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首页> 外文期刊>Orthopaedic surgery >CT‐based Morphometric Analysis of Approach of Percutaneous Transforaminal Endoscopic Lumbar Interbody Fusion
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CT‐based Morphometric Analysis of Approach of Percutaneous Transforaminal Endoscopic Lumbar Interbody Fusion

机译:基于CT的经孔椎间孔内镜下腰椎椎间融合术的形态计量学分析

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Objectives A radiographic study was designed to measure the relationship of the exiting nerve root and its surroundings to the corresponding intervertebral disc for percutaneous transforaminal endoscopic lumbar interbody fusion to better understand the regional anatomy and to improve clinical applications. Methods A retrospective study from January 2017 to October 2017 was conducted at Tianjin Hospital. CT images were obtained from patients presenting low back pain (110 patients), and analysis was performed bilaterally from Lsub2‐3/sub to Lsub5/subSsub1/sub. In the rotating coronal plane we analyzed: the nerve root–dural sac distance at the superior and inferior margins of the disc (Js, Ji); the nerve root–pedicle distance at the medial, middle, and lateral borders of the pedicle (Pa, Pb, Pc); the pedicle width (W); and the safe working zone, defined as a trapezoid bounded by the inferior pedicle and the exiting nerve root (S). In the transverse plane, the nerve root‐articular process and the shortest distance for the nerve root‐articular process joint surface were analyzed at the superior and inferior margins of the disc (Gs, Gi), respectively. The groups were analyzed using ANOVA, and paired t ‐tests were used to compare the left and right sides. Results From Lsub2‐3/sub to Lsub5/subSsub1/sub, the distance of the nerve root to the dural sac was larger at the inferior margin of the disc. From Lsub2‐3/sub to Lsub5/subSsub1/sub, each segment of the vertebral nerve root‐pedicle distance gradually decreased from medial to lateral. From Lsub2‐3/sub to Lsub5/subSsub1/sub, the distance from the exiting nerve root to the middle and lateral margins of the pedicle gradually decreased, with Lsub5/subSsub1/sub being the minimum. Some significant differences were observed between the left and right sides for Lsub4‐5/sub and Lsub5/subSsub1/sub. The pedicle width of the vertebral body and the mean area for the safe working zone gradually increased from Lsub2‐3/sub to Lsub5/subSsub1/sub. In the axial plane, the shortest distance between the nerve root and articular process joint surface at the inferior margin of the disc was greater than the distance for the nerve root to the articular process at the superior margin of the disc from Lsub2‐3/sub to Lsub5/subSsub1/sub. There were no significant differences between the two sides. Conclusions It is more difficult to implant a cage with a width of 10 mm above the Lsub3‐4/sub level. By removing part of the superior articular process, the safe working area can be expanded, and damage to the nerve or other structures can be avoided when implanting a cage.
机译:目的进行放射学研究,以测量出口神经根及其周围环境与相应椎间盘之间的关系,以进行经皮经椎间孔内窥镜腰椎椎间融合治疗,以更好地了解局部解剖结构并改善临床应用。方法对2017年1月至2017年10月在天津医院进行的回顾性研究。从出现腰背痛的患者(110例)获得CT图像,并从L 2-3 到L 5 S 1 。在旋转的冠状平面中,我们分析了:椎间盘上缘和下缘的神经根-硬膜囊距离(Js,Ji);椎弓根内侧,中部和外侧边界的神经根-椎弓根距离(Pa,Pb,Pc);椎弓根宽度(W);安全工作区,定义为由下椎弓根和出口神经根(S)界定的梯形。在横切面上,分别在椎间盘的上缘和下缘(Gs,Gi)分析神经根关节突和神经根关节突关节面的最短距离。使用方差分析对各组进行分析,并使用配对的t检验比较左侧和右侧。结果从L 2-3-3 到L 5 S 1 ,神经根到硬膜囊的距离在下缘较远。光盘。从L 2-3-3 到L 5 S 1 ,椎神经根蒂距离的每个部分从内侧到外侧逐渐减小。从L 2-3-3 到L 5 S 1 ,从神经根到椎弓根中部和外侧边缘的距离逐渐减小,其中L 5 S 1 为最小值。 L 4-5 和L 5 S 1 的左侧和右侧之间存在一些显着差异。椎体的椎弓根宽度和安全工作区的平均面积从L 2-3 逐渐增加到L 5 S 1 。在轴平面中,椎间盘下缘神经根与关节突关节表面之间的最短距离大于椎间盘上缘距L 2的神经根至关节突的距离‐3 转换为L 5 S 1 。双方之间没有显着差异。结论植入高于L 3-4 水平10 mm宽度的笼子比较困难。通过去除上关节过程的一部分,可以扩大安全工作区域,并且在植入笼子时可以避免对神经或其他结构的损害。

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