Gonzalez-Miguel, J., Valero, M. A., Reguera-Gomez, M., Mas-Bargues, C., Bargues, M. D., Simon-Martin, F., & Mas-Coma, S. (2020). Numerous Fasciola plasminogen-binding proteins may underlie blood-brain barrier leakage and explain neurological disorder complexity and heterogeneity in the acute and chronic phases of human fascioliasis – CORRIGENDUM. Parasitology.
Citação norma ChicagoGonzalez-Miguel, J., M. A. Valero, M. Reguera-Gomez, C. Mas-Bargues, M. D. Bargues, F. Simon-Martin, and S. Mas-Coma. "Numerous Fasciola Plasminogen-binding Proteins May Underlie Blood-brain Barrier Leakage and Explain Neurological Disorder Complexity and Heterogeneity in the Acute and Chronic Phases of Human Fascioliasis – CORRIGENDUM." Parasitology 2020.
Citação norma MLAGonzalez-Miguel, J., et al. "Numerous Fasciola Plasminogen-binding Proteins May Underlie Blood-brain Barrier Leakage and Explain Neurological Disorder Complexity and Heterogeneity in the Acute and Chronic Phases of Human Fascioliasis – CORRIGENDUM." Parasitology 2020.