Tai Ching-Lung, Chen Li-Huei, Lee De-Mei, Liu Mu-Yi, Lai Po-Liang
Department of Orthopaedic Surgery, Chang Gung Memorial Hospital, Chang Gung University College of Medicine, Taoyuan, Taiwan.
BMC Musculoskelet Disord. 2014 Jun 9;15:197. doi: 10.1186/1471-2474-15-197.
The biomechanical performance of the hooks and screws in spinal posterior instrumentation is not well-characterized. Screw-bone interface failure at the uppermost and lowermost vertebrae is not uncommon. Some have advocated for the use of supplement hooks to prevent screw loosening. However, studies describing methods for combined hook and screw systems that fully address the benefits of these systems are lacking. Thus, the choice of which implant to use in a given case is often based solely on a surgeon's experience instead of on the biomechanical features and advantages of each device.
We conducted a biomechanical comparison of devices instrumented with different combinations of hooks and screws. Thirty-six fresh low thoracic porcine spines were assigned to three groups (12 per group) according to the configuration used for of fixation: (1) pedicle screw; (2) lamina hook and (3) combination of pedicle screw and lamina hook. Axial pullout tests backward on transverse plane in the direction normal to the rods were performed using a material testing machine and a specially designed grip with self-aligned function.
The pullout force for the pedicle screws group was significantly greater than for the hooks and the combination (p < 0.05). However, no significant difference was found between the hooks and the combination (p > 0.05).
Pedicle screws achieve the maximal pullout strength for spinal posterior instrumentation.
脊柱后路内固定中钩和螺钉的生物力学性能尚未得到充分表征。最上方和最下方椎体处的螺钉-骨界面失效并不罕见。一些人主张使用辅助钩来防止螺钉松动。然而,缺乏描述能充分体现这些系统优势的钩和螺钉联合系统方法的研究。因此,在特定病例中选择使用哪种植入物往往仅基于外科医生的经验,而非每种器械的生物力学特征和优势。
我们对采用不同钩和螺钉组合进行内固定的器械进行了生物力学比较。根据固定配置将36个新鲜的低胸椎猪脊柱分为三组(每组12个):(1)椎弓根螺钉;(2)椎板钩;(3)椎弓根螺钉和椎板钩组合。使用材料试验机和具有自对准功能的特殊设计夹具,在垂直于棒的横断面上进行轴向拔出试验。
椎弓根螺钉组的拔出力明显大于钩组和组合组(p < 0.05)。然而,钩组和组合组之间未发现显著差异(p > 0.05)。
椎弓根螺钉在脊柱后路内固定中能实现最大拔出强度。