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Patric K Stanton

Showing results (1-10 of 66) with videos related to

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Progress in Brain Research|September 4, 2007
Comparison of cellular mechanisms of long-term depression of synaptic strength at perforant path-granule cell and Schaffer collateral-CA1 synapsesBeatrice Pöschel, Patric K Stanton
Current Neuropharmacology|February 3, 2016
Synaptic Plasticity, Metaplasticity and DepressionLinnea R Vose, Patric K Stanton
Brain Research|January 25, 2003
A paired-pulse facilitation analysis of long-term synaptic depression at excitatory synapses in rat hippocampal CA1 and CA3 regionsLinda A Santschi, Patric K Stanton
Neuroscience Letters|June 8, 2002
Low-frequency stimulation of the kindling focus delays basolateral amygdala kindling in immature ratsLibor Velísek, Jana Velísková, Patric K Stanton
Biotechniques|March 30, 2006
Direct monitoring of vesicular release and uptake in brain slices by multiphoton excitation of the styryl FM 1-43Jochen Winterer, Patric K Stanton, Wolfgang Müller
Plos One|June 3, 2011
Gβγ and the C terminus of SNAP-25 are necessary for long-term depression of transmitter releaseXiao-lei Zhang, Chirag Upreti, Patric K Stanton
Alzheimer'S Research & Therapy|December 6, 2014
Considerations for animal models of blast-related traumatic brain injury and chronic traumatic encephalopathyLee E Goldstein, Ann C McKee, Patric K Stanton
Journal of Neurobiology|December 6, 2005
Activation of receptors negatively coupled to adenylate cyclase is required for induction of long-term synaptic depression at Schaffer collateral-CA1 synapsesLinda A Santschi, Xiao-lei Zhang, Patric K Stanton
The European Journal of Neuroscience|November 26, 2005
Imaging LTP of presynaptic release of FM1-43 from the rapidly recycling vesicle pool of Schaffer collateral-CA1 synapses in rat hippocampal slicesPatric K Stanton, Jochen Winterer, Xiao-Lei Zhang, et al.
Toxicology and Applied Pharmacology|October 2, 2012
Differential antagonism of tetramethylenedisulfotetramine-induced seizures by agents acting at NMDA and GABA(A) receptorsMichael P Shakarjian, Jana Velíšková, Patric K Stanton, et al.
Pageof 7

Showing results (1-10 of 66) with videos related to

Sort By:
Pageof 7
Progress in Brain Research|September 4, 2007
Comparison of cellular mechanisms of long-term depression of synaptic strength at perforant path-granule cell and Schaffer collateral-CA1 synapsesBeatrice Pöschel, Patric K Stanton
Current Neuropharmacology|February 3, 2016
Synaptic Plasticity, Metaplasticity and DepressionLinnea R Vose, Patric K Stanton
Brain Research|January 25, 2003
A paired-pulse facilitation analysis of long-term synaptic depression at excitatory synapses in rat hippocampal CA1 and CA3 regionsLinda A Santschi, Patric K Stanton
Neuroscience Letters|June 8, 2002
Low-frequency stimulation of the kindling focus delays basolateral amygdala kindling in immature ratsLibor Velísek, Jana Velísková, Patric K Stanton
Biotechniques|March 30, 2006
Direct monitoring of vesicular release and uptake in brain slices by multiphoton excitation of the styryl FM 1-43Jochen Winterer, Patric K Stanton, Wolfgang Müller
Plos One|June 3, 2011
Gβγ and the C terminus of SNAP-25 are necessary for long-term depression of transmitter releaseXiao-lei Zhang, Chirag Upreti, Patric K Stanton
Alzheimer'S Research & Therapy|December 6, 2014
Considerations for animal models of blast-related traumatic brain injury and chronic traumatic encephalopathyLee E Goldstein, Ann C McKee, Patric K Stanton
Journal of Neurobiology|December 6, 2005
Activation of receptors negatively coupled to adenylate cyclase is required for induction of long-term synaptic depression at Schaffer collateral-CA1 synapsesLinda A Santschi, Xiao-lei Zhang, Patric K Stanton
The European Journal of Neuroscience|November 26, 2005
Imaging LTP of presynaptic release of FM1-43 from the rapidly recycling vesicle pool of Schaffer collateral-CA1 synapses in rat hippocampal slicesPatric K Stanton, Jochen Winterer, Xiao-Lei Zhang, et al.
Toxicology and Applied Pharmacology|October 2, 2012
Differential antagonism of tetramethylenedisulfotetramine-induced seizures by agents acting at NMDA and GABA(A) receptorsMichael P Shakarjian, Jana Velíšková, Patric K Stanton, et al.
Pageof 7