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使用双平面荧光透视法引导不透射线的血管注射:一种血管成像的新方法。

Using biplanar fluoroscopy to guide radiopaque vascular injections: a new method for vascular imaging.

作者信息

O'Brien Haley D, Williams Susan H

机构信息

Ohio University, Department of Biological Sciences, Graduate Program in Ecology and Evolutionary Biology, Athens, Ohio, United States of America.

Ohio University Heritage College of Osteopathic Medicine, Department of Biomedical Sciences, Athens, Ohio, United States of America.

出版信息

PLoS One. 2014 May 16;9(5):e97940. doi: 10.1371/journal.pone.0097940. eCollection 2014.

Abstract

Studying vascular anatomy, especially in the context of relationships with hard tissues, is of great interest to biologists. Vascular studies have provided significant insight into physiology, function, phylogenetic relationships, and evolutionary patterns. Injection of resin or latex into the vascular system has been a standard technique for decades. There has been a recent surge in popularity of more modern methods, especially radiopaque latex vascular injection followed by CT scanning and digital "dissection." This technique best displays both blood vessels and bone, and allows injections to be performed on cadaveric specimens. Vascular injection is risky, however, because it is not a standardizable technique, as each specimen is variable with regard to injection pressure and timing. Moreover, it is not possible to view the perfusion of injection medium throughout the vascular system of interest. Both data and rare specimens can therefore be lost due to poor or excessive perfusion. Here, we use biplanar video fluoroscopy as a technique to guide craniovascular radiopaque latex injection. Cadaveric domestic pigs (Sus scrofa domestica) and white-tailed deer (Odocoileus virginianus) were injected with radiopaque latex under guidance of fluoroscopy. This method was found to enable adjustments, in real-time, to the rate, location, and pressure at which latex is injected in order to avoid data and specimen loss. In addition to visualizing the injection process, this technique can be used to determine flow patterns, and has facilitated the development of consistent markers for complete perfusion.

摘要

研究血管解剖结构,尤其是在与硬组织关系的背景下,对生物学家来说极具吸引力。血管研究为生理学、功能、系统发育关系和进化模式提供了重要见解。几十年来,向血管系统注射树脂或乳胶一直是一种标准技术。最近,更现代的方法越来越受欢迎,特别是不透射线乳胶血管注射,随后进行CT扫描和数字“解剖”。这种技术能最好地显示血管和骨骼,并允许在尸体标本上进行注射。然而,血管注射存在风险,因为它不是一种可标准化的技术,每个标本在注射压力和时间方面都存在差异。此外,不可能观察到感兴趣的整个血管系统中注射介质的灌注情况。因此,由于灌注不良或过度,数据和珍稀标本都可能丢失。在此,我们使用双平面视频荧光透视法作为一种指导颅脑血管不透射线乳胶注射的技术。在荧光透视引导下,对家猪(Sus scrofa domestica)和白尾鹿(Odocoileus virginianus)尸体注射不透射线乳胶。结果发现,这种方法能够实时调整乳胶的注射速度、位置和压力,以避免数据和标本丢失。除了可视化注射过程外,该技术还可用于确定血流模式,并有助于开发用于完全灌注的一致标记物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26cf/4024044/3d55f11dbdf6/pone.0097940.g001.jpg

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