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成年人群体中胸廓的整体形状变化。

Holistic shape variation of the rib cage in an adult population.

作者信息

Robinson Andrea, Zheng Bowen, von Kleeck B Wade, Tan Josh, Gayzik F Scott

机构信息

Department of Biomedical Engineering, Wake Forest University School of Medicine, Winston-Salem, NC, United States.

Virginia Tech-Wake Forest Center for Injury Biomechanics, Wake Forest University School of Medicine, Winston-Salem, NC, United States.

出版信息

Front Bioeng Biotechnol. 2024 Sep 18;12:1432911. doi: 10.3389/fbioe.2024.1432911. eCollection 2024.

Abstract

Traumatic injuries to the thorax are a common occurrence, and given the disparity in outcomes, injury risk is non-uniformly distributed within the population. Rib cage geometry, in conjunction with well-established biomechanical characteristics, is thought to influence injury tolerance, but quantifiable descriptions of adult rib cage shape as a whole are lacking. Here, we develop an automated pipeline to extract whole rib cage measurements from a large population and produce distributions of these measurements to assess variability in rib cage shape. Ten measurements of whole rib cage shape were collected from 1,719 individuals aged 25-45 years old including angular, linear, areal, and volumetric measures. The resulting pipeline produced measurements with a mean percent difference to manually collected measurements of 1.7% ± 1.6%, and the whole process takes 30 s per scan. Each measurement followed a normal distribution with a maximum absolute skew value of 0.43 and a maximum absolute excess kurtosis value of 0.6. Significant differences were found between the sexes ( < 0.001) in all except angular measures. Multivariate regression revealed that demographic predictors explain 29%-68% of the variance in the data. The angular measurements had the three lowest R values and were also the only three to have little correlation with subject stature. Unlike other measures, rib cage height had a negative correlation with BMI. Stature was the dominant demographic factor in predicting rib cage height, coronal area, sagittal area, and volume. Subject weight was the dominant demographic factor for rib cage width, depth, axial area, and angular measurements. Age was minimally important in this cohort of adults from a narrow age range. Individuals of similar height and weight had average rib cage measurements near the regression predictions, but the range of values across all subjects encompassed a large portion of their respective distributions. Our findings characterize the variability in adult rib cage geometry, including the variation within narrow demographic criteria. In future work, these can be integrated into computer aided engineering workflows to assess the influence of whole rib cage shape on the biomechanics of the adult human thorax.

摘要

胸部创伤很常见,鉴于结果存在差异,损伤风险在人群中的分布并不均匀。肋骨笼的几何形状,结合已确定的生物力学特征,被认为会影响损伤耐受性,但目前缺乏对整个成人肋骨笼形状的可量化描述。在此,我们开发了一种自动化流程,从大量人群中提取整个肋骨笼的测量数据,并生成这些测量数据的分布情况,以评估肋骨笼形状的变异性。我们从1719名年龄在25至45岁的个体中收集了10项关于整个肋骨笼形状的测量数据,包括角度、线性、面积和体积测量。由此产生的流程所生成的测量数据与手动收集的测量数据的平均百分比差异为1.7%±1.6%,且每次扫描整个过程耗时30秒。每项测量数据都呈正态分布,最大绝对偏度值为0.43,最大绝对峰度值为0.6。除角度测量外,所有测量在性别之间均存在显著差异(<0.001)。多变量回归显示,人口统计学预测因素解释了数据中29% - 68%的方差。角度测量的R值最低,也是仅有的与受试者身高几乎没有相关性的三项测量。与其他测量不同,肋骨笼高度与体重指数呈负相关。身高是预测肋骨笼高度、冠状面积、矢状面积和体积的主要人口统计学因素。受试者体重是肋骨笼宽度、深度、轴向面积和角度测量的主要人口统计学因素。在这个年龄范围较窄的成年人群体中,年龄的影响最小。身高和体重相似的个体,其肋骨笼测量的平均值接近回归预测值,但所有受试者的数值范围涵盖了各自分布的很大一部分。我们的研究结果描述了成人肋骨笼几何形状的变异性,包括在狭窄人口统计学标准内的变异。在未来的工作中,这些数据可整合到计算机辅助工程工作流程中,以评估整个肋骨笼形状对成人人胸部生物力学的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70bc/11445027/a8e958ce02e5/fbioe-12-1432911-g001.jpg

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