arXiv:2503.12758cs.CVeess.IV2025-03CVPR被引 8

用3D血管树状态空间扩散模型,从非造影数据生成连续血管图像。

VasTSD: Learning 3D Vascular Tree-state Space Diffusion Model for Angiography Synthesis

  • 通过动态构建血管拓扑的态空间序列化方法,实现3D血管连续性建模。
  • 在多模态、多解剖区域数据上,合成血管连续性显著优于现有方法。
  • 适合医学影像生成、无辐射血管成像研究者使用。

血管造影是一种通过对比剂增强体内血管可视性的医学成像技术,有助于血管疾病诊断。然而,对比剂可能带来额外辐射暴露,对患者健康构成风险。为缓解这一问题,本文旨在从非造影输入自动生成血管造影图像,利用并强化血管结构的固有物理特性。以往基于2D切片的造影合成方法难以保持3D血管结构的连续性,且跨模态效果有限。为此,我们提出VasTSD——一种3D血管树态空间扩散模型,可从3D非造影体数据中合成血管造影。该方法采用新颖的态空间序列化策略,动态构建血管树拓扑,并与基于扩散的生成模型结合,确保生成3D体积中解剖学上连续的血管结构。通过预训练视觉嵌入器构建血管态空间表示,实现跨多种模态的一致血管结构建模。在多个血管造影数据集上的大量实验表明,VasTSD在多模态和不同解剖区域的合成血管连续性方面均优于现有方法。

原文摘要 · Abstract (English)

Angiography imaging is a medical imaging technique that enhances the visibility of blood vessels within the body by using contrast agents. Angiographic images can effectively assist in the diagnosis of vascular diseases. However, contrast agents may bring extra radiation exposure which is harmful to patients with health risks. To mitigate these concerns, in this paper, we aim to automatically generate angiography from non-angiographic inputs, by leveraging and enhancing the inherent physical properties of vascular structures. Previous methods relying on 2D slice-based angiography synthesis struggle with maintaining continuity in 3D vascular structures and exhibit limited effectiveness across different imaging modalities. We propose VasTSD, a 3D vascular tree-state space diffusion model to synthesize angiography from 3D non-angiographic volumes, with a novel state space serialization approach that dynamically constructs vascular tree topologies, integrating these with a diffusion-based generative model to ensure the generation of anatomically continuous vasculature in 3D volumes. A pre-trained vision embedder is employed to construct vascular state space representations, enabling consistent modeling of vascular structures across multiple modalities. Extensive experiments on various angiographic datasets demonstrate the superiority of VasTSD over prior works, achieving enhanced continuity of blood vessels in synthesized angiographic synthesis for multiple modalities and anatomical regions.

血管生成3D生成扩散模型

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