Three-dimensional morphometry of the human thoracic aorta using centerline analysis based on least-squares plane fitting.

JTCVS open Pub Date : 2024-09-24 eCollection Date: 2024-12-01 DOI:10.1016/j.xjon.2024.09.016
Hiroshi Nagamine, Kenji Kishita, Yuta Tsukada, Hiroshi Nagano, Mitsuru Asano
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Abstract

Objective: A novel approach to 3-dimensional morphometry of the thoracic aorta was developed by applying centerline analysis based on least-squares plane fitting, and a preliminary study was conducted using computed tomography imaging data.

Methods: We retrospectively compared 3 groups of patients (16 controls without aortic disease, and 16 cases each with acute type B aortic dissection and congenital bicuspid aortic valve). In addition to the standard assessment indices for curvature κ and torsion τ, we conducted coordinate transformation based on the least-squares plane, divided the centerline into 3 representative features (transverse, anterior-posterior, and longitudinal displacements), and analyzed the overall and local displacement in each direction. The transverse displacement, represented by the distance of the centerline from the least-squares plane, was curve-fitted to the damped oscillation waveform. Thereafter, damped oscillation parameters were compared for each group.

Results: Curvature κ exhibited a bimodal distribution, with peaks observed in the ascending aorta and aortic arch, and torsion τ exhibited a transition from positive to negative values in the arch. There were significant differences in the mean displacement between the groups for each direction (transverse P = .0083, anteroposterior P = .010, longitudinal P = 1.32 × 10-6). Furthermore, interval integral analysis revealed that several intervals exhibited significant differences between groups in each direction. The amplitude of damped oscillation parameters was significantly larger in the bicuspid aortic valve group than in the control and type B aortic dissection groups.

Conclusions: The novel analytical approach permitted a quantitative assessment of the 3-dimensional morphological differences between the control, type B aortic dissection, and bicuspid aortic valve groups.

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基于最小二乘平面拟合中心线分析的人胸主动脉三维形态测量。
目的:应用基于最小二乘平面拟合的中心线分析方法,建立胸主动脉三维形态测量新方法,并利用计算机断层成像数据进行初步研究。方法:回顾性比较3组患者(无主动脉疾病的对照组16例,急性B型主动脉夹层合并先天性双尖瓣主动脉瓣各16例)。除了曲率κ和扭转τ的标准评价指标外,我们基于最小二乘平面进行坐标变换,将中心线划分为3个代表性特征(横向、前后和纵向位移),并在每个方向上分析整体和局部位移。以中心线到最小二乘平面的距离表示的横向位移曲线拟合到阻尼振荡波形。然后比较各组的阻尼振荡参数。结果:曲率κ呈双峰分布,在升主动脉和主动脉弓处出现峰值,而扭转τ在主动脉弓处呈现由正向负的转变。各组间各方向平均移位量差异有统计学意义(横向P = 0.0083,正向P = 0.010,纵向P = 1.32 × 10-6)。此外,区间积分分析显示,多个区间在各方向上表现出组间显著差异。二尖瓣主动脉瓣组的阻尼振荡参数幅值明显大于对照组和B型主动脉夹层组。结论:新的分析方法可以定量评估对照组、B型主动脉夹层组和二尖瓣主动脉瓣组之间的三维形态学差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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