Division of Regenerative Medicine, Research Center for Medical Sciences, the Jikei University School of Medicine, 3-25-8 Nishi-shinbashi, Minato-ku, Tokyo 105-8461, Japan.
Division of Vascular Surgery, Department of Surgery, the Jikei University School of Medicine, 3-25-8 Nishi-shinbashi, Minato-ku, Tokyo 105-8461, Japan.
Sci Rep. 2017 Feb 13;7:41907. doi: 10.1038/srep41907.
During rodent experiments, the caudal ventral artery (CVA) is useful for blood pressure (BP) measurement. However, CVA measurements may not reflect the true BP. This study was performed to verify the site-specific accuracy of invasive arterial BP monitoring during surgery in rats. Invasive arterial BP was simultaneously measured in rats via the CVA and the common carotid artery (CCA). The BP values were analysed while the rats were subjected to cooling of the head or tail. Additionally, the rats underwent digital subtraction angiography and histological examination of these arteries. The pressure difference was more significant in the tail cooling group than in the head cooling group. Digital subtraction angiography revealed that angiospasms occurred more frequently in the CVA than in the CCA upon cooling. This phenomenon was supported by histological analysis, which showed that the tunica media area was significantly larger in the CVA than in the CCA. CVA pressure is susceptible to environmental changes and may not accurately reflect the true BP without a strictly controlled laboratory environment. Therefore, understanding the pitfalls of this method is necessary to avoid cooling of the tail during BP measurement.
在啮齿动物实验中,尾腹侧动脉(CVA)可用于测量血压(BP)。然而,CVA 的测量结果可能并不反映真实的 BP。本研究旨在验证在大鼠手术期间通过 CVA 和颈总动脉(CCA)进行有创动脉 BP 监测的部位特异性准确性。通过 CVA 和 CCA 同时测量大鼠的有创动脉 BP。当大鼠头部或尾部冷却时,分析 BP 值。此外,对这些动脉进行数字减影血管造影和组织学检查。在尾部冷却组中,压力差比头部冷却组更显著。数字减影血管造影显示,在冷却时,CVA 中的血管痉挛比 CCA 更频繁。组织学分析支持了这一现象,显示 CVA 中层面积明显大于 CCA。CVA 压力易受环境变化的影响,如果没有严格控制的实验室环境,可能无法准确反映真实的 BP。因此,了解这种方法的缺陷对于避免在 BP 测量期间冷却尾部是必要的。