1 |
Thiel C,Thiel K,Etspueler A, et al. A reproducible porcine model of acute liver failure induced by intrajejunal acetaminophen administration[J]. Eur Surg Res, 2011, 46(3): 118-126.
|
2 |
Lee KC,Palacios JC,Alibhai H, et al. A reproducible, clinically relevant, intensively managed, pig model of acute liver failure for testing of therapies aimed to prolong survival[J]. Liver Int, 2013, 33(4): 544-551.
|
3 |
Zhu H,Zhang Y,Hu X, et al. The effects of high-dosed qingganhuoxue recipe on acute liver failure induced by D-galactosamine in rats[J]. Evid-based Compl Alt Med, 2013, (1): 905715.
|
4 |
Miyashita T,Enosawa S,Tanaka H, et al. Standardization of ischemic hepatic failure in pigs as a model for bioartificial liver assessment[J]. Surg Today, 2003, 33(10): 743-750.
|
5 |
Fruhauf NR,Kaiser GM,Nosser SA, et al. Large animal models for testing bioartificial liver support systems[J]. Biomed Sci Instrum, 2001, 37: 511-516.
|
6 |
Nastos C,Kalimeris K,Papoutsidakis N, et al. Bioartificial liver attenuates intestinal mucosa injury and gut barrier dysfunction after major hepatectomy: Study in a porcine model[J]. Surgery, 2016, 159(6): 1501-1510.
|
7 |
Huguet C,Nordlinger B,Galopin JJ, et al. Normothermic hepatic vascular exclusion for extensive hepatectomy[J]. Surg Gynecol Obstet, 1978, 147(5): 689-693.
|
8 |
Nordlinger B,Douvin D,Javaudin L, et al. An experimental study of survival after two hours of normothermic hepatic ischemia[J]. Surg Gynecol Obstet, 1980, 150(6): 859-864.
|
9 |
Frühauf NR,Oldhafer KJ,Westermann S, et al. Acute hepatic failure in swine: hepatectomy versus vascular occlusion[J]. J Invest Surg, 2004, 17(3): 163-171.
|
10 |
Ytrebo LM,Nedredal GI,Langbakk B, et al. An experimental large animal model for the assessment of bioartificial liver support systems in fulminant hepatic failure[J]. Scand J Gastroenterol, 2002, 37(9): 1077-1088.
|
11 |
Ryska M,Kieslichová E,Pantoflícek T, et al. Devascularization surgical model of acute liver failure in minipigs[J]. Eur Surg Res, 2004, 36(3): 179-184.
|
12 |
Hochleitner B,Hengster P,Bucher H, et al. Significant survival prolongation in pigs with fulminant hepatic failure treated with a novel microgravity-based bioartificial liver[J]. Artif Organs, 2006, 30(12): 906-914.
|
13 |
Wang H,Ohkohchi N,Enomoto Y, et al. Effect of portocaval shunt on residual extreme small liver after extended hepatectomy in porcine[J]. World J Surg, 2006, 30(11): 2023-2024.
|
14 |
Tuczek HV,Rabes H. Loss of proliferation capacity of hepatocytes following subtotal hepatectomy[J]. Experientia, 1971, 27(5): 526.[Article in German]
|
15 |
Kanematsu T,Takenaka K,Furuta T, et al. Acute portal hypertension associated with liver resection. Analysis of early postoperative death[J]. Arch Surg, 1985, 120(11): 1303-1305.
|
16 |
Szawlowski AW,Saint-Aubert B,Gouttebel MC, et al. Experimental model of extended repeated partial hepatectomy in the dog[J]. Eur Surg Res, 1987, 19(6): 375-380.
|
17 |
Knubben K,Thiel C,Schenk M, et al. A new surgical model for hepatectomy in pigs[J]. Eur Surg Res, 2008, 40(1): 41-46.
|
18 |
Bucur PO,Bekheit M,Audebert C, et al. Modulating portal hemodynamics with vascular ring allows efficient regeneration after partial hepatectomy in a porcine model[J]. Ann Surg, 2017. [Epub ahead of print]
|
19 |
Arkadopoulos N,Defterevos G,Nastos C, et al. Development of a porcine model of post-hepatectomy liver failure[J]. J Surg Res, 2011, 170(2): e233-e242.
|
20 |
Machaidze Z,Yeh H,Wei L, et al. Testing of microencapsulated porcine hepatocytes in a new model of fulminant liver failure in baboons[J]. Xenotransplantation, 2017, 24(3). [Epub 2017 Mar 5]
|
21 |
Cai L,Weng J,Feng L, et al. Establishment of a novel simplified surgical model of acute liver failure in the cynomolgus monkey[J]. Biomed Res Int, 2016: 3518989. [Epub 2016 Dec 21]
|