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Biomechanical Analysis of Correction Force and Cobb Angle in A Simple Model of Scoliotic Spine Fixation

机译:劣质脊柱固定简单模型中校正力和钴钴角的生物力学分析

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Scoliosis is a medical condition in which a person's spine has a sideways curve. Treatment to reduce the scoliosis depends on the degree of curve, location, and causes. Surgery is commonly recommended by orthopedists for curves with a high progression by installing instruments that consist of pedicle screws, rods, and connectors. However, many cases of failure both in the implant instruments and the interface of bone and pedicle screw were found caused by high corrective force. The bigger Cobb angle directly means the increase of correction force, which acts on bone-implant interface during scoliosis surgery. In this paper, estimation of corrective forces during scoliosis fixation are investigated using Finite-element analysis (FEA). The research is carried out by modeling a normal and a scoliotic spine with specific Cobb 50.43 degrees. The forces are applied in various numbers of pedicles screws that implanted in thoracic spine, i.e single, three and five pairs of screws. It is found in numerical simulation that the total forces that are needed to fix the scoliotic spine are almost equal for five, three, and five pedicle screws in thoracic spine. However, the maximum force for each screw will increase significantly by reducing the number of screws. The biggest correction force for 5 screws is 54.5 N in the apical section, while it is 218 N for single screws. The higher force applied to a pedicle screw, the higher possibility to get failure and to be pulled out from the bone. It is needed to find the optimal number of using pedicle screws based of the working force, stress and implant cost.
机译:脊柱侧凸是一种医学条件,其中一个人的脊椎具有侧向曲线。减少脊柱侧凸的治疗取决于曲线,位置和原因的程度。通过安装椎弓根螺钉,杆和连接器的仪器,矫形器通常推荐手术。然而,由植入仪器和骨骼和椎弓根螺钉的界面中的许多失败病例被发现由高矫正力引起。较大的Cobb角度直接意味着校正力的增加,这在脊柱侧凸手术期间作用于骨植入界面。本文采用有限元分析(FEA)研究了脊柱侧凸固定期间矫正力的估计。该研究是通过使用特定COBB 50.43度的正常和脊柱脊柱进行建模进行的。该力应用于植入胸脊柱的各种数量的螺钉,即单个,三个和五对螺钉。在数值模拟中发现,固定脊柱脊柱所需的总力几乎相当于胸椎的五个,三个和五个椎弓根螺钉。然而,通过减少螺钉的数量,每个螺钉的最大力将显着增加。顶部部分的5个螺钉的最大校正力是54.5 n,而单螺钉是218 n。施加到椎弓根螺钉的较高力,较高的可能性才能发生故障并从骨中拉出。需要找到基于工件,应力和植入成本的使用椎弓根螺钉的最佳数量。

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