多平面载荷对整个人类脊柱椎间盘内压力的影响:系统回顾和荟萃分析。

IF 3.2 3区 医学 Q3 CELL & TISSUE ENGINEERING
C Liebsch, H J Wilke
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引用次数: 3

摘要

对于脊柱负荷和肌肉力的估计以及数值模型和实验装置的验证,人体椎间盘内压力的数据是必不可少的。因此,本荟萃分析的目的是总结所有在规定的边界条件下进行的人体椎间盘内压力的体外测量,即没有外部载荷(内在压力),轴向载荷(压缩、牵引、剪切)和单平面弯曲载荷(屈曲、伸展、侧向弯曲、轴向旋转)。数据根据节段水平进行评估,并归一化为力和力矩。通过回归分析,探讨单一加载条件下椎间盘内压力与节段水平之间关系的决定系数和统计学意义。35项研究符合纳入标准,共收集451个数据点进行meta分析。轴向压缩(r2 = 0.875)和屈曲(r2 = 0.781)的决定系数较高,而内压(r2 = 0.266)和侧弯(r2 = 0.385)的决定系数较低,均显示显著的回归拟合(p < 0.01)。考虑到所有节段水平的相同载荷,在所有加载条件下,从上颈椎到骶骨的椎间盘内压力都减小,而胸椎中部的内压在回归曲线中最小。除了数值和实验模型验证的潜力之外,该数据集可能有助于理解人体脊柱的负荷分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of multiplanar loading on the intradiscal pressure of the whole human spine: systematic review and meta-analysis.

For spinal load and muscle force estimation as well as for numerical model and experimental setup validation, data on human intradiscal pressure are essential. Therefore, the aim of the present meta-analysis was to summarise all in vitro measurements of human intradiscal pressure performed under defined boundary conditions, i.e. without external loading (intrinsic pressure), under axial loading (compression, traction, shear) and under single-planar bending loading (flexion, extension, lateral bending, axial rotation). Data were evaluated based on segmental level and normalised to force and moment. Regression analysis was performed to investigate coefficients of determination and statistical significance of relationships between intradiscal pressure and segmental level for the single loading conditions. 35 studies fulfilled the inclusion criteria, from which a total of 451 data points were collected for the meta-analysis. High coefficients of determination were found in axial compression (r2 = 0.875) and flexion (r2 = 0.781), while being low for intrinsic pressure (r2 = 0.266) and lateral bending (r2 = 0.385), all showing significant regression fitting (p < 0.01). Intradiscal pressure decreases from the upper cervical spine to the sacrum in all loading conditions, considering the same amount of loading for all segmental levels, while the intrinsic pressure exhibits a minimum of the regression curve in the mid-thoracic spine. Apart from its potential for numerical and experimental model validation, this dataset may help to understand the load distribution along the human spine.

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来源期刊
European cells & materials
European cells & materials 生物-材料科学:生物材料
CiteScore
6.00
自引率
6.50%
发文量
55
审稿时长
1.5 months
期刊介绍: eCM provides an interdisciplinary forum for publication of preclinical research in the musculoskeletal field (Trauma, Maxillofacial (including dental), Spine and Orthopaedics). The clinical relevance of the work must be briefly mentioned within the abstract, and in more detail in the paper. Poor abstracts which do not concisely cover the paper contents will not be sent for review. Incremental steps in research will not be entertained by eCM journal.Cross-disciplinary papers that go across our scope areas are welcomed.
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