, biodegradable Ca-P bone substitute provides significant augmentation of anterior vertebral screw fixation in the osteoporotic spine. SUMMARY OF BACKGROUND DATA: Polymethylmethacrylate (PMMA) augmented screws have been used clinically; however, there is concern about thermal damage to the neural elements during polymerization of the PMMA as well as its negative effects on bone remodeling. Injectable, biodegradable Ca-P bone substitutes have shown enhanced fixation of pedicle screws. METHODS: Sixteen fresh cadaveric thoracolumbar vertebrae were randomly divided into two groups: control (no augmentation) (n = 8) and Ca-P bone substitute augmentation (n = 8) groups. Bone-screw fixation rigidity in bending was determined initially and after 10(5) cycles, followed by pullout testing of the screw to failure to determine pullout strength and stiffness. RESULTS: The bone-screw bending rigidity for the Ca-P bone substitute group was significantly greater than the control group, initially (58%) and after cyclic loading (125%). The pullout strength for Ca-P bone substitute group (1848 +/- 166 N) was significantly greater than the control group (665 +/- 92 N) (P < 0.01). Stiffness in pullout for the Ca-P bone substitute groups (399 +/- 69 N/mm) was significantly higher than the control group (210 +/- 51 N/mm) (P < 0.01). CONCLUSION: This study demonstrated that augmentation of anterior vertebral body screw fixation with a biodegradable Ca-P bone substitute is a potential alternative to the use of PMMA cement.
机译:研究设计:一项生物力学研究,评估可生物降解的磷酸钙(Ca-P)骨替代物对椎体螺钉的固定强度和弯曲刚度的影响。目的:确定可注射,可生物降解的Ca-P骨替代物是否能显着增加骨质疏松性脊柱中的前椎螺钉固定。背景技术摘要:聚甲基丙烯酸甲酯(PMMA)增强螺丝已在临床上使用;然而,人们担心在PMMA聚合过程中神经元受到热损伤,以及其对骨骼重塑的负面影响。可注射,可生物降解的Ca-P骨替代品显示出增强的椎弓根螺钉固定性。方法:将十六个新鲜的尸体胸腰椎椎骨随机分为两组:对照组(不增加)(n = 8)和Ca-P骨替代物增加(n = 8)组。首先确定弯曲时的骨螺钉固定刚度,并在10(5)个循环后确定,然后对螺钉进行拉拔测试,直到无法确定拉拔强度和刚度。结果:Ca-P骨替代组的骨螺钉抗弯刚度显着高于对照组,最初(58%)和循环负荷后(125%)。 Ca-P骨替代组的抗拉强度(1848 +/- 166 N)明显大于对照组(665 +/- 92 N)(P <0.01)。 Ca-P骨替代组的拔出刚度(399 +/- 69 N / mm)明显高于对照组(210 +/- 51 N / mm)(P <0.01)。结论:这项研究表明,用可生物降解的Ca-P骨替代物增强椎体前螺钉固定是使用PMMA水泥的潜在替代方法。

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