Study of ischemic progression in different intestinal tissue layers during acute intestinal ischemia using swept-source optical coherence tomography angiography

IF 2 3区 物理与天体物理 Q3 BIOCHEMICAL RESEARCH METHODS Journal of Biophotonics Pub Date : 2024-01-21 DOI:10.1002/jbio.202300382
Yu Tian, Mingshuo Zhang, Hongbo Man, Chunnan Wu, Yimin Wang, Linghui Kong, Jian Liu
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Abstract

In acute intestinal ischemia, the progression of ischemia varies across different layers of intestinal tissue. We established a mouse model and used swept-source optical coherence tomography (OCT) to observe the intestinal ischemic process longitudinally in different tissue layers. Employing a method that combines asymmetric gradient filtering with adaptive weighting, we eliminated the vessel trailing phenomenon in OCT angiograms, reducing the confounding effects of superficial vessels on the imaging of deeper vasculature. We quantitatively assessed changes in vascular perfusion density (VPD), vessel length, and vessel average diameter across various intestinal layers. Our results showed a significant reduction in VPD in all layers during ischemia. The mucosa layer experienced the most significant impact, primarily due to disrupted capillary blood flow, followed by the submucosa layer, where vascular constriction or decreased velocity was the primary factor.

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利用扫源光学相干断层血管成像技术研究急性肠缺血期间不同肠组织层的缺血进展。
在急性肠缺血中,肠组织不同层的缺血进展各不相同。我们建立了一个小鼠模型,并使用扫源光学相干断层扫描(OCT)技术纵向观察不同组织层的肠缺血过程。我们采用非对称梯度滤波与自适应加权相结合的方法,消除了 OCT 血管图中的血管拖尾现象,减少了浅层血管对深层血管成像的干扰。我们定量评估了肠道各层血管灌注密度(VPD)、血管长度和血管平均直径的变化。结果显示,缺血期间各层的血管灌注密度都明显下降。粘膜层受到的影响最大,这主要是由于毛细血管血流受到破坏,其次是粘膜下层,血管收缩或流速降低是主要因素。
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来源期刊
Journal of Biophotonics
Journal of Biophotonics 生物-生化研究方法
CiteScore
5.70
自引率
7.10%
发文量
248
审稿时长
1 months
期刊介绍: The first international journal dedicated to publishing reviews and original articles from this exciting field, the Journal of Biophotonics covers the broad range of research on interactions between light and biological material. The journal offers a platform where the physicist communicates with the biologist and where the clinical practitioner learns about the latest tools for the diagnosis of diseases. As such, the journal is highly interdisciplinary, publishing cutting edge research in the fields of life sciences, medicine, physics, chemistry, and engineering. The coverage extends from fundamental research to specific developments, while also including the latest applications.
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