The invention provides an artificial
blood vessel. The artificial
blood vessel comprises a lower cavity vessel, a liver right vessel, a liver middle vessel and a liver left vessel, wherein the lower cavity vessel is provided with a first port located at the upper part and a second port located at the lower part, the first port is in
coincidence and communication with the upper part stump of liverinferior
vena cava or a right
auricle, and the second port is in
coincidence and communication with the lower part stump of the liver
inferior vena cava; and the upper end of the liver right vessel, the upper end of the liver middle vessel and the upper end of the liver left vessel communicate with the lower cavity vessel, the lower end of the liver right vessel is in
coincidence and communicationwith the stump of a liver right
vein, the lower end of the liver middle vessel is in coincidence and communication with the stump of a liver middle
vein, and the left end of the liver left vessel isin coincidence and communication with the stump of the liver left
vein. Therefore, when a non in situ hepatectomy is performed, whole excision from the right
auricle to a second
hepatic portal in theliver is realized. The problem that in the prior art, a single-cavity straight artificial
blood vessel is adopted, so that whole excision from the right
auricle to the second
hepatic portal in the liver cannot be realized in the process in a
surgery, can be solved.