椎体切除术
笼子
下沉
钛
医学
骨性融合
脊柱融合术
有限元法
外科
融合
生物医学工程
口腔正畸科
地质学
材料科学
颈椎
结构工程
射线照相术
工程类
地貌学
语言学
哲学
构造盆地
冶金
作者
Yuhang Wang,Yi Zhan,Yang Hui-ming,Hua Guo,Haiping Zhang,Qinpeng Zhao,Dingjun Hao,Biao Wang
标识
DOI:10.1038/s41598-021-94787-0
摘要
Fusion with a titanium mesh cage (TMC) has become popular as a conventional method after cervical anterior corpectomy, but postoperative TMC subsidence has often been reported in the literature. We designed a novel anatomic cervical TMC to reduce the postoperative subsidence rate. According to the test process specified in the American Society of Testing Materials (ASTM) F2267 standard, three-dimensional finite element analysis was used to compare the anti-subsidence characteristics of a traditional TMC (TTMC) and novel TMC (NTMC). Through analysis, the relative propensity values of a device to subside (Kp) of the TTMC and NTMC were 665.5 N/mm and 1007.2 N/mm, respectively. A higher Kp measurement is generally expected to indicate that the device is more resistant to subsidence into a vertebral body. The results showed that the novel anatomic titanium mesh cage (NTMC) significantly improved the anti-subsidence performance after anterior cervical corpectomy and fusion (ACCF), which was approximately 51.3% higher than that of the traditional titanium mesh cage.
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