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1.
Asian J Endosc Surg ; 17(2): e13299, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38499011

RESUMO

Suprapancreatic lymph node dissection for patients with gastric cancer in whom the common hepatic artery is located neither at the suprapancreatic margin nor in front of the portal vein is a more difficult procedure than when the common hepatic artery is in a more typical position. There is an increased risk of injury to the vessels that need to be preserved and inadequate lymph node dissection. Measures that have been reported for use in this situation are preoperative diagnosis with three-dimensional computed tomography angiography, dissection using the portal vain as a guide, and safe exposure of the portal vein with dissection to preserve the nerves at the suprapancreatic margin and in front of the portal vein. We review the literature and report our experience with a patient whose common hepatic artery was not located in the suprapancreatic margin who safely underwent suprapancreatic lymph node dissection using these methods.


Assuntos
Laparoscopia , Neoplasias Gástricas , Humanos , Neoplasias Gástricas/cirurgia , Neoplasias Gástricas/patologia , Artéria Hepática/cirurgia , Artéria Hepática/patologia , Laparoscopia/métodos , Gastrectomia/métodos , Excisão de Linfonodo/métodos
2.
Nanoscale Adv ; 2(4): 1431-1436, 2020 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-36132319

RESUMO

Graphene-based sensors are of great interest in research due to their high specific surface area and high electron mobility that make them suitable for numerous advanced applications. In this paper, selective molecular detection using an antigen-antibody reaction on suspended graphene with a cavity-sealing structure was demonstrated. The suspended graphene sealed nanocavities in a pre-patterned Si substrate, which increased robustness and allowed the use of wet chemical processes for surface functionalization of the suspended graphene to achieve selective molecular binding. The selectivity was evaluated by nanomechanical deflection induced by molecular adsorption on the suspended graphene, resulting in spectral shifts in the optical interference between the suspended graphene and Si substrate. The chemically functionalized suspended graphene enables the analysis of intermolecular interactions and molecular kinetics by colorimetry using optical interference.

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