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Application of high-frequency ultrasound for the detection of surgical anatomy in the rodent abdomen.

机译:高频超声在啮齿动物腹部外科解剖学检测中的应用。

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Rats are used extensively in abdominal disease research. To monitor disease progress in vivo, high-frequency ultrasound (HFU) can be a powerful tool for obtaining high-resolution images of biological tissues. However, there is a paucity of data regarding the correlation between rat anatomy and corresponding HFU images. Twenty-four adult male Sprague-Dawley (SD) rats underwent abdominal scans using HFU (40 MHz) surgical procedures to identify abdominal organs and major vessels as well as in situ scanning to confirm the imaging results. The results were compared with those of human abdominal organs in ultrasonographic scans. The rat liver, paired kidneys, stomach, intestines, and major blood vessels were identified by HFU and the ultrasonic morphologies of the liver and kidneys showed clear differences between rats and humans. Clinically relevant anatomical structures were identified using HFU imaging of the rat abdomen, and these structures were compared with the corresponding structures in humans. Increased knowledge with regard to identifying the anatomy of rat abdominal organs by ultrasound will allow scientists to conduct more detailed intra-abdominal research in rodents.Digital Object Identifier http://dx.doi.org/10.1016/j.tvjl.2010.12.024
机译:大鼠被广泛用于腹部疾病的研究。为了在体内监测疾病的进展,高频超声(HFU)可以成为获取生物组织高分辨率图像的有力工具。但是,关于大鼠解剖结构和相应的HFU图像之间相关性的数据很少。使用HFU(40 MHz)手术程序对24只成年雄性Sprague-Dawley(SD)雄性大鼠进行腹部扫描,以鉴定腹部器官和主要血管,并进行原位扫描以确认成像结果。在超声扫描中将结果与人体腹部器官的结果进行了比较。通过HFU鉴定了大鼠肝脏,成对的肾脏,胃,肠和主要血管,并且肝脏和肾脏的超声形态显示出大鼠和人类之间的明显差异。使用大鼠腹部的HFU成像鉴定了与临床相关的解剖结构,并将这些结构与人体中的相应结构进行了比较。通过超声识别大鼠腹部器官的解剖学知识的增加,将使科学家能够在啮齿动物中进行更详细的腹腔内研究。数字对象标识符http://dx.doi.org/10.1016/j.tvjl.2010.12.024

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