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Open Access research that explores why technology innovation occurs

Strathprints makes available Open Access scholarly outputs by Hunter Centre for Entrepreneurship based within Strathclyde Business School. Particular research specialisms within the Hunter Centre include better understanding the dynamics of how new technologies and business models move from concept to market. This research aligns with another local specialism, 'entrepreneurial ecosystems', which seeks to codify the role of context and systemic influences on entrepreneurship.

Explore some of this Open Access research from Hunter Centre for Entrepreneurship. Or explore all Strathclyde Open Access research...

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Jump to: 2019 | 2017 | 2010 | 2008 | 2006
Number of items: 5.

2019

Hridi, Shehla U. and Franssen, Aimée J.P.M. and Jiang, Hui-Rong and Bushell, Trevor J. (2019) Interleukin-16 inhibits sodium channel function and GluA1 phosphorylation via CD4- and CD9-independent mechanisms to reduce hippocampal neuronal excitability and synaptic activity. Molecular and Cellular Neuroscience, 95. pp. 71-78. ISSN 1044-7431

2017

Salaun, Christine and Ritchie, Louise and Greaves, Jennifer and Bushell, Trevor J. and Chamberlain, Luke H. (2017) The C-terminal domain of zDHHC2 contains distinct sorting signals that regulate intracellular localisation in neurons and neuroendocrine cells. Molecular and Cellular Neuroscience, 85. ISSN 1044-7431

2010

Shakya-Shrestha, S. and Parmar, M. and Kennedy, Charles and Bushell, T. (2010) Two-pore potassium ion channels are inhibited by both Gq/11- and Gi-coupled P2Y receptors. Molecular and Cellular Neuroscience, 43 (4). pp. 363-369. ISSN 1044-7431

2008

Cain, Stuart M. and Meadows, Helen J. and Dunlop, John and Bushell, T. (2008) mGlu4 potentiation of K2P2.1 is dependant on C-terminal dephosphorylation. Molecular and Cellular Neuroscience, 37 (1). pp. 32-39. ISSN 1044-7431

2006

Lutz, E.M. and Ronaldson, E. and Shaw, P. and Johnson, M.S. and Holland, P.J. and Mitchell, R. (2006) Characterization of novel splice variants of the PAC(1) receptor in human neuroblastoma cells : consequences for signaling by VIP and PACAP. Molecular and Cellular Neuroscience, 31 (2). pp. 193-209.

This list was generated on Wed Dec 7 20:42:45 2022 GMT.