Bradley Launikonis

Affiliations: 
Physiology and Biophysics Rush University, Chicago, IL, United States 
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"Bradley Launikonis"
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Ferreira JJ, Pequera G, Launikonis BS, et al. (2020) A chloride channel blocker prevents the suppression by inorganic phosphate of the cytosolic calcium signals that control muscle contraction. The Journal of Physiology
Cully TR, Edwards JN, Murphy RM, et al. (2016) A quantitative description of tubular system Ca2+ handling in fast- and slow-twitch muscle fibres Journal of Physiology
Cheng YL, Park JS, Manzanero S, et al. (2014) Evidence that collaboration between HIF-1α and Notch-1 promotes neuronal cell death in ischemic stroke. Neurobiology of Disease. 62: 286-95
Cully TR, Edwards JN, Friedrich O, et al. (2012) Changes in plasma membrane Ca-ATPase and stromal interacting molecule 1 expression levels for Ca(2+) signaling in dystrophic mdx mouse muscle. American Journal of Physiology. Cell Physiology. 303: C567-76
Edwards JN, Cully TR, Shannon TR, et al. (2012) Longitudinal and transversal propagation of excitation along the tubular system of rat fast-twitch muscle fibres studied by high speed confocal microscopy Journal of Physiology. 590: 475-492
Edwards JN, Blackmore DG, Gilbert DF, et al. (2011) Store-operated calcium entry remains fully functional in aged mouse skeletal muscle despite a decline in STIM1 protein expression. Aging Cell. 10: 675-85
Launikonis BS, Murphy RM, Edwards JN. (2010) Toward the roles of store-operated Ca2+ entry in skeletal muscle Pflugers Archiv European Journal of Physiology. 460: 813-823
Edwards JN, Murphy RM, Cully TR, et al. (2010) Ultra-rapid activation and deactivation of store-operated Ca2+ entry in skeletal muscle Cell Calcium. 47: 458-467
Edwards JN, Friedrich O, Cully TR, et al. (2010) Upregulation of store-operated Ca2+ entry in dystrophic mdx mouse muscle American Journal of Physiology - Cell Physiology. 299: C42-C50
Launikonis BS, Stephenson DG, Friedrich O. (2009) Rapid Ca2+ flux through the transverse tubular membrane, activated by individual action potentials in mammalian skeletal muscle Journal of Physiology. 587: 2299-2312
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