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Biomedical subjects

B Ringe

Publications and source records attributed to B Ringe.

At least 235 records · Page 13Linked to original sources

[Clinical syndromes with liver and kidney involvement in children and adults].

Multiple pathogenetic mechanisms can lead to dysfunctions or malformations of the liver and kidneys in children and adults. The association of renal and hepatic abnormalities can be found in different congenital malformation syndromes. Hereditary metabolic disorders are capable of alternating liver and kidney function. Immunologic, toxic and septic diseases may damage both organ systems. In patients with liver cirrhosis, both glomerular and tubular dysfunctions can be observed. In the course of liver transplantations, an increased rate of renal dysfunction was observed. This survey summarizes the main clinical syndromes of renal involvement associated with liver disease.

Adult↗

[Combined heart and kidney transplantation in terminal myocardial and renal insufficiency].

In a 38-year-old man combined heart and kidney transplantation was performed successfully in one operation. Both organs have functioned well postoperatively: the patient was discharged from hospital on the 19th postoperative day and has remained in functional class I (New York Heart Association) eight months later. Only two episodes of cardiac rejection have been observed during this period, responding to treatment, and there was no evidence of rejection of the kidney. Such combined heart-kidney transplantation from one donor seems to be a promising form of treatment for patients in end-stage myocardial and renal failure. The frequency of cardiac rejections my be lower after combined heart-kidney transplantation than after cardiac transplantation alone.

Adult↗

A new technique of hepatic vein reconstruction in partial liver transplantation.

The shortage of pediatric donor livers has stimulated the development of advanced surgical approaches such as partial liver transplantation, which produces the same results as whole organ replacement. Differences in body weight between donor and recipient of more than four times, however, usually necessitate extended reduction hepatectomy and modified ways of performing vascular reconstruction. Therefore, following ex vivo "trisegmentectomy," a new technique of hepatic venous drainage was developed with an end-to-side anastomosis of the left donor hepatic vein to the preserved recipient inferior vena cava. This operative technique was applied to four children, one of whom had a retransplantation performed in exactly the same fashion. There were no specific complications related to this particular surgical technique. From our preliminary experience we conclude that reduced-size liver transplantation can be safely performed with the described type of hepatic vein reconstruction, especially when large donor organs have to be used for small children.

Adolescent↗

Combination harvesting procedure for liver and whole pancreas.

Combination harvesting procedures for the liver and whole pancreas can be carried out successfully in most instances, but this requires agreement between the liver and pancreas teams concerning the vascular supply for the grafts. If one donor team is in charge of both organs, the procedure has considerable economical advantages. Even if one organ is not suitable, partial success is sufficient to compensate for the effort and costs.

Humans↗

[Ex situ operation on the liver. A new possibility in liver surgery].

A method for an ex situ operation of the liver is presented with the example of such an operation in a 40-year-old patient. With this operation bilateral liver metastases of a leiomyosarcoma--which were otherwise regarded as irresectable--were resected. Function of the liver after reimplantation was good. Liver protection was performed by perfusion with cardioplegic HTK-solution (Bretschneider). The techniques of liver ex- and implantation are based on the methods of liver transplantation. Extracorporal femoro-porto-axillary bypass for decompression of the inferior caval vein and portal vein was used throughout the anhepatic period of 6 h. It is supposed that the method described here--which according to the authors' knowledge has been performed for the first time in a patient--will open up new perspectives for the surgery of malignant and occasionally of benign tumors, if necessary also for other surgical liver diseases. As an additional possibility, in situ protection of the liver with consecutive operation of the bloodless liver in situ is discussed. This procedure will correspond for the most part to the ex situ technique described here.

Adult↗

Adenine nucleotide metabolism and its relation to organ viability in human liver transplantation.

The relationship between adenine nucleotide metabolism and ischemic damage was studied in human liver. Thirty transplanted grafts were divided into two groups according to their functional outcome. Cellular adenine nucleotide levels were assayed by high-performance liquid chromatography. During cold ischemia, the adenosine triphosphate (ATP) level was not correlated with graft function, but two grafts with low total adenine nucleotides (TAN) levels showed poor function after transplantation. After recirculation, the ATP level showed good recovery in grafts that functioned satisfactorily (n = 24, 5.47 +/- 1.51 mumol/g dry weight), but remained low in poorly functioning grafts (n = 6, 3.30 +/- 1.68 mumol/g dry weight) (P less than 0.01). The level of recovery of ATP was inversely related to the period of warm ischemia during implantation (P less than 0.01). Bile production, used as a parameter of initial function, was observed shortly after implantation in 17 of 24 grafts that functioned satisfactorily, but in only 1 of 6 poorly functioning grafts. It is concluded that loss of adenine nucleotides and lack of bile production during transplantation are good markers of damaged grafts in human liver transplantation.

Adenine Nucleotides↗

[Changes in intraoperative total oxygen consumption in patients during liver transplantation].

The changes in O2-uptake (VO2) during 110 liver transplantations (LTX) were studied using Fick's principle (O2-uptake = cardiac index x arteriovenous O2-content difference). During each of the three operative periods [a dissecting period before clamping of the hepatic vessels (1), the anhepatic phase (2), and after reperfusion of the new liver (3)], two measurements (A and B) were taken. After removal of the liver (2A) the VO2 decreased about 11.4%, and increased after reperfusion (3A) about 44.0%; these changes were significant (P less than 0.001). To evaluate the influence of the various indications for LTX on the course of intraoperative VO2, the following patient groups were compared: patients with hepatic tumors (n = 17), patients with cirrhosis following hepatitis (n = 14), patients with primary biliary cirrhosis (n = 17), patients with cirrhosis plus tumor (n = 11), and patients in a hepatic coma (n = 20), regardless of the underlying liver disease. Groups with less than ten subjects were not considered. The drop of VO2 in the anhepatic period (1B----2A) was between -26.7% (patients with tumors) and -7.3% (patients with cirrhosis plus tumor). The patients with cirrhosis following hepatitis showed a special feature: their VO2 increased about 13.4% after cross-clamping the hepatic vessels. After revascularization, the VO2 increased in all groups between +37.2% and +69.8%. In all groups the level of VO2 was higher after reperfusion (3A) than in the dissecting period (1B), ranging from +5.3% in patients with tumors to +61.6% in patients with cirrhosis following hepatitis.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma, Bile Duct↗

[Transplantation of a donor liver to 2 recipients (splitting transplantation)--a new method in the further development of segmental liver transplantation].

A donor liver was divided in such a way that the left part (segment II and III without caval vein) could be transplanted into a child, the right part (segment I, IV, V to VIII) into an adult successfully. Common bile duct and common hepatic artery remained with the left part of the liver, portal vein with the right one. In the recipient of the left part of the liver the own caval vein was preserved and anastomosed with the left hepatic vein; the other anastomoses were carried out in the typical way. In the recipient of the right part of the liver the right hepatic artery of the graft was anastomosed with the recipient's common hepatic artery using a saphenous interponate. Two separate intrahepatic bile ducts were anastomosed with a Roux-en-Y loop of the jejunum. The other anastomoses were carried out in the typical way. Thus the possibility of using one donor liver for two recipients (splitting transplantation) has been demonstrated.

Biliary Atresia↗