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Finite Element Analysis and Computer Aided Tissue Engineering Design of a Replacement Lumbar Intervertebral Disc

机译:置换腰椎间盘的有限元分析和计算机辅助组织工程设计

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The treatment of disc degeneration disease of the spinehas been a subject of particular interest in the medical community due to its effects on the lifestyle of afflicted patients. Current treatment modalities range from non-invasive treatment with physical therapy, to the invasive surgical repair of the degenerated disc(s). However, despite the existence of the setreatment methods, each has its own set of drawbacks and limitations, most notably the use of surgical intervention. Examples of such limitations have included the mechanical failure of spinal implants, the destruction of the vertebral bonestructure due to implant subsistence, graft site morbidity due tobone harvesting, and the promotion of disc degeneration at the surrounding spinal units. To overcome these limitations, a newimplant design was conceived combining the concepts of arthrodesis, arthroplasty, and fusion via bone graft, allowing forthe biological fusion of adjacent vertebra, in conjunction with theuse of tissue engineering principals. In addition, this newapproach to implant development, utilizing the practices ofcomputer aided tissue engineering, permits the patient specific design of the implant, enhancing the ability to match implant design and architecture with patient anatomy. Resulting fromthese design criteria, the proposed novel design eliminates thedrawbacks associated with the current vertebral implant designs, potentially extending both the lifespan and effectiveness of theimplant, thereby improving the long term outcomes for thetreatment of spinal disc degeneration.
机译:脊柱椎间盘退变疾病的治疗由于其对患病患者的生活方式的影响而成为医学界特别关注的主题。当前的治疗方式从物理疗法的非侵入性治疗到退化椎间盘的侵入性外科修复不等。然而,尽管存在治疗方法,但是每种方法都有其自身的缺点和局限性,最明显的是使用外科手术干预。此类局限性的例子包括脊柱植入物的机械故障,由于植入物的生存而导致的椎骨结构破坏,由于骨收集而导致的移植部位发病以及在周围的脊柱单位处促进椎间盘退变。为了克服这些局限性,构思了一种新的植入物设计,结合了关节固定术,关节置换术和通过骨移植进行融合的概念,并结合组织工程原理允许相邻椎骨的生物融合。另外,这种利用计算机辅助组织工程的实践进行的植入物开发新方法,允许患者进行植入物的特定设计,从而增强了将植入物设计和架构与患者解剖结构相匹配的能力。基于这些设计标准,所提出的新颖设计消除了与当前椎骨植入物设计相关的缺点,潜在地延长了植入物的寿命和有效性,从而改善了治疗椎间盘退变的长期效果。

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    《》|2006年|P.75-76|共2页
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    Evans; P.J.; Sun; W.;

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