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1.
J. bras. pneumol ; 45(4): e20170288, 2019. graf
Article in English | LILACS | ID: biblio-1040273

ABSTRACT

ABSTRACT Liquid perfluorocarbon (PFC) instillation has been studied experimentally as an adjuvant therapy in the preservation of lung grafts during cold ischemia. The objective of this study was to evaluate whether vaporized PFC is also protective of lung grafts at different cold ischemia times. We performed histological analysis of and measured oxidative stress in the lungs of animals that received only preservation solution with low-potassium dextran (LPD) or vaporized PFC together with LPD. We conclude that vaporized PFC reduces the production of free radicals and the number of pulmonary structural changes resulting from cold ischemia.


RESUMO O perfluorocarbono (PFC) líquido tem sido estudado experimentalmente como uma substância adjuvante na preservação de enxertos pulmonares durante o período de isquemia fria. O objetivo deste estudo foi avaliar se o PFC vaporizado (e não instilado) também atuaria como protetor de enxertos pulmonares em diferentes tempos de isquemia fria. Realizamos análise histológica e dosamos o estresse oxidativo em pulmões de animais que receberam somente uma solução de preservação com low-potassium dextran (LPD, dextrana com baixa concentração de potássio) ou PFC vaporizado associado a LPD. Concluímos que o PFC vaporizado reduziu a produção de radicais livres e provocou menor número de alterações estruturais pulmonares decorrentes do período de isquemia fria que o uso de LPD isoladamente.


Subject(s)
Humans , Organ Preservation/methods , Lung Transplantation/methods , Oxidative Stress/drug effects , Cold Ischemia/methods , Fluorocarbons/pharmacology , Lung/drug effects , Reference Values , Time Factors , Reproducibility of Results , Dextrans/pharmacology , Organ Preservation Solutions , Glucose/pharmacology , Lung/pathology
2.
Acta cir. bras ; 31(2): 138-142, Feb. 2016. graf
Article in English | LILACS | ID: lil-775560

ABSTRACT

PURPOSE: To describe a novel approach for implanting intramuscular electrodes in the diaphragm through videolaparoscopy. METHODS: We used twelve pigs for this videolaparoscopic technique, which permits at the same time to explore the diaphragm, to locate its motor points and to fix the electrodes in the diaphragm bilaterally. In this technique we used three trocars: one portal for a 10-mm 0° viewing angle laparoscope, one portal for the manipulation of structures and another for electrode implantation. RESULTS: All animals survived the procedure without pneumothorax/capnothorax or other complication. Implanted electrodes provided an appropriate interface between the muscle and the electrical current generator, and electroventilation was satisfactorily generated in all animals. CONCLUSION: This videolaparoscopic technique with three trocars enables the exploration and identification of motor points and an efficient fixation of one or two electrodes in each hemidiaphragm.


Subject(s)
Animals , Laparoscopy/methods , Abdominal Muscles/surgery , Electrodes, Implanted , Swine , Diaphragm/surgery , Diaphragm/physiology , Models, Animal , Electric Stimulation/methods , Operative Time
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