不重建直接找边缘,高效选择扫描方向提升成像质量
Adaptive Beam Selection for Efficient Scanning Probe Tomography

- 从投影数据直接识别边缘方向,跳过重建步骤
- 动态选择测量角度,减少冗余,提升重建精度
- 适合高精度扫描中降低剂量与时间的场景
在X射线断层扫描中,投影数量越多通常重建质量越高,但会增加实验成本、采集时间和辐射剂量。一种缓解方案是采用顺序实验设计,根据已有数据动态选择下一组测量方向以最大化信息增益。实践中常用启发式方法将射束对准样品边缘,但真实样品未知,通常需先重建才能定位边缘,这带来计算开销和误差风险。本文提出一种新方法,直接从原始sinogram中识别边缘对齐的测量方向,无需重建,显著提升计算效率并降低设计对重建误差的敏感性。该方法通过最大化一个平衡探索与利用的采集函数,动态选择下一组测量角度,在保持高质量重建的同时减少冗余测量。
原文摘要 · Abstract (English)
In X-ray tomography, reconstruction quality generally improves with larger numbers of projections. However, more projections increase experiment costs, acquisition time and the radiation dose imparted to the sample. One mitigation to these trade-offs is to adopt a sequential design of experiments, in which each subsequent measurement is determined as a function of previously acquired data in order to maximize information gain. In practice, a widely used heuristic to maximize information is to align beams with the edges of the sample. A key challenge, however, is that the true sample is unknown, so identifying edge-aligned beams typically requires reconstructing the sample based on available measurements. This work proposes a novel sequential design method that identifies edge-aligned measurements directly from the sinogram, bypassing any reconstruction, thereby improving computational efficiency and reducing the experimental design's susceptibility to reconstruction errors. Our method dynamically selects the next set of measurement beams by maximizing an acquisition function that balances exploration and exploitation over the domain of all possible measurements, improving reconstruction quality while reducing measurement redundancy.
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