Objective To evaluate the safety and efficacy of surgical resection for the second and the third hepatic portal tumor. Methods The clinical data of 39 patients who underwent surgical resection of the second and the third hepatic portal tumor were analyzed from May 2012 to May 2017 in our hospital. Among them, there were 29 patients with primary liver cancer, 6 patients with hepatic hemangioma, 2 patients with focal liver hyperplasia, and 2 patients with liver metastasis from colon cancer. Results Right liver resection was performed in 11 patients, left liver resection in 7 patients, left outer lobe resection in 6 patients, right trefoil excision in 5 patients, Ⅴand Ⅷ segment resection in 4 patients, Ⅶ and Ⅷ segment resection in 4 patients, local resection in 2 patients. In the resection, there were 16 patients without interruption of hepatic inflow, 21 patients with interrupted portal blood flow, 2 patients with total hepatic blood flow occlusion. The operative time of the 39 patients was 150–270 min (mean of 190 min), the intraoperative blood loss was 100–2 000 mL (mean of 680 mL). Postoperative bile leakage occurred in 2 patients, bleeding occurred in 1 patient, and no liver failure occurred. Twenty-six patients were followed-up of 31 liver cancer patients, and the follow-up time was 3–40 months, the median time was 8 months. During follow-up period, 12 patients died, 9 patients died of tumor recurrence, 3 patients died from liver failure. Of 8 patients, 5 patients with benign liver disease were followed-up for 7–18 months with living healthy, and the median time was 9 months. Conclusion The risk of surgical resection of tumors invaded the second and the third hepatic portal is mainly the accurate functional assessment of residual liver and the correct treatment of the main branches of the hepatic veins.
The global incidence of benign biliary tract diseases is high. Not only its anatomical variations are complex and the disease heterogeneity is strong, but also its preoperative assessment methods, surgical techniques and diagnostic and treatment strategies need to be improved. Consequently, patients have many perioperative complications and a poor long-term prognosis. According to the anatomical characteristics of the biliary tract and the pathophysiological characteristics of benign biliary diseases, we propose the surgical treatment concept of benign biliary tract diseases with the removal of the diseased bile duct tree drainage as the core, which is different from the traditional biliary surgery that takes “patency and obstruction” as the focus of treatment, and “alleviates symptoms” as the treatment goal. Through a series of improvements such as preoperative evaluation, surgical planning, surgical operations, and postoperative management, we have designed a series of innovative diagnosis and treatment strategies and procedures with the goal of curing biliary diseases, with a view to changing the diagnosis and treatment status of biliary surgery. We hope that can change the current the diagnosis and treatment status of biliary surgery.
ObjectiveTo summarize the key operative points and efficacy of ex-vivo ex-vivo liver resection and autologous liver transplantation (ELRA) using various vascular materials for hepatic vein reconstruction in the treatment of end-stage hepatic alveolar echinococcosis (HAE). MethodThe clinicopathologic data of a patient with end-stage HAE who underwent ELRA combined with complex hepatic vein reconstruction were retrospectively analyzed. ResultsThe patient was a 60-year-old male who was admitted to the Sichuan Provincial People’s Hospital due to giant alveolar hydatid in the liver, with a body weight of 60 kg and a standard liver volume of 1 024.5 mL. The imaging showed that the hydatid invaded the first and second hepatic portals, middle hepatic vein, left hepatic vein, and retrohepatic inferior vena cava. The three-dimensional reconstruction of CT showed that the residual liver volume was 1 270.6 mL. The patient received supportive treatment after admission and underwent ELRA following strict evaluation. Intraoperatively, it was found that the multiple hepatic veins and retrohepatic inferior vena cava were widely invaded. The liver was split in vivo and the mass was excised ex vivo by “in vivo first” principle. The hepatic vein was repaired and reconstructed into a wide mouth outflow tract using allogeneic veins, autologous inferior mesenteric vein, and hepatic round ligaments, then performed the autotransplantation by wide mouth outflow-artificial inferior vena cava anastomosis (end to side). The operative time was 16 h, and the intraoperative blood loss was approximately 2 000 mL. FK506 was orally administered after operation, and low-molecular-weight heparin sodium was administered 24 h later for anticoagulation. The patient was returned to the general ward on the 6th day after the operation, and the enhanced CT scan showed that the hepatic outflow tract was unobstructed, without stenosis and thrombosis, and the patient was discharged on day 18 after the operation. The patient was pathologically diagnosed with alveolar echinococcosis. ConclusionsFrom the results of this case, combination of multiple vascular materials to reconstruct the hepatic outflow tract is an optional procedure for ELRA in treatment of end-stage HAE. Strict preoperative evaluation, skillful vascular anastomosis technique, and postoperative anticoagulation are important measures to maintain patency of postoperative reconstruction vessel.
