Kawada Hiroshi, Shoda Shinichi, Miyoshi Toshiharu, Takasu Masaki, Tanahashi Yukichi, Iwasaki Ryota, Nagata Shoma, Kawai Nobuyuki, Noda Yoshifumi, Goshima Satoshi, Hyodo Fuminori, Mori Takashi, Matsuo Masayuki
Departments of Radiology, Gifu University, 1-1 Yanagido, Gifu, 501-1194, Japan.
Departments of Radiology Services, Gifu University Hospital, 1-1 Yanagido, Gifu, 501-1194, Japan.
Cardiovasc Intervent Radiol. 2022 May;45(5):705-708. doi: 10.1007/s00270-022-03087-1. Epub 2022 Feb 19.
To define the radiological arterial anatomy in mature microminipigs as a pre-clinical research animal model in interventional radiology.
Five female microminipigs (weighing 20.9 ± 2.9 kg) were used in this study. Under general anesthesia, computed tomography (CT) angiography was performed using a 16-slice CT scanner. CT was performed 12 s after initiation of an intravenous injection of 40 ml of nonionic contrast media at 3.0 ml/second using a power injector. The transverse CT angiography images were evaluated using a digital imaging and communication in medicine viewer, and the diameters of the following 41 arteries were measured.: ascending aorta, descending aorta, thoracoabdominal aorta, abdominal aorta, pulmonary artery trunk, both pulmonary, brachiocephalic artery, short common bicarotid, both common carotid artery, subclavian, bronchial, internal mammary, celiac, common hepatic, left lateral hepatic, middle hepatic, left hepatic, gastroduodenal, cranial duodenopancreatic, splenic, left gastric, cranial mesenteric, ileocolic , bilateral colic artery, caudal mesenteric, cranial rectal, renal, both external iliac arteries, internal iliac common trunk, and both internal iliac and femoral arteries.
The microminipigs' vascular anatomy was the same as domestic pig anatomy and similar to human anatomy. The diameter of the aorta (ascending to abdominal) was 17.1-7.0 mm, iliac and femoral arteries (internal iliac common trunk to femoral artery): 5.5-3.8 mm, pulmonary arteries: 9.3-14.7 mm, and major first aortic branches (e.g., celiac or brachiocephalic artery): 2.2-9.2 mm.
This study defined the microminipig arterial anatomy in the trunk.
将成熟微型猪作为介入放射学的临床前研究动物模型,明确其放射学动脉解剖结构。
本研究使用了5只雌性微型猪(体重20.9±2.9千克)。在全身麻醉下,使用16层CT扫描仪进行计算机断层扫描(CT)血管造影。使用高压注射器以3.0毫升/秒的速度静脉注射40毫升非离子型造影剂,12秒后进行CT扫描。使用医学数字成像和通信查看器评估横断位CT血管造影图像,并测量以下41条动脉的直径:升主动脉、降主动脉、胸腹主动脉、腹主动脉、肺动脉干、双侧肺动脉、头臂动脉、短颈总动脉、双侧颈总动脉、锁骨下动脉、支气管动脉、胸廓内动脉、腹腔干、肝总动脉、肝左外侧叶动脉、肝中叶动脉、肝左叶动脉、胃十二指肠动脉、十二指肠胰头动脉、脾动脉、胃左动脉、肠系膜上动脉、回结肠动脉、双侧结肠动脉、肠系膜下动脉、直肠上动脉、肾动脉、双侧髂外动脉、髂内总干、双侧髂内动脉和股动脉。
微型猪的血管解剖结构与家猪相同,与人类解剖结构相似。主动脉(从升主动脉到腹主动脉)直径为17.1 - 7.0毫米,髂动脉和股动脉(从髂内总干到股动脉):5.5 - 3.8毫米,肺动脉:9.3 - 14.7毫米,以及主要的第一级主动脉分支(如腹腔干或头臂动脉):2.2 - 9.2毫米。
本研究明确了微型猪躯干的动脉解剖结构。