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双节段腰椎减压术后不同棘突间装置设计对节段内和相邻节段的影响:有限元分析。

Effect of different designs of interspinous process devices on the instrumented and adjacent levels after double-level lumbar decompression surgery: A finite element analysis.

机构信息

Department of Biomedical Engineering, National Yang-Ming University, Taipei, Taiwan.

Department of Orthopedic Surgery, Dali Branch, Jen-Ai Hospital, Taichung, Taiwan.

出版信息

PLoS One. 2020 Dec 30;15(12):e0244571. doi: 10.1371/journal.pone.0244571. eCollection 2020.

Abstract

Recently, various designs and material manufactured interspinous process devices (IPDs) are on the market in managing symptomatic lumbar spinal stenosis (LSS). However, atraumatic fracture of the intervening spinous process has been reported in patients, particularly, double or multiple level lumbar decompression surgery with IPDs. This study aimed to biomechanically investigate the effects of few commercial IPDs, namely DIAMTM, CoflexTM, and M-PEEK, which were implanted into the L2-3, L3-4 double-level lumbar spinal processes. A validated finite element model of musculoskeletal intact lumbar spinal column was modified to accommodate the numerical analysis of different implants. The range of motion (ROM) between each vertebra, stiffness of the implanted level, intra stress on the intervertebral discs and facet joints, and the contact forces on spinous processes were compared. Among the three implants, the Coflex system showed the largest ROM restriction in extension and caused the highest stress over the disc annulus at the adjacent levels, as well as the sandwich phenomenon on the spinous process at the instrumented levels. Further, the DIAM device provided a superior loading-sharing between the two bridge supports, and the M-PEEK system offered a superior load-sharing from the superior spinous process to the lower pedicle screw. The limited motion at the instrumented segments were compensated by the upper and lower adjacent functional units, however, this increasing ROM and stress would accelerate the degeneration of un-instrumented segments.

摘要

最近,市场上出现了各种设计和材料制造的棘突间装置(IPD),用于治疗有症状的腰椎管狭窄症(LSS)。然而,有报道称,在接受 IPD 治疗的患者中,特别是在接受双节段或多节段腰椎减压手术的患者中,棘突间会发生无创伤性骨折。本研究旨在从生物力学角度研究几种商业 IPD 的效果,即 DIAMTM、CoflexTM 和 M-PEEK,这些 IPD 被植入 L2-3、L3-4 双节段腰椎棘突。修改了完整的肌肉骨骼腰椎脊柱的验证有限元模型,以适应不同植入物的数值分析。比较了每个椎骨之间的活动范围(ROM)、植入水平的刚度、椎间盘和小关节内的内应力以及棘突上的接触力。在这三种植入物中,Coflex 系统在伸展时限制 ROM 的效果最大,导致相邻节段的椎间盘环上的应力最高,以及在器械节段的棘突上出现三明治现象。此外,DIAM 装置在两个桥接支撑之间提供了更好的负载分担,而 M-PEEK 系统则在从上级棘突到下级椎弓根提供了更好的负载分担。器械节段的运动受限由上下相邻的功能单元补偿,但这种增加的 ROM 和应力会加速未器械节段的退化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b367/7773253/cd257c29e269/pone.0244571.g001.jpg

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