99mTc-DTPA-galactosyl human serum albumin (Tc-GSA) is a new liver-imaging agent which binds specifically to hepatic binding protein. The purpose of this study was to evaluate the usefulness of Tc-GSA in quantitatively evaluating hepatic ischemia-reperfusion injury in the rat. Regional hepatic ischemia was induced by clamping the left hepatic artery and the left portal vein for 5 to 45 min. A hepatic accumulation index (t90) was obtained on the basis of the dynamic data. A significant difference of this index was observed between all ischemic groups and the control. In conclusion, 99mTc-GSA appears useful for evaluating the hepatic ischemia-reperfusion injury.</P></p
In this study, we attempted to evaluate the dynamic function of graft livers after a living donor li...
Reperfusion of ischemic intestine results in acute liver dysfunction characterized by hepatocellular...
PURPOSE: To investigate the impact of selective hepatic artery clamping (SHAC) in hepatocellular fu...
99mTc-DTPA-galactosyl human serum albumin (Tc-GSA) is a new liver-imaging agent which binds specific...
China Medical Board of New York (CMB) [06-837, 11-045]; National Natural Science Foundation of China...
To investigate the correlation between nuclear medicine parameters determined by technetium-99m-DTPA...
Hepatic ischemia/reperfusion injury occurs in numerous clinical situations including liver transplan...
Small-animal models are crucial to gain insights in the complex recovery mechanisms of liver functio...
Objective We evaluated intra- and interoperator reproducibilities in calculating the conventional in...
1. IntroductionTc-99m-galactosyl human serum albumin (99mTc-GSA) is a molecular imaging agent used f...
Diethylenetriaminepentaacetic acid neolactosyl human serum albumin (DTPA-LSA) was prepared and label...
Fundamental Research Funds for the Central Universities of China; National Natural Science Foundatio...
99mTc-DTPA-galactosyl human serum albumin (99mTc-GSA) is a radiopharmaceutical that binds specifical...
PubMed: 25428535Objective: The aim of this study was to evaluate the effect of dexmedetomidine (100 ...
OBJECTIVES: The aim of the study was to clarify the clinical significance of single-photon emission ...
In this study, we attempted to evaluate the dynamic function of graft livers after a living donor li...
Reperfusion of ischemic intestine results in acute liver dysfunction characterized by hepatocellular...
PURPOSE: To investigate the impact of selective hepatic artery clamping (SHAC) in hepatocellular fu...
99mTc-DTPA-galactosyl human serum albumin (Tc-GSA) is a new liver-imaging agent which binds specific...
China Medical Board of New York (CMB) [06-837, 11-045]; National Natural Science Foundation of China...
To investigate the correlation between nuclear medicine parameters determined by technetium-99m-DTPA...
Hepatic ischemia/reperfusion injury occurs in numerous clinical situations including liver transplan...
Small-animal models are crucial to gain insights in the complex recovery mechanisms of liver functio...
Objective We evaluated intra- and interoperator reproducibilities in calculating the conventional in...
1. IntroductionTc-99m-galactosyl human serum albumin (99mTc-GSA) is a molecular imaging agent used f...
Diethylenetriaminepentaacetic acid neolactosyl human serum albumin (DTPA-LSA) was prepared and label...
Fundamental Research Funds for the Central Universities of China; National Natural Science Foundatio...
99mTc-DTPA-galactosyl human serum albumin (99mTc-GSA) is a radiopharmaceutical that binds specifical...
PubMed: 25428535Objective: The aim of this study was to evaluate the effect of dexmedetomidine (100 ...
OBJECTIVES: The aim of the study was to clarify the clinical significance of single-photon emission ...
In this study, we attempted to evaluate the dynamic function of graft livers after a living donor li...
Reperfusion of ischemic intestine results in acute liver dysfunction characterized by hepatocellular...
PURPOSE: To investigate the impact of selective hepatic artery clamping (SHAC) in hepatocellular fu...