Salunke Pravin, Karthigeyan Madhivanan, Uniyal Piyush, Mishra Keshav, Gupta Tulika, Kumar Navin
Department of Neurosurgery, Postgraduate Institute of Medical Education & Research (PGIMER), Chandigarh, India.
Department of Neurosurgery, Postgraduate Institute of Medical Education & Research (PGIMER), Chandigarh, India.
World Neurosurg. 2023 Apr;172:e144-e150. doi: 10.1016/j.wneu.2022.12.120. Epub 2022 Dec 30.
Pedicle screw fixation provides one of the most stable spinal constructs. Their designs together with osseous characteristics have been known to influence the screw-bone interplay during surgical maneuvers and thereafter the fusion process. Various technical modifications to enhance screw performance have been suggested. This study evaluated the pull-out strength and axial stiffness of a novel pedicle screw design with variable thread geometry and pitch.
The newly designed triple threaded pedicle screw is tapered, and has unique out-turned flanges to hold the cancellous bone and a finer pitch at its distal and proximal end to engage the cortical bone. Five lumbar and 4 lower thoracic cadaveric vertebrae were divided into hemivertebrae. A standard cancellous pedicle screw and the newly designed pedicle screw were inserted into each hemivertebra. Axial stiffness and peak pull-out force between the screw types were compared; a finite element analysis was also performed to additionally compare the pull out under toggle forces.
In cadaveric study, the axial stiffness of the new screw was significantly better than that of the standard screw. However, the peak load between the screws was not statistically different. Finite element analyses suggested lesser stress at bone-implant interface for the new screw along with better axial stiffness under both co-axial and toggle forces.
Our novel pedicle screw design with variable thread geometry demonstrates greater axial stiffness compared with the standard screws, and therefore is likely to withstand a greater surgical manipulation.
椎弓根螺钉固定提供了最稳定的脊柱结构之一。已知其设计与骨质特征会在手术操作过程中影响螺钉与骨的相互作用,进而影响融合过程。已提出了各种技术改进以提高螺钉性能。本研究评估了一种具有可变螺纹几何形状和螺距的新型椎弓根螺钉设计的拔出强度和轴向刚度。
新设计的三螺纹椎弓根螺钉呈锥形,具有独特的向外翻的凸缘以固定松质骨,并且在其远端和近端具有更细的螺距以接合皮质骨。将5个腰椎和4个下胸椎尸体椎骨分成半椎骨。将标准的松质椎弓根螺钉和新设计的椎弓根螺钉分别插入每个半椎骨中。比较螺钉类型之间的轴向刚度和峰值拔出力;还进行了有限元分析以额外比较在Toggle力作用下的拔出情况。
在尸体研究中,新螺钉的轴向刚度明显优于标准螺钉。然而,螺钉之间的峰值载荷在统计学上没有差异。有限元分析表明,新螺钉在骨 - 植入物界面处的应力较小,并且在同轴力和Toggle力作用下均具有更好的轴向刚度。
我们具有可变螺纹几何形状的新型椎弓根螺钉设计与标准螺钉相比表现出更大的轴向刚度,因此可能能够承受更大的手术操作。