立体视
计算机科学
可视化
计算机视觉
人工智能
生物医学中的光声成像
限制
血管造影
医学影像学
生物医学工程
放射科
边界(拓扑)
血流动力学
匹配移动
手术计划
领域(数学)
过程(计算)
血流
医学
跟踪(教育)
移动设备
灌注
计算机图形学(图像)
视野
作者
Haishu Xin,Erqi Wang,Rui Ma,Xin Chen,Yanshen Guo,Xinyue Huang,Fanjia Zeng,Yuanzheng Ma,Kaipeng Zhang,Ting Guo,Zhiyang Wang,Wuyu Zhang,Fei Yang,Yuqin Zhang,Sihua Yang
标识
DOI:10.1038/s41377-026-02401-7
摘要
The vascular network defines the perfusion boundaries that are fundamental to surgical resection and functional preservation. Photoacoustic angiography (PAA) offers stereoscopic visualization and quantification of microvascular anatomy and hemodynamics in vivo, but existing implementations remain constrained in field of view and imaging speed, limiting the intraoperative utility. Here, we introduce a real-time PAA tracking and mapping strategy that estimates the six degree-of-freedom motion of a handheld probe and reconstructs panoramic three-dimensional vascular maps for surgical guidance. By associating geometric and intensity-based hybrid vascular features to prevent degeneracy, the method achieves robust online mapping with 99.67% accuracy, even under dynamic freehand operation. In rat radical gastrectomy, the approach expanded the imaging boundary by 42.3-fold to 50.84 mm³ within 16.7 s, enabling panoramic microvascular visualization beyond the surgical field for preoperative planning, postoperative evaluation, and distal hemodynamic surveillance. This on-the-fly, freehand, and field-of-view-unconstrained PAA establishes a practical framework for vascular-focused surgical interventions, supporting precise and timely decision-making.
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