Hepatic alveolar echinococcosis (HAE) is a severe zoonotic disease caused by Echinococcus multilocularis, primarily affecting the liver. Due to its insidious nature, the patients are often diagnosed at advanced stage, posing significant treatment challenges. We comprehensively examines the progress in surgical techniques for HAE management, focusing on various strategies across different disease stages. For the patients with early-stage HAE, ablation therapy has emerged as an effective treatment option. In the moderate to advanced cases, numerous surgical techniques and innovative approaches have been introduced, including laparoscopic surgery and liver transplantation, with particular emphasis on ex vivo liver resection and autotransplantation. These advancements offer more effective treatment options for the patients with advanced HAE. However, significant challenges persist, notably the preservation of adequate liver function while achieving complete lesion removal. Future research should prioritize the exploration and optimization of existing surgical methods, especially for advanced HAE cases. This includes refining surgical techniques through precise preoperative evaluation and staging, as well as developing novel surgical approaches to enhance safety and efficacy. Furthermore, multicenter and long-term follow-up prospective studies are crucial for validating the effectiveness of new surgical techniques and strategies. Through these concerted efforts, it is anticipated that the survival rates and quality of life for HAE patients will significantly be improved, marking a new era in the management of this complex disease.
Objective To explore feasibility and safety of ex vivo liver resection and autotransplantation in treating end-stage hepatic alveolar echinococcosis combined with secondary cavernous transformation of portal vein. Methods The patient was diagnosed with the end-stage hepatic alveolar echinococcosis combined with secondary cavernous transformation of portal vein. The ultrasonography, computed tomography, and magnetic resonance imaging were used to access the characteristics of the lesions and the extent of involvement of the portal vein and its branches. The liver model was reconstructed using a three-dimensional imaging data analysis system (EDDA Technology, Inc. USA), the remnant liver volume and the extent of involvement of the first hepatic hilum were recorded. Then the multidisciplinary team repetitively discussed the risks and procedures involved in the surgery. Finally, the ex vivo liver resection and autotransplantation was proposed. Results The preoperative evaluation showed the patient had a large intrahepatic lesion which severely invaded the retrohepatic inferior vena cava, the right hepatic vein, and the middle hepatic vein and were completely occluded, the left hepatic vein was partially invaded, and the portal vein was spongiform. The remnant liver volume was 912 mL, the ratio of residual liver volume to standard liver volume was 0.81. The preoperative liver function Child-Pugh score was grade A. The ex vivo liver resection and autotransplantation was successfully managed according to the expected schedule. The autografts (made by patient’s great saphenous vein) were used to reconstruct the hepatic vein and portal vein, and the retrohepatic inferior vena cava was not reconstructed. The patient recovered well and was discharged on day 20 after the operation. Conclusions Ex vivo liver resection and autotransplantation could successfully be applied in treating patient with end-stage hepatic alveolar echinococcosis combined with secondary cavernous transformation of portal vein. Adequate preoperative assessment and management of the first hepatic hilum are key to this operation.
ObjectivesTo evaluate the learning curve of radical hepatectomy combined with vascular and/or bile duct reconstruction (RHVBR) in the treatment of hepatic alveolar echinococcosis (HAE), and to explore the feasibility and safety of RHVBR. MethodsThe clinical data of 203 patients who received RHVBR treatment for HAE complicated with vascular invasion in West China Hospital from 2010 to 2018 were analyzed retrospectively. Cumulative sum (CUSUM) and risk-adjusted cumulative sum (RA-CUSUM) were used to analyze the learning curve of RHVBR, determine the learning stage, and compare the differences of intraoperative and postoperative outcome indexes in different learning stages. ResultsThe average operative time was (537.9±207.6) minutes, with blood loss amounted to 617.3 (138.9, 1 094.2) mL. Postoperative complications occurred in 65 cases, and the incidence of complications was 32.0%. Among them, 29 cases (14.3%) had serious complications. Three cases (1.5%) died within 90 days after operation. The results of RA-CUSUM analysis showed that 54 cases of surgery were the cut-off point of learning curve for serious postoperative complications. According to the results of CUSUM analysis, the whole queue was divided into the first stage (n=53) and the second stage (n=150) based on the completion of 53 operations. Compared with the first stage, the operative time and total postoperative hospital stay in the second stage was shortened, the incidence of serious complications was reduced, and the number of resected liver segments was increased. The differences were statistically significant (P<0.05). ConclusionIt is feasible and safe to treat HAE with RHVBR, and the incidence of serious complications is obviously reduced after 54 cases of operation.
