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一种基于 CBCT 的几何形态测量学和复杂度评分的评估人类腭中缝的新方法。

A novel method for assessment of human midpalatal sutures using CBCT-based geometric morphometrics and complexity scores.

机构信息

Section of Orthodontics, Department of Dentistry and Oral Health, Aarhus University, Vennelyst Blvd. 9, 8000, Aarhus, Denmark.

Orthodontic Practice, Luisenstrasse 10/11, 30159, Hannover, Germany.

出版信息

Clin Oral Investig. 2023 Aug;27(8):4361-4368. doi: 10.1007/s00784-023-05055-6. Epub 2023 May 13.

Abstract

INTRODUCTION

Management of dentofacial deficiencies requires knowledge about sutural morphology and complexity. The present study assesses midpalatal sutural morphology based on human cone-beam computed tomography (CBCT) using geometric morphometrics (GMM) and complexity scores. The study is the first to apply a sutural complexity score to human CBCT datasets and demonstrates the potential such a score has to improve objectiveness and comparability when analysing the midpalatal suture.

MATERIALS AND METHODS

CBCTs of various age and sex groups were analysed retrospectively (n = 48). For the geometric morphometric analysis, landmark acquisition and generalised Procrustes superimposition were combined with principal component analysis to detect variability in sutural shape patterns. For complexity analysis, a windowed short-time Fourier transform with a power spectrum density (PSD) calculation was applied to resampled superimposed semi-landmarks.

RESULTS

According to the GMM, younger patients exhibited comparable sutural patterns. With increasing age, the shape variation increased among the samples. The principal components did not sufficiently capture complexity patterns, so an additional methodology was applied to assess characteristics such as sutural interdigitation. According to the complexity analysis, the average PSD complexity score was 1.465 (standard deviation = 0.010). Suture complexity increased with patient age (p < 0.0001), but was not influenced by sex (p = 0.588). The intra-class correlation coefficient exceeded 0.9, indicating intra-rater reliability.

CONCLUSION

Our study demonstrated that GMM applied to human CBCTs can reveal shape variations and allow the comparison of sutural morphologies across samples. We demonstrate that complexity scores can be applied to study human sutures captured in CBCTs and complement GMM for a comprehensive sutural analysis.

摘要

简介

牙颌面畸形的治疗需要了解颌骨缝的形态和复杂性。本研究应用几何形态测量学(GMM)和复杂度评分,基于人体锥形束 CT(CBCT)评估正中骺缝形态。该研究首次将缝复杂度评分应用于人体 CBCT 数据集,证明了该评分在分析正中骺缝时提高客观性和可比性的潜力。

材料和方法

回顾性分析了来自不同年龄和性别的 CBCT(n=48)。对于几何形态测量分析,采用标志点获取和广义 Procrustes 叠加,并结合主成分分析,检测缝形态模式的变异性。对于复杂度分析,采用具有功率谱密度(PSD)计算的窗口短时傅里叶变换,对重采样的叠加半标志点进行分析。

结果

根据 GMM,年轻患者的缝形态相似。随着年龄的增长,样本间的形状变化增加。主成分不能充分捕捉复杂模式,因此应用了额外的方法来评估缝的交错等特征。根据复杂度分析,平均 PSD 复杂度评分为 1.465(标准差=0.010)。缝复杂度随患者年龄增加而增加(p<0.0001),但不受性别影响(p=0.588)。组内相关系数大于 0.9,表明评分者内可靠性良好。

结论

我们的研究表明,应用于人体 CBCT 的 GMM 可以揭示形状变化,并允许对样本间的缝形态进行比较。我们证明复杂度评分可应用于研究 CBCT 中捕获的人类缝,并补充 GMM 进行全面的缝分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aabb/10415503/629598bfbf34/784_2023_5055_Fig1_HTML.jpg

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