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本文引用的文献

1
Sagittal lumbar and pelvic alignment in the standing and sitting positions.站立位和坐位时腰椎矢状面及骨盆的对线情况。
J Orthop Sci. 2012 Nov;17(6):682-6. doi: 10.1007/s00776-012-0281-1. Epub 2012 Aug 23.
2
Comparative evaluation of a novel measurement tool to assess lumbar spine posture and range of motion.一种新型测量工具评估腰椎姿势和活动范围的对比评估。
Eur Spine J. 2012 Nov;21(11):2170-80. doi: 10.1007/s00586-012-2312-1. Epub 2012 Apr 29.
3
A comparison study on the change in lumbar lordosis when standing, sitting on a chair, and sitting on the floor in normal individuals.正常个体站立、坐在椅子上和坐在地板上时腰椎前凸变化的比较研究。
J Korean Neurosurg Soc. 2012 Jan;51(1):20-3. doi: 10.3340/jkns.2012.51.1.20. Epub 2012 Jan 31.
4
The accuracy of active shape modelling and end-plate measurements for characterising the shape of the lumbar spine in the sagittal plane.主动形状模型和终板测量在矢状面表征腰椎形状方面的准确性。
Comput Methods Biomech Biomed Engin. 2012;15(2):167-72. doi: 10.1080/10255842.2010.518962. Epub 2011 May 24.
5
Spino-pelvic sagittal balance of spondylolisthesis: a review and classification.脊柱-骨盆矢状面平衡与腰椎滑脱:综述与分类。
Eur Spine J. 2011 Sep;20 Suppl 5(Suppl 5):641-6. doi: 10.1007/s00586-011-1932-1. Epub 2011 Aug 2.
6
Semi-automatic determination of detailed vertebral shape from lumbar radiographs using active appearance models.使用主动外观模型半自动确定腰椎 X 光片的详细椎体形状。
Osteoporos Int. 2012 Feb;23(2):655-64. doi: 10.1007/s00198-011-1604-3. Epub 2011 Mar 23.
7
Spinal muscles can create compressive follower loads in the lumbar spine in a neutral standing posture.在中立站位时,脊柱肌肉会在腰椎上产生压迫性的随动负荷。
Med Eng Phys. 2011 May;33(4):472-8. doi: 10.1016/j.medengphy.2010.11.014. Epub 2010 Dec 15.
8
Different arm positions and the shape of the thoracic spine can explain contradictory results in the literature about spinal loads for sitting and standing.不同的手臂位置和胸椎形状可以解释有关坐姿和站姿脊柱负荷的文献中出现的矛盾结果。
Spine (Phila Pa 1976). 2010 Oct 15;35(22):2015-21. doi: 10.1097/BRS.0b013e3181d55d52.
9
Predictive equations to estimate spinal loads in symmetric lifting tasks.预测对称举升任务中脊柱负荷的方程。
J Biomech. 2011 Jan 4;44(1):84-91. doi: 10.1016/j.jbiomech.2010.08.028. Epub 2010 Sep 17.
10
Three-dimensional spine kinematics during multidirectional, target-directed trunk movement in sitting.坐姿下多方向、目标导向的躯干运动中的三维脊柱运动学。
J Electromyogr Kinesiol. 2010 Oct;20(5):823-32. doi: 10.1016/j.jelekin.2009.07.005. Epub 2009 Aug 11.

腰椎具有个体特异性的固有形状,在屈伸过程中保持不变。

The lumbar spine has an intrinsic shape specific to each individual that remains a characteristic throughout flexion and extension.

机构信息

Musculoskeletal Research Programme, Division of Applied Medicine, Institute of Medical Sciences, University of Aberdeen, Foresterhill, AB25 2ZD, Aberdeen, UK,

出版信息

Eur Spine J. 2014 Apr;23 Suppl 1(Suppl 1):S26-32. doi: 10.1007/s00586-013-3162-1. Epub 2014 Jan 11.

DOI:10.1007/s00586-013-3162-1
PMID:24413745
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3946102/
Abstract

PURPOSE

We have previously shown that the lumbar spine has an intrinsic shape specific to the individual and characteristic of sitting, standing and supine postures. The purpose of this study was to test the hypothesis that this intrinsic shape is detectable throughout a range of postures from extension to full flexion in healthy adults.

METHODS

Sagittal images of the lumbar spine were taken using a positional MRI with participants (n = 30) adopting six postures: seated extension, neutral standing, standing with 30, 45 and 60° and full flexion. Active shape modelling (ASM) was used to identify and quantify 'modes' of variation in the shape of the lumbar spine.

RESULTS

ASM showed that 89.5% of the variation in the shape of the spine could be explained by the first two modes; describing the overall curvature and the distribution of curvature of the spine. Mode scores were significantly correlated between all six postures (modes 1-9, r = 0.4-0.97, P < 0.05), showing that an element of intrinsic shape was maintained when changing postures. The spine was most even in seated extension (P < 0.001) and most uneven between 35 and 45° flexion (P < 0.05).

CONCLUSIONS

This study shows that an individual's intrinsic lumbar spine shape is quantifiable and detectable throughout lumbar flexion and extension. These findings will enable the role of lumbar curvature in injury and low back pain to be assessed in the clinic and in the working and recreational environments.

摘要

目的

我们之前已经表明,腰椎具有个体特异性的固有形状,并且与坐姿、站姿和仰卧位有关。本研究的目的是验证以下假设,即这种固有形状在健康成年人从伸展到完全屈曲的一系列姿势中都可以被检测到。

方法

使用位置磁共振成像(MRI)拍摄腰椎矢状图像,让参与者(n=30)采取六种姿势:坐姿伸展、中立位站立、站立时分别为 30°、45°和 60°以及完全屈曲。主动形状建模(ASM)用于识别和量化腰椎形状的“模式”变化。

结果

ASM 显示,脊柱形状的 89.5%的变化可以用前两个模式来解释;描述脊柱的整体曲率和曲率分布。模式评分在所有六种姿势之间都显著相关(模式 1-9,r=0.4-0.97,P<0.05),表明在改变姿势时保持了固有形状的一部分。坐姿伸展时脊柱最均匀(P<0.001),35 度到 45 度屈曲时最不均匀(P<0.05)。

结论

本研究表明,个体的固有腰椎形状是可量化和可检测的,贯穿于腰椎的伸展和屈曲。这些发现将使评估腰椎曲率在损伤和腰痛中的作用成为可能,无论是在临床环境还是在工作和娱乐环境中。