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British Journal of Pharmacology|March 2, 1999
Mibefradil (Ro 40-5967) inhibits several Ca2+ and K+ currents in human fusion-competent myoblastsJ H Liu, P Bijlenga, T Occhiodoro, et al.The Journal of Physiology|October 9, 1998
An ether -à-go-go K+ current, Ih-eag, contributes to the hyperpolarization of human fusion-competent myoblastsP Bijlenga, T Occhiodoro, J H Liu, et al.Differentiation; Research in Biological Diversity|March 1, 1996
Identification of self-renewing myoblasts in the progeny of single human muscle satellite cellsA Baroffio, M Hamann, L Bernheim, et al.The Journal of Physiology|May 15, 1996
Contribution of a non-inactivating potassium current to the resting membrane potential of fusion-competent human myoblastsL Bernheim, J H Liu, M Hamann, et al.Muscle & Nerve|May 1, 1993
Purification of human muscle satellite cells by flow cytometryA Baroffio, J P Aubry, A Kaelin, et al.Muscle & Nerve|February 18, 1998
Needle muscle biopsy in the investigation of neuromuscular disordersM R Magistris, A Kohler, G Pizzolato, et al.The Journal of Physiology|August 26, 1998
Role of an inward rectifier K+ current and of hyperpolarization in human myoblast fusionJ H Liu, P Bijlenga, J Fischer-Lougheed, et al.The Journal of Cell Biology|May 16, 2001
Human myoblast fusion requires expression of functional inward rectifier Kir2.1 channelsJ Fischer-Lougheed, J H Liu, E Espinos, et al.FEBS Letters|September 17, 1998
Cloning of a human ether-a-go-go potassium channel expressed in myoblasts at the onset of fusionT Occhiodoro, L Bernheim, J H Liu, et al.Proceedings of the National Academy of Sciences of the United States of America|June 22, 2000
T-type alpha 1H Ca2+ channels are involved in Ca2+ signaling during terminal differentiation (fusion) of human myoblastsP Bijlenga, J H Liu, E Espinos, et al.Pageof 13