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Sagittal Radiographic Parameters of the Spine in Three Physiological Postures Characterized Using a Slot Scanner and Their Potential Implications on Spinal Weight-Bearing Properties

机译:三种生理姿势的脊柱矢状参数,其特征在于使用槽扫描仪及其对脊柱负重性能的潜在影响

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Study Design Prospective radiographic comparative study. Purpose To compare and understand the load-bearing properties of each functional spinal unit (FSU) using three commonly assumed, physiological, spinal postures, namely, the flexed (slump sitting), erect (standing) and extended (backward bending) postures. Overview of Literature Sagittal spinal alignment is posture-dependent and influences the load-bearing properties of the spine. The routine placement of intervertebral cages “as anterior as possible” to correct deformity may compromise the load-bearing capabilities of the spine, leading to complications. Methods We recruited young patients with nonspecific low back pain for 3 months, who were otherwise healthy. Each patient had EOS images taken in the flexed, erect and extended positions, in random order, as well as magnetic resonance imaging to assess for disk degeneration. Angular and disk height measurements were performed and compared in all three postures using paired t-tests. Changes in disk height relative to the erect posture were caclulated to determine the alignment-specific load-bearing area of each FSU. Results Eighty-three patients (415 lumbar intervertebral disks) were studied. Significant alignment changes were found between all three postures at L1/2, and only between erect and flexion at the other FSUs. Disk height measurements showed that the neutral axis of the spine, marked by zones where disk heights did not change, varied between postures and was level specific. The load-bearing areas were also found to be more anterior in flexion and more posterior in extension, with the erect spine resembling the extended spine to a greater extent. Conclusions Load-bearing areas of the lumbar spine are sagittal alignment-specific and level-specific. This may imply that, depending on the surgical realignment strategy, attention should be paid not just to placing an intervertebral cage “as anterior as possible” for generating lordosis, but also on optimizing load-bearing in the lumbar spine.
机译:研究设计前瞻性放射线照相比较研究。用三种常见的,生理,脊柱姿势进行比较和理解每个功能脊柱单元(FSU)的承载性能,即弯曲(坍落度),直立(站立)和延伸(向后弯曲)姿势。文学矢状脊柱对准概述是占地面积,影响脊柱的承载性能。椎间笼的常规放置“尽可能先”以校正畸形可能会损害脊柱的承载能力,导致并发症。方法我们招募了非特异性低腰疼痛的年轻患者,& 3个月,谁健康。每个患者以随机顺序的弯曲,直立和伸展位置拍摄EOS图像,以及磁共振成像,以评估磁盘退化。在使用配对T检验的所有三个姿势中进行角度和磁盘高度测量。磁盘高度相对于竖立姿势​​的变化被加工以确定每个FSU的对准特定承载区域。结果研究了八十三名患者(415名腰椎间盘)。在L1 / 2的所有三个姿势之间发现了显着的对准变化,并且仅在其他FSUS的竖立和屈曲之间进行了显着变化。磁盘高度测量表明,脊柱的中性轴,由磁盘高度没有变化的区域,在姿势之间变化,具体等级。还发现承载区域的屈曲和延伸延伸的更短,直立脊柱在更大程度上类似于延伸的脊柱。结论腰椎的承载区域是垂直对准和含量特异性的。这可能意味着,根据外科调节策略,应注意,不仅要注意椎间源性,而且还要注意为产生脊柱源性,而且还要在腰椎上优化承重轴承。

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