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Article Dans Une Revue Clinical Biomechanics Année : 2020

Partial orthotopic liver transplantation in combination with two-stage hepatectomy: A proof-of-concept explained by mathematical modeling

Résumé

Background Resection And Partial Liver Segment 2/3 Transplantation with Delayed total hepatectomy (RAPID) includes total hepatectomy in 2 steps with small graft transplantation at first stage. To avoid graft portal hyperperfusion, portal vein pressure monitoring is required after revascularization and right portal vein clamping. To date, portal flow modulation has not been reported but simulating hemodynamics in RAPID patients would be useful to anticipate these procedures. Our team developed hemodynamic 0D modeling; we aimed to assess if this mathematical model could be accurately used in the RAPID setting. Methods The modified 0D model was retrospectively tested on 3 patients. We compared our estimated portal vein pressures and portocaval gradients to those intraoperatively measured, as indication to modulate portal flow relies on these measures. Findings Portal pressures measured after right portal vein clamping (end of RAPID procedure) in patients 1, 2 and 3 were respectively of 14, 16 and 12mmHg while the simulated pressures were of 13.1, 14.8 and 11.5 mmHg (p=0.25). Portocaval gradients measured after right portal vein clamping in the 3 patients were respectively of 10, 11 and 7mmHg while the simulated gradients were of 9.9, 11.6 and 8.3 mmHg (p=0.5). Interpretation We succeeded to predict portal vein pressures and portocaval gradients after RAPID. This promising report demonstrates that 0D simulation could be a useful tool for human decisionmaking. Moreover, such a patient-specific model could be of importance if we transpose RAPID experience to hepatocellular carcinoma bearing cirrhotics, a population with high probability of portal hypertension after RAPID.
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Dates et versions

hal-03136651 , version 1 (09-02-2021)

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Nicolas Golse, Florian Joly, Quentin Nicolas, Eric Vibert, Pal Dag Line, et al.. Partial orthotopic liver transplantation in combination with two-stage hepatectomy: A proof-of-concept explained by mathematical modeling. Clinical Biomechanics, 2020, 77, pp.195-200. ⟨10.1016/j.clinbiomech.2020.01.020⟩. ⟨hal-03136651⟩
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