arXiv:2602.05884cs.CVcs.AI2026-02

用稀疏CT片重建心脏3D形状,提升超声定量精度

Neural Implicit 3D Cardiac Shape Reconstruction from Sparse CT Angiography Slices Mimicking 2D Transthoracic Echocardiography Views

  • 用神经隐式函数从稀疏切片恢复心脏3D结构
  • 心脏腔室平均Dice达0.86,体积误差显著低于传统方法
  • 适合心脏超声量化研究者,尤其关注3D重构的临床应用

精确的心脏3D结构表征可实现解剖与功能的定量分析。本文提出一种从CT血管造影(CTA)稀疏切片中重建完整心脏3D形态的方法,适用于模拟2D经胸超声心动图(TTE)视角。方法利用神经隐式函数,基于目标结构在CTA中的3D分割学习形状先验,通过多层感知机训练。测试时,网络联合优化潜在编码与刚性变换,将模拟的四个标准心尖视图的分割结果映射至3D空间,重建心腔与左心室心肌。在独立测试集上,所有结构平均Dice系数为0.86±0.04;左心室体积误差4.88±4.26 mL,显著低于临床标准辛普森双平面法的8.14±6.04 mL;左心房误差6.40±7.37 mL,远低于辛普森法的37.76±22.96 mL。结果表明,该方法为2D TTE提供了一条更精准的心脏腔室量化路径。

原文摘要 · Abstract (English)

Accurate 3D representations of cardiac structures allow quantitative analysis of anatomy and function. In this work, we propose a method for reconstructing complete 3D cardiac shapes from segmentations of sparse planes in CT angiography (CTA) for application in 2D transthoracic echocardiography (TTE). Our method uses a neural implicit function to reconstruct the 3D shape of the cardiac chambers and left-ventricle myocardium from sparse CTA planes. To investigate the feasibility of achieving 3D reconstruction from 2D TTE, we select planes that mimic the standard apical 2D TTE views. During training, a multi-layer perceptron learns shape priors from 3D segmentations of the target structures in CTA. At test time, the network reconstructs 3D cardiac shapes from segmentations of TTE-mimicking CTA planes by jointly optimizing the latent code and the rigid transforms that map the observed planes into 3D space. For each heart, we simulate four realistic apical views, and we compare reconstructed multi-class volumes with the reference CTA volumes. On a held-out set of CTA segmentations, our approach achieves an average Dice coefficient of 0.86 $\pm$ 0.04 across all structures. Our method also achieves markedly lower volume errors than the clinical standard, Simpson's biplane rule: 4.88 $\pm$ 4.26 mL vs. 8.14 $\pm$ 6.04 mL, respectively, for the left ventricle; and 6.40 $\pm$ 7.37 mL vs. 37.76 $\pm$ 22.96 mL, respectively, for the left atrium. This suggests that our approach offers a viable route to more accurate 3D chamber quantification in 2D transthoracic echocardiography.

3D重建心脏建模医学影像神经隐式

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。