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Experimental liver autotransplantation with novel scheme of veno-venous bypass as a model of liver denervation and delymphatization

机译:实验性肝自体移植,采用新的静脉-静脉旁路方案作为肝脏去神经和去淋巴的模型

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The impact of denervation and delymphatization (DD) on liver tissue remains a topic of major interest in liver transplantation, as the organ or its part continues to function well. Various chemical and/or surgical interventions have been developed to achieve in situ liver denervation and delymphatization, but it is evident that DD can be achieved only through "ectomia", ie, complete isolation of the organ from adjacent and connected structures. This Study describes a liver DD model based on a technique of autotransplantation (replantation), maximally preventing ischemia in the transplanted (replanted) graft and dyscirculatory complications in the recipient. Experiments were performed on eight male mongrel dogs. Venous reservoir and roller pumps were used in a forced nontraditional bypass scheme. Autotransplantation was performed by step-by-step dissection of the suprahepatic, infrahepatic, and portal structures, leading to DD, with subsequent recovery of the blood vessel and bile duct. DD was achieved successfully with stable hemodynamic parameters during all surgery periods. All animals survived. This model of liver autotransplantation lead to DD of the organ. It was characterized by hemodynamic stability of the liver as well as of the whole body at every stage of the surgery, proffering liver DD for experimental studies.
机译:去神经和去淋巴(DD)对肝组织的影响仍然是肝脏移植的主要课题,因为器官或器官的功能继续良好。已经开发了各种化学和/或外科手术干预以实现原位肝去神经支配和去淋巴化,但是很明显,DD只能通过“直肠切除术”来实现,即,器官与相邻和连接的结构完全隔离。这项研究描述了基于自体移植(再移植)技术的肝脏DD模型,该模型最大程度地防止了移植(再移植)移植物中的缺血和受体的血液循环异常。实验是对八只雄性杂种犬进行的。静脉储液泵和滚子泵用于强制非传统旁路方案。通过逐步解剖肝上,肝下和门静脉结构进行自体移植,导致DD,随后恢复血管和胆管。在所有手术期间,均以稳定的血液动力学参数成功实现DD。所有动物均存活。肝脏自体移植的这种模型导致器官的DD。它的特征是在手术的每个阶段,肝脏以及整个身体的血液动力学稳定性,为实验研究提供了肝脏DD。

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