AM, G., VG, F., S, R., & AG, K. (2000). Mechanism of ventricular defibrillation. The role of tissue geometry in the changes in transmembrane potential in patterned myocyte cultures. Circulation, 101(20), 2438. https://doi.org/10.1161/01.cir.101.20.2438
Chicago Style (17th ed.) CitationAM, Gillis, Fast VG, Rohr S, and Kléber AG. "Mechanism of Ventricular Defibrillation. The Role of Tissue Geometry in the Changes in Transmembrane Potential in Patterned Myocyte Cultures." Circulation 101, no. 20 (2000): 2438. https://doi.org/10.1161/01.cir.101.20.2438.
MLA (9th ed.) CitationAM, Gillis, et al. "Mechanism of Ventricular Defibrillation. The Role of Tissue Geometry in the Changes in Transmembrane Potential in Patterned Myocyte Cultures." Circulation, vol. 101, no. 20, 2000, p. 2438, https://doi.org/10.1161/01.cir.101.20.2438.