ObjectiveTo investigate the effect of intermittent Pringle (IP) and continuous hemi-hepatic vascular inflow occlusion (CHVIO) on the prognosis of patients with hepatocellular carcinoma (HCC) complicated with cirrhosis in laparoscopic liver resection (LLR).MethodsRetrospective analysis of consecutive 107 LLR patients with HCC complicated with liver cirrhosis at West China Hospital of Sichuan University between January 2015 and December 2017 was performed. Patients were divided into an IP group and a CHVIO group according to the method of hepatic vascular occlusion, intraoperative and postoperative outcome indicators and short-term prognosis were compared between the two groups.ResultsPatients in the IP group had shorter operative time [(237+90) min vs (285+118) min, P=0.041] and less blood loss [(279+24) mL vs (396+35) mL, P=0.012], without a significant increase in postoperative liver function [including ALT, AST, TBIL, and ALB], postoperative complications, induced flow, 1-year disease-free survival, and1-year survival (P>0.05).ConclusionsIP can reduce the operative time and blood loss in patients with HCC complicated with cirrhosis in LLR, and will not lead to deterioration of liver function, it is a recommended hepatic inflowocclusion method.
ObjectiveTo summarize the application status and progress of indocyanine green fluorescence imaging in laparoscopic anatomic liver resection , and to analyze its advantages, limitations, and prospects.MethodThe literatures about indocyanine green fluorescence imaging in laparoscopic anatomic liver resection were reviewed.ResultsIndocyanine green fluorescence imaging had been preliminarily used in the operation of liver tumors and had shown its unique value in the anatomical liver resection, providing a new way to reduce the recurrence of liver cancer, improve the therapeutic effect, and prolong the survival time of patients.ConclusionsThe clinical application of indocyanine green fluorescence imaging in anatomic liver resection is still at the stage of development and popularization. Although it has unique advantages and development potential, it needs to be further improved in the aspects of tissue penetration, specificity, and staining success rate.
Objective To explore the correlations between the time of tracheal extubation and the intraoperative basic factors of ex vivo liver resection followed by autotransplantation in patients with advanced hepatic alveolar echinococcosis (HAE), and analyze the change trend of blood gas analysis during operation. Methods The data of 24 patients with advanced HAE who underwent ex vivo liver resection followed by autotransplantation in West China Hospital of Sichuan University between February 2014 and August 2017 were retrospectively analyzed. Results There were significant correlations between the extubation time and the duration of anesthesia (r=0.472, P=0.031), the amount of bleeding (r=0.524, P=0.015), the amount of erythrocyte suspensions infusion (r=0.627, P=0.002), and the amount of plasma infusion (r=0.617, P=0.003). There was no statistical difference in extubation time between patients with and without pulmonary complications in 3 months postoperatively [(23.74±15.84), (15.52±19.40) h, P=0.327]. Compared with those arterial blood gas results before the interruption, the pH value, blood glucose, lactic acid and base excess were statistically significantly different (P<0.05) at each time point after the interruption. Blood potassium increased at the end of operation compared with that before interruption (P<0.05); and the free calcium after blocking and opening increased with a temporary decrease (P<0.05); the hemoglobin decreased significantly after interruption and clamping (P<0.05). Conclusions Anesthesia length and bleeding should be reduced in ex vivo liver resection followed by autotransplantation, thus the extubation time would be shortened and the prognosis of the patients might be improved. Because of the longer anhepatic phase, the blood gas analysis varies largely. During operation, blood gas analysis and monitoring should be strengthened, and the acid-base balance and electrolytes should be maintained in time.
ObjectiveTo summarize and analyze the application of ex vivo liver resection and autotransplantation (ELRA) in the treatment of hepatobiliary diseases. MethodThe related literature about ELRA used to treat various hepatobiliary space-occupyingdiseases at home and abroad in recent years was comprehensively searched and summarized. ResultsELRA had overcome the limitations of limited operational space in traditional surgery for the treatment of hepatobiliary space-occupying diseases reduced dependence on donor livers, and avoided post-transplant rejection. It had been applied in the treatment of hepatic alveolar echinococcosis, liver cancer, cholangiocarcinoma, and rare liver space-occupying diseases. ConclusionsWith the maturation of ELRA techniques and the continuous improvement of ex vivo liver perfusion technology, along with rigorous preoperative evaluation and meticulous postoperative management, postoperative complications of ELRA have significantly decreased compared to the initial stages of its application. By strictly adhering to surgical indications, this procedure is expected to be used treatment in an increasing number of hepatobiliary space-occupying diseases.