Bin Zhang , Tian-Cheng Li , Xin Wang , Cheng-Fei Du , Rui Zhu
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In this study, a compressive follower load of 500 N and a sinusoidal axial vertical load of ±40 N at the frequency of 5 Hz with a duration of 0.6 s was applied. The results showed that the bilateral pedicle screw fixation model had the highest resistance to cage subsidence and maintenance of disc height under WBV. In contrast, the lateral plate fixation model exerted very high stresses on important tissues, which would be detrimental to the patient's late recovery and reduction of complications. Therefore, this study suggests that drivers and related practitioners who are often in vibrating environments should have bilateral pedicle screws for OLIF surgery, and side plates are not recommended to be used as a separate immobilization system. 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引用次数: 0
摘要
尽管由腰椎退行性病变引起的下背痛严重影响着人们的生活质量,然而,有关其主要治疗方法(斜腰椎椎间融合术)的不同辅助固定系统在振动环境下的生物力学特性的研究却很少。为了研究 OLIF 手术的不同固定系统对人体腰椎在全身振动(WBV)条件下的振动特性的影响,通过修改之前建立的正常腰椎(L1-S1)模型,建立了具有五种不同固定系统的 OLIF 手术有限元(FE)模型。在该研究中,施加了 500 N 的压缩随动载荷和 ±40 N 的正弦轴向垂直载荷,频率为 5 Hz,持续时间为 0.6 秒。结果显示,双侧椎弓根螺钉固定模型在 WBV 下抗椎弓根下沉和保持椎间盘高度的能力最强。相比之下,侧板固定模型对重要组织产生的应力非常大,不利于患者的后期恢复和并发症的减少。因此,本研究建议经常处于振动环境中的司机和相关从业人员在进行 OLIF 手术时应使用双侧椎弓根螺钉,不建议将侧板作为单独的固定系统使用。此外,也不建议将侧板作为单独的固定系统使用。
The effect of different fixation systems on oblique lumbar interbody fusion under vibration conditions
Despite the fact that lower back pain caused by degenerative lumbar spine pathologies seriously affects the quality of life, however, there is a paucity of research on the biomechanical properties of different auxiliary fixation systems for its primary treatment (oblique lumbar interbody fusion) under vibratory environments. In order to study the effects of different fixation systems of OLIF surgery on the vibration characteristics of the human lumbar spine under whole-body vibration (WBV), a finite element (FE) model of OLIF surgery with five different fixation systems was established by modifying a previously established model of the normal lumbar spine (L1–S1). In this study, a compressive follower load of 500 N and a sinusoidal axial vertical load of ±40 N at the frequency of 5 Hz with a duration of 0.6 s was applied. The results showed that the bilateral pedicle screw fixation model had the highest resistance to cage subsidence and maintenance of disc height under WBV. In contrast, the lateral plate fixation model exerted very high stresses on important tissues, which would be detrimental to the patient's late recovery and reduction of complications. Therefore, this study suggests that drivers and related practitioners who are often in vibrating environments should have bilateral pedicle screws for OLIF surgery, and side plates are not recommended to be used as a separate immobilization system. Additionally, the lateral plate is not recommended to be used as a separate fixation system.
期刊介绍:
Medical Engineering & Physics provides a forum for the publication of the latest developments in biomedical engineering, and reflects the essential multidisciplinary nature of the subject. The journal publishes in-depth critical reviews, scientific papers and technical notes. Our focus encompasses the application of the basic principles of physics and engineering to the development of medical devices and technology, with the ultimate aim of producing improvements in the quality of health care.Topics covered include biomechanics, biomaterials, mechanobiology, rehabilitation engineering, biomedical signal processing and medical device development. Medical Engineering & Physics aims to keep both engineers and clinicians abreast of the latest applications of technology to health care.