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Unique pattern of fibrosing cholestatic hepatitis after liver transplantation 被引量:1
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作者 Jia-Wei chen da-zhi chen Zhao-Min chen From the Departments of Pathology and Surgery, First Affiliated Hospital, Harbin Medical University Harbin 150001, China 《Hepatobiliary & Pancreatic Diseases International》 SCIE CAS 2002年第1期33-34,共2页
To explore the pathological features and thedifferential diagnosis of recurrent HBV after livertransplantation.Methods: One case of liver transplantation for HBVcirrhosis was subjected to liver biopsises on time post-... To explore the pathological features and thedifferential diagnosis of recurrent HBV after livertransplantation.Methods: One case of liver transplantation for HBVcirrhosis was subjected to liver biopsises on time post-operatively.Results: 25 days after liver transplantation, serologicHBsAg, HBeAg and HBV-DNA of the patient becamenegative, but HBsAg was positive again on day 58 af-ter liver transplantation. Histopathological examina-tion showed balloon-like changes of hepatocytes withfragmental necrosis, fibrosis in the portal areas andaround the portal veins, cholestasis in some hepato-cytes and canaliculi, and positive HBsAg and HBcAgwith immunohistochemical staining. Clinically hepaticenzyme levels progressively increased, maintained forsome time, and decreased rapidly at last. Stubborn hy-poproteinemia was associated with the aggregation ofgeneral condition of the patient.Conclusions: Fibrosing cholestatic hepatitis (FCH) is aspecial type in recurrent infection of HBV after livertransplantation. It has a serious clinical process andspecific pathological changes different from those ofthe usual HBV. 展开更多
关键词 liver transplantation fibrosing cholestatic hepatitis PATHOLOGY
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Effect of Ni-P content on microstructure and mechanical properties of Fe-Ni-P alloy
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作者 Chi Liu Yu-xuan Liu +5 位作者 Ji-ping Lu Yan-huan Wang Lin-wang chen cheng-song Zhang da-zhi chen Guo-dong Cui 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2022年第11期1846-1852,共7页
A series of Fe-Ni-P alloys with different Ni-P contents were prepared by micro-press sintering,and the influence of the contents on the final microstructure and mechanical properties was evaluated.Sample Fe-34(Ni,P)co... A series of Fe-Ni-P alloys with different Ni-P contents were prepared by micro-press sintering,and the influence of the contents on the final microstructure and mechanical properties was evaluated.Sample Fe-34(Ni,P)contains the highest Ni-P content(34.18 wt.%)and its relative density reaches 98.75%,which is attributed to the introduction of an appropriate amount of liquid phase during the sintering process.The main phase of the sample is transformed from a to c phase under the gradual increment of Ni-P content.Simultaneously,a large number of phosphides that have strong inhibition on the migration and expansion of grain boundaries are precipitated on the matrix,and synergistic effect with low-temperature sintering results in partial grain refinement.The samples with high Ni-P content have a high volume of c phase,which makes the sample show the optimal plasticity under the maximum compressive load.And the fracture mode has also changed from brittle fracture to a mixed mode of brittle and ductile fracture.The decrease in the proportion of a phase has a weakening effect on the strength,but the refinement of the grain and the increase in the phosphide are the factors that increase the strength,so that the degree of manifestation varies in different Ni-P levels. 展开更多
关键词 Fe-Ni-P alloy Liquid phase sintering Mechanical behavior MICROSTRUCTURE
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Preparation and compression behavior of Fe-Ni-P/porous-Fe/Fe-Ni-P composites
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作者 Yu-xuan Liu Shuai-jiang Yan +3 位作者 cheng-song Zhang da-zhi chen Qin Xu Guo-dong Cui 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2022年第8期1334-1341,共8页
Porous-Fe-N alloys designed for light weight or energy absorption are inevitably facing the compromise of deteriorated mechanical properties. To optimize their mechanical properties, here a novel Fe-Ni-P/porous-Fe/Fe-... Porous-Fe-N alloys designed for light weight or energy absorption are inevitably facing the compromise of deteriorated mechanical properties. To optimize their mechanical properties, here a novel Fe-Ni-P/porous-Fe/Fe-Ni-P composite with sandwich structure was fabricated by spark plasma sintering and further strengthened via cryogenic treatment. Based on the principle of solid phase sintering and transient liquid phase sintering, porous core and dense outer layers formed simultaneously after co-sintering. The as-fabricated samples show excellent compressive strength of 1708 MPa, and after cryogenic treatment, due to the sufficient martensitic transformation, Fe-Ni-P outer layers show substantially increased hardness from 246.7 to 386.6 HV_(0.1)while the porous-Fe core remains unchanged. And the compressive strength maintains 1424 MPa despise the aggravated incongruity of deformation. The ratio of constituent microhardness R has been proposed to represent the hardness matching, and with decreasing R, the incongruity of deformation is intensified, and the nominal compressive strength is reduced. 展开更多
关键词 Metallic composite Sandwich structure Spark plasma sintering Mechanical property
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