scholarly journals Clinical Efficacy of Anterior Partial Corpectomy and Titanium Mesh Fusion and Internal Fixation for Treatment of Old Fracture Dislocation of the Lower Cervical Spine

2017 ◽  
Vol 23 ◽  
pp. 5675-5682 ◽  
Author(s):  
De-chao Miao ◽  
Bao-yang Zhang ◽  
Tao Lei ◽  
Yong Shen
2020 ◽  
Author(s):  
Xiao-feng Zhao ◽  
Xiang-dong Lu ◽  
Yi-bo Zhao ◽  
De-tai Qi ◽  
Wen-xuan Wang ◽  
...  

Abstract BACKGROUND To observed and evaluated the clinical efficacy of a new type cervical anterior screw plate system development for anterior cervical surgery. Methods 27 patients with cervical spine disease treated with new PRUNUS nail plate internal fixation were selected as observation group, and 29 patients treated with conventional cervical anterior screw fixation were selected as the control group. Cervical stability, internal fixation position and bone graft fusion were evaluated according to imaging data. The operative time, intraoperative blood loss, cervical Cobb angle, VAS scores, and JOA scores were compared between the two groups. Spinal function scores and neurological improvement rates were used to evaluate the clinical efficacy of the new PRUNUS spine plate. Results There were statistical differences in operation time and blood loss between the two groups (P<0.05). The difference in Cobb angle, JOA score and improvement rate, VAS score before and after surgery in two groups were statistically significant (P<0.05), but no significant differences between two groups (P>0.05). Conclusion The new PRUNUS spine plate system can be applied to the anterior cervical spine surgery, and its clinical efficacy was similar to the traditional cervical anterior plate. But PRUNUS simplified the operation process, especially for the osteoporosis patients.


2004 ◽  
Vol 53 (4) ◽  
pp. 732-734
Author(s):  
Shinya Yuasa ◽  
Hideo Yasumatsu ◽  
Goro Higashi ◽  
Masataka Hirotsu ◽  
Kazunori Yone ◽  
...  

2021 ◽  
Author(s):  
ziyu li ◽  
Jianqiang Zhou ◽  
Zhijun Li ◽  
Shaojie Zhang ◽  
xing wang ◽  
...  

Abstract Background: Spinal injury in children usually occurs in the cervical spine region. Anterior fixation of lower cervical spine has been applied in the treatment of pediatric cervical spine injury and disease due to its stable and firm mechanical properties. This study performed finite element analysis and comparison of 4 different anterior cervical internal fixation systems for children, and explored more stable methods of anterior cervical internal fixation in children. Methods: A finite element model of 6-year-old children with lower cervical spine C4/5 discectomy was established, and the self-designed lower cervical spine anterior locking internal fixation system ACBLP and the children’s anterior cervical internal fixation system ACOP, ACVLP, ACSLP plate screws were fixed and loaded on the model. 27.42N•m torque load was applied to each internal fixation model under 6 working conditions of anteflexion, backward flexion, left flexion, right flexion, left rotation and right rotation, to simulate the movement of the cervical spine. The activity and stress distribution cloud diagram of each finite element model was obtained. Results: In the four internal fixation models of ACOP, ACVLP, ACSLP, and ACBLP, the mobility of C4/5 segment basically showed a decreasing relationship, and the mobility of adjacent segments increased significantly. In the Mises stress cloud diagram of the cervical spine of the four models, the vertebral body and accessories of the ACBLP model born the least stress, followed by ACSLP; The steel plate and screws in the ACVLP internal fixation model were the most stressed; The stress of the internal fixation system (plate/screw) in all models increased in the order of ACBLP, ACSLP, ACVLP, and ACOP.Conclusions: ACBLP internal fixation system had obvious advantages in anterior internal fixation of lower cervical spine in children, C4/5 had the smallest degree of movement, relative displacement was minimal, the stress on the pedicle was the least while the stress on the plate screw was relatively the smallest.


Neurosurgery ◽  
1984 ◽  
Vol 14 (1) ◽  
pp. 76-77 ◽  
Author(s):  
Hang S. Byun ◽  
Pratap P. Patel

Abstract An unusual fracture/dislocation of the lower cervical spine is described, and a possible mechanism of injury is postulated.


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