[1]Gillers BS, Chiplunkar A, Aly H, et al. Canonical wnt signaling regulates atrioventricular junction programming and electrophysiological properties[J]. Circ Res, 2015, 116(3):398-406.
[2]Benson DW, Sund KL. Looking down the atrioventricular canal[J]. Cardiovasc Res, 2010, 88(2):205-206.
[3]Bosada FM, Devasthali V, Jones KA, et al. Wnt/β-catenin signaling enables developmental transitions during valvulogenesis[J]. Development, 2016, 143(6):1041-1054.
[4]Lockhart MM, Boukens BJ, Phelps AL, et al. Alk3 mediated Bmp signaling controls the contribution of epicardially derived cells to the tissues of the atrioventricular junction[J]. Dev Biol, 2014, 396(1):8-18.
[5]Aanhaanen WT, Brons JF, Domínguez JN, et al. The Tbx2+ primary myocardium of the atrioventricular canal forms the atrioventricular node and the base of the Left ventricle[J]. Circ Res, 2009, 104(11):1267-1274.
[6]Kim JS, Virágh S, Moorman AF, et al. Development of the myocardium of the atrioventricular canal and the vestibular spine in the human heart[J]. Circ Res, 2001, 88(4): 395-402.
[7]Anderson RH, Brown NA, Webb S. Development and structure of the atrial septum[J]. Heart, 2002, 88(1):104-110.
[8]Wessels A, Van den Hoff MJ, Adamo RF, et al. Epicardially derived fibroblasts preferentially contribute to the parietal leaflets of the atrioventricular valves in the murine heart[J]. Dev Biol, 2012, 366(2):111-124.
[9]Kokubo H, Tomita-Miyagawa S, Hamada Y, et al. Hesr1 and Hesr2 regulate atrioventricular boundary formation in the developing heart through the repression of Tbx2[J]. Development, 2007, 134(4):747-755.
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