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Neuroscience|December 14, 2004
Glucose transporter plasticity during memory processingC Choeiri, W Staines, T Miki, et al.Neuroscience|April 17, 2002
Immunohistochemical localization and quantification of glucose transporters in the mouse brainC Choeiri, W Staines, C MessierBehavioural Brain Research|June 27, 2006
Cerebral glucose transporters expression and spatial learning in the K-ATP Kir6.2(-/-) knockout miceC Choeiri, W A Staines, T Miki, et al.Journal of Molecular Endocrinology|April 9, 1999
The structure and function of the ATP-sensitive K+ channel in insulin-secreting pancreatic beta-cellsT Miki, K Nagashima, S SeinoArchives of Histology and Cytology|April 20, 2001
Morphological changes in pancreatic islets of KATP channel-deficient mice: the involvement of KATP channels in the survival of insulin cells and the maintenance of islet architectureA Winarto, T Miki, S Seino, et al.Diabetes|June 27, 2000
Diverse roles of K(ATP) channels learned from Kir6.2 genetically engineered miceS Seino, T Iwanaga, K Nagashima, et al.Physiological Genomics|May 26, 2005
Treadmill running causes significant fiber damage in skeletal muscle of KATP channel-deficient miceM Thabet, T Miki, S Seino, et al.American Journal of Physiology. Cell Physiology|October 13, 2000
A K(ATP) channel deficiency affects resting tension, not contractile force, during fatigue in skeletal muscleB Gong, T Miki, S Seino, et al.Diabetes|March 29, 2001
Roles of ATP-sensitive K+ channels in cell survival and differentiation in the endocrine pancreasT Miki, T Iwanaga, K Nagashima, et al.American Journal of Physiology. Cell Physiology|August 15, 2003
KATP channels depress force by reducing action potential amplitude in mouse EDL and soleus muscleB Gong, D Legault, T Miki, et al.Pageof 115