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开发用于小动物肿瘤成像的集成双模式三维生物发光断层成像和超声成像系统。

Development of an integrated dual-modality 3D bioluminescence tomography and ultrasound imaging system for small animal tumor imaging.

出版信息

Opt Express. 2024 Feb 12;32(4):5607-5620. doi: 10.1364/OE.507659.

Abstract

Ultrasound (US) is a valuable tool for imaging soft tissue and visualizing tumor contours. Taking the benefits of US, we presented an integrated dual-modality imaging system in this paper that achieves three-dimensional (3D) bioluminescence tomography (BLT) with multi-view bioluminescence images and 3D US imaging. The purpose of this system is to perform non-invasive, long-term monitoring of tumor growth in 3D images. US images can enhance the accuracy of the 3D BLT reconstruction and the bioluminescence dose within an object. Furthermore, an integrated co-registered scanning geometry was used to capture the fused BLT and US images. We validated the system with an in vivo experiment involving tumor-bearing mice. The results demonstrated the feasibility of reconstructing 3D BLT images in the tumor region using 3D US images. We used the dice coefficient and locational error to evaluate the similarity between the reconstructed source region and the actual source region. The dice coefficient was 88.5%, and the locational error was 0.4 mm when comparing the BLT and 3D US images. The hybrid BLT/US system could provide significant benefits for reconstructing the source of tumor location and conducting quantitative analysis of tumor size.

摘要

超声(US)是一种用于成像软组织和可视化肿瘤轮廓的有价值的工具。利用 US 的优势,我们在本文中提出了一种集成的双模成像系统,该系统通过多视角生物发光图像和 3D US 成像实现了三维(3D)生物发光断层扫描(BLT)。该系统的目的是在 3D 图像中进行非侵入性、长期的肿瘤生长监测。US 图像可以提高 3D BLT 重建和物体内部生物发光剂量的准确性。此外,还使用集成的共配准扫描几何结构来捕获融合的 BLT 和 US 图像。我们使用涉及荷瘤小鼠的体内实验验证了该系统。结果表明,使用 3D US 图像重建肿瘤区域的 3D BLT 图像是可行的。我们使用骰子系数和位置误差来评估重建源区域与实际源区域之间的相似性。BLT 和 3D US 图像的骰子系数为 88.5%,位置误差为 0.4 毫米。混合 BLT/US 系统可以为重建肿瘤位置的源和进行肿瘤大小的定量分析提供重要的益处。

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