Srinivas Gunti Ranga, Kumar Malhar N, Deb Anindya
Mahindra Technical Academy, Chennai, India.
HOSMAT Hospital, McGrath Road, Bangalore, India.
Asian Spine J. 2017 Aug;11(4):538-547. doi: 10.4184/asj.2017.11.4.538. Epub 2017 Aug 7.
Experimental study.
The study aimed to develop a finite element (FE) model to determine the stress on the discs adjacent to the fused segment following different types of floating lumbar spinal fusions.
The quantification of the adjacent disc stress following different types of floating lumbar fusions has not been reported. The magnitude of the stress on the discs above and below the floating fusion remains unknown.
A computer-aided engineering-based approach using implicit FE analysis was employed to assess the stress on the lumbar discs above and below the floating fusion segment (L4-L5) following anterior and posterior lumbar spine fusions at one, two, and three levels (with and without instrumentation).
Both discs suprajacent and infrajacent to the floating fusion experienced increased stress, but the suprajacent disc experienced relatively high stress level. Instrumentation increased the stress on the discs suprajacent and infrajacent to the floating fusion, but the magnitude of stress on the suprajacent disc remained relatively high.
The FE model was employed under similar loading and boundary conditions to provide quantitative data, which will be useful for clinicians to understand the probable long-term effects of floating fusions.
实验性研究。
本研究旨在建立一个有限元(FE)模型,以确定不同类型的浮动腰椎融合术后融合节段相邻椎间盘的应力。
不同类型的浮动腰椎融合术后相邻椎间盘应力的量化尚未见报道。浮动融合上下椎间盘的应力大小仍不清楚。
采用基于计算机辅助工程的隐式有限元分析方法,评估在L4-L5浮动融合节段上下的腰椎间盘在单节段、双节段和三节段前后路腰椎融合术(有无内固定)后的应力。
浮动融合节段上下的椎间盘应力均增加,但上方椎间盘的应力水平相对较高。内固定增加了浮动融合节段上下椎间盘的应力,但上方椎间盘的应力大小仍相对较高。
在相似的载荷和边界条件下使用有限元模型提供定量数据,这将有助于临床医生了解浮动融合可能的长期影响。