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用于绘制肠绞窄中组织氧饱和度分布的双模态超声/光声断层扫描

Dual-modality ultrasound/photoacoustic tomography for mapping tissue oxygen saturation distribution in intestinal strangulation.

作者信息

Zhou Jie, Ou Mengchuan, Yuan Bo, Yan Binzi, Wang Xichuan, Qiao Shuaiqi, Huang Yijie, Feng Lian, Huang Lin, Luo Yan

机构信息

Ultrasound department of West China Hospital of Sichuan University, Chengdu, Sichuan 610041, China.

General surgery department of the Sixth People's Hospital of Chengdu, Sichuan 610000, China.

出版信息

Photoacoustics. 2025 Apr 1;43:100721. doi: 10.1016/j.pacs.2025.100721. eCollection 2025 Jun.

Abstract

The strangulation of intestinal obstruction (IO) presents challenges in the assessment of disease progression and surgical decision-making. Intraoperatively, an accurate evaluation of the status of the IO is critical for determining the extent of surgical resection. Dual-modality ultrasound/photoacoustic tomography (US/PAT) imaging has the potential to provide spatially resolved tissue oxygen saturation (SO₂), serving as a valuable marker for IO diagnosis. In this study, US/PAT was utilized for imaging rat models of IO, with the data used for reconstruction, statistical analysis, and distribution evaluation. Results showed that SO₂ decreased with increasing strangulation severity. Notably, the kurtosis and skewness of the SO₂ distribution outperformed SO₂ itself in diagnosis, as they more effectively capture the heterogeneity of SO₂ distribution. Kurtosis reflects distribution concentration, while skewness measures asymmetry, both achieving areas under the receiver operating characteristic curve (AUROC) of 0.969. In conclusion, US/PAT offers a rapid and convenient method for assessing strangulation in IO.

摘要

肠梗阻(IO)的绞窄在疾病进展评估和手术决策方面存在挑战。在手术中,准确评估IO的状态对于确定手术切除范围至关重要。双模态超声/光声断层扫描(US/PAT)成像有潜力提供空间分辨的组织氧饱和度(SO₂),作为IO诊断的一个有价值标志物。在本研究中,US/PAT被用于对IO大鼠模型进行成像,所获数据用于重建、统计分析和分布评估。结果显示,SO₂随着绞窄严重程度的增加而降低。值得注意的是,SO₂分布的峰度和偏度在诊断方面优于SO₂本身,因为它们能更有效地捕捉SO₂分布的异质性。峰度反映分布集中度,而偏度衡量不对称性,两者的受试者操作特征曲线下面积(AUROC)均达到0.969。总之,US/PAT为评估IO中的绞窄提供了一种快速便捷的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d9/12004385/1457c7e34701/gr1.jpg

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