Terje Lomo

University of Oslo, Oslo, Oslo, Norway 
"Terje Lomo"
Mean distance: 13.35 (cluster 6)


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Per Andersen grad student 1965-1969 University of Oslo
 (One of First Discoverers of LTP)
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Lømo T. (2015) Scientific Discoveries: What Is Required for Lasting Impact. Annual Review of Physiology
Sloviter RS, Lømo T. (2012) Updating the lamellar hypothesis of hippocampal organization. Frontiers in Neural Circuits. 6: 102
Lain E, Carnejac S, Escher P, et al. (2009) A novel role for embigin to promote sprouting of motor nerve terminals at the neuromuscular junction. The Journal of Biological Chemistry. 284: 8930-9
Grønevik E, Mathiesen I, Lømo T. (2005) Early events of electroporation-mediated intramuscular DNA vaccination potentiate Th1-directed immune responses. The Journal of Gene Medicine. 7: 1246-54
Awad SS, Lightowlers RN, Young C, et al. (2001) Sodium channel mRNAs at the neuromuscular junction: distinct patterns of accumulation and effects of muscle activity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 21: 8456-63
Bezakova G, Rabben I, Sefland I, et al. (2001) Neural agrin controls acetylcholine receptor stability in skeletal muscle fibers. Proceedings of the National Academy of Sciences of the United States of America. 98: 9924-9
Hoover F, Mathiesen I, Skålhegg BS, et al. (2001) Differential expression and regulation of the PKA signalling pathway in fast and slow skeletal muscle. Anatomy and Embryology. 203: 193-201
Mathiesen I, Rimer M, Ashtari O, et al. (1999) Regulation of the size and distribution of agrin-induced postsynaptic-like apparatus in adult skeletal muscle by electrical muscle activity. Molecular and Cellular Neurosciences. 13: 207-17
Rimer M, Cohen I, Lømo T, et al. (1998) Neuregulins and erbB receptors at neuromuscular junctions and at agrin-induced postsynaptic-like apparatus in skeletal muscle. Molecular and Cellular Neurosciences. 12: 1-15
Rimer M, Mathiesen I, Lømo T, et al. (1997) gamma-AChR/epsilon-AChR switch at agrin-induced postsynaptic-like apparatus in skeletal muscle. Molecular and Cellular Neurosciences. 9: 254-63
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