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Christopher P Ford

Showing results (1-10 of 54) with videos related to

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Cell Reports|December 13, 2018
Dopamine Cells Differentially Regulate Striatal Cholinergic Transmission across Regions through Corelease of Dopamine and GlutamateYuan Cai, Christopher P Ford
Neuron|August 9, 2019
Cholinergic Interneurons Provide a Link to Balance Excitation across Striatal Output NeuronsSheng Gong, Christopher P Ford
Trends in Pharmacological Sciences|January 23, 2020
Opioid-Induced Adaptations of cAMP Dynamics in the Nucleus AccumbensSarah Zych, Christopher P Ford
Experimental Neurology|October 6, 2023
Alterations in neurotransmitter co-release in Parkinson's diseaseKelsey Barcomb, Christopher P Ford
Neuron|March 18, 2008
Mesoprefrontal dopamine neurons distinguish themselvesChristopher P Ford, John T Williams
Neuron|September 15, 2017
Revealing a Role for NMDA Receptors in Regulating STN Inputs following the Loss of DopamineAphroditi A Mamaligas, Christopher P Ford
The Journal of Physiology|December 5, 2015
Mechanisms of 5-HT1A receptor-mediated transmission in dorsal raphe serotonin neuronsNicholas A Courtney, Christopher P Ford
NPJ Parkinson'S Disease|July 2, 2025
Postsynaptic adaptations in direct pathway muscarinic M4-receptor signaling follow the temporal and regional pattern of dopaminergic degenerationBeatriz E Nielsen, Christopher P Ford
Science Advances|November 20, 2024
Reduced striatal M4-cholinergic signaling following dopamine loss contributes to parkinsonian and l-DOPA-induced dyskinetic behaviorsBeatriz E Nielsen, Christopher P Ford
Cell Reports|May 18, 2022
Divergent properties and independent regulation of striatal dopamine and GABA co-transmissionSarah M Zych, Christopher P Ford
Pageof 6

Showing results (1-10 of 54) with videos related to

Sort By:
Pageof 6
Cell Reports|December 13, 2018
Dopamine Cells Differentially Regulate Striatal Cholinergic Transmission across Regions through Corelease of Dopamine and GlutamateYuan Cai, Christopher P Ford
Neuron|August 9, 2019
Cholinergic Interneurons Provide a Link to Balance Excitation across Striatal Output NeuronsSheng Gong, Christopher P Ford
Trends in Pharmacological Sciences|January 23, 2020
Opioid-Induced Adaptations of cAMP Dynamics in the Nucleus AccumbensSarah Zych, Christopher P Ford
Experimental Neurology|October 6, 2023
Alterations in neurotransmitter co-release in Parkinson's diseaseKelsey Barcomb, Christopher P Ford
Neuron|March 18, 2008
Mesoprefrontal dopamine neurons distinguish themselvesChristopher P Ford, John T Williams
Neuron|September 15, 2017
Revealing a Role for NMDA Receptors in Regulating STN Inputs following the Loss of DopamineAphroditi A Mamaligas, Christopher P Ford
The Journal of Physiology|December 5, 2015
Mechanisms of 5-HT1A receptor-mediated transmission in dorsal raphe serotonin neuronsNicholas A Courtney, Christopher P Ford
NPJ Parkinson'S Disease|July 2, 2025
Postsynaptic adaptations in direct pathway muscarinic M4-receptor signaling follow the temporal and regional pattern of dopaminergic degenerationBeatriz E Nielsen, Christopher P Ford
Science Advances|November 20, 2024
Reduced striatal M4-cholinergic signaling following dopamine loss contributes to parkinsonian and l-DOPA-induced dyskinