Department of Research and Development, Covidien Surgical Solutions, Boulder, Colorado.
J Surg Res. 2014 Jan;186(1):73-80. doi: 10.1016/j.jss.2013.08.003. Epub 2013 Aug 27.
Bipolar devices are routinely used to seal blood vessels instead of sutures and clips. Recent work examining the impact of vascular proteins on bipolar seal performance found that collagen and elastin (CE) content within porcine arteries was a significant predictor of a vessel's burst pressure (VBPr). This study examined seal performance across a range of human blood vessels to investigate whether a similar relationship existed. In addition, we compared VBPr and CE content between porcine and human blood vessels. Our primary hypothesis is that higher collagen-to-elastin ratio will predict higher VBPr in human vasculature.
In six cadavers, 185 blood vessels from nine anatomic locations were sealed using a bipolar electrosurgical system. A linear mixed model framework was used to evaluate the impact of vessel diameter and CE content on VBPr.
The effect of CE ratio on VBPr is modified by vessel size, with CE ratio having larger influence on VBPr in smaller diameter vessels. Seal burst pressure of vessels 2-5 mm in diameter was significantly associated with their CE content. Comparison of average VBPr between species revealed porcine carotid and iliac arteries (440-670 mmHg) to be the best vessel types for predicting the seal strength of most human blood vessels (420-570 mmHg) examined.
CE content significantly modified the seal strength of small to medium sized blood vessels but had limited impact on vessels >5 mm.
双极器械通常用于密封血管,而不是缝合和夹闭。最近研究血管蛋白对双极密封性能的影响的工作发现,猪动脉中的胶原蛋白和弹性蛋白(CE)含量是血管破裂压力(VBPr)的重要预测指标。本研究检查了一系列人体血管的密封性能,以研究是否存在类似的关系。此外,我们比较了猪和人血管的 VBPr 和 CE 含量。我们的主要假设是,更高的胶原蛋白与弹性蛋白比值将预测人体脉管系统中的 VBPr 更高。
在六具尸体中,使用双极电外科系统对来自九个解剖部位的 185 个血管进行了密封。采用线性混合模型框架来评估血管直径和 CE 含量对 VBPr 的影响。
CE 比值对 VBPr 的影响受到血管大小的修饰,在较小直径的血管中,CE 比值对 VBPr 的影响更大。直径为 2-5 毫米的血管的密封破裂压力与它们的 CE 含量显著相关。比较物种之间的平均 VBPr 发现,猪颈动脉和髂动脉(440-670mmHg)是预测大多数检查的人体血管(420-570mmHg)密封强度的最佳血管类型。
CE 含量显著修饰了小至中等大小血管的密封强度,但对直径>5 毫米的血管影响有限。