arXiv:2502.09482cs.CV2025-02被引 1

通过几何分析与增强,统一凸阵超声图像的标准化方法

Standardisation of Convex Ultrasound Data Through Geometric Analysis and Augmentation

  • 用环形扇区几何建模超声图像中的成像平面
  • 实现扫描线提取与凸面线性化,提升数据一致性
  • 适用于医疗超声算法开发,尤其适合数据稀疏场景

超声在医疗中应用日益广泛,但其数据驱动算法发展滞后,主要因设备多样、参数设置复杂导致图像差异巨大,缺乏标准化和基准数据集。本文提出一种新方法,通过分析超声数据稀疏性,提取图像中的潜在成像平面并以环形扇区几何表示。该方法可实现扫描线提取与凸面线性化,验证了在私有及公开数据上的鲁棒性,并研究了形变影响及基于环形扇区参数的增强可逆性。该框架为超声图像标准化提供有效解决方案。

原文摘要 · Abstract (English)

The application of ultrasound in healthcare has seen increased diversity and importance. Unlike other medical imaging modalities, ultrasound research and development has historically lagged, particularly in the case of applications with data-driven algorithms. A significant issue with ultrasound is the extreme variability of the images, due to the number of different machines available and the possible combination of parameter settings. One outcome of this is the lack of standardised and benchmarking ultrasound datasets. The method proposed in this article is an approach to alleviating this issue of disorganisation. For this purpose, the issue of ultrasound data sparsity is examined and a novel perspective, approach, and solution is proposed; involving the extraction of the underlying ultrasound plane within the image and representing it using annulus sector geometry. An application of this methodology is proposed, which is the extraction of scan lines and the linearisation of convex planes. Validation of the robustness of the proposed method is performed on both private and public data. The impact of deformation and the invertibility of augmentation using the estimated annulus sector parameters is also studied. Keywords: Ultrasound, Annulus Sector, Augmentation, Linearisation.

超声几何建模数据增强图像标准化

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