...
首页> 外文期刊>World Journal of Gastroenterology >Liver microcirculation after hepatic artery embolization with degradable starch microspheres in vivo.
【24h】

Liver microcirculation after hepatic artery embolization with degradable starch microspheres in vivo.

机译:肝动脉栓塞后可降解淀粉微球体内肝脏微循环。

获取原文
获取原文并翻译 | 示例
           

摘要

AIM: To observe the dynamic changes of liver microcirculation in vivo after arterial embolization with degradable starch microspheres (DSM). METHODS: DSM were injected into the proper hepatic artery through a silastic tube inserted retrogradely in gastroduodenal artery (GDA) of SD rats. Fluorescent microscopy was used to evaluate the dynamic changes of blood flow through the terminal portal venules (TPVs), sinusoids and terminal hepatic venules (THVs). The movements of DSM debris were also recorded. Six hours after injection of DSM, percentages of THVs with completely stagnant blood flow were recorded. RESULTS: Two phases of blood flow change were recorded. In phase one: after intra-arterial injection of DSM, slow or stagnant blood flow was immediately recorded in TPVs, sinusoids and THVs. This change was reversible, and blood flow resumed completely. In phase two: after phase one, blood flow in TPVs changed again and three patterns of blood flow were recorded. Six hours after DSM injection, 36.9% +/- 9.2% of THVs were found with completely stagnant blood flow. CONCLUSION: DSM can stop the microcirculatory blood flow in some areas of liver parenchyma. Liver parenchyma supplied by arteries with larger A-P shunt is considered at a higher risk of total microcirculatory blood stagnation after injection of DSM through hepatic artery.
机译:目的:观察可降解淀粉微球(DSM)在动脉栓塞后体内肝脏微循环的动态变化。方法:通过将硅橡胶管逆行插入SD大鼠的胃十二指肠动脉(GDA)中,将DSM注射入肝固有动脉。荧光显微镜用于评估流经终末门静脉(TPV),正弦波和终末肝小静脉(THV)的血流的动态变化。还记录了DSM碎片的运动。注射DSM六小时后,记录了完全停滞的THV百分比。结果:记录了两个阶段的血流变化。第一阶段:动脉内注射DSM后,立即在TPV,正弦曲线和THV中记录缓慢或停滞的血流。这种变化是可逆的,血流完全恢复。在第二阶段:第一阶段之后,TPV中的血流再次改变,并记录了三种血流模式。注射DSM后6小时,发现36.9%+/- 9.2%的THV血流完全停滞。结论:DSM可以阻止肝实质某些区域的微循环血流。通过肝动脉注射DSM后,由较大A-P分流动脉供血的肝实质被认为具有微循环全血停滞的较高风险。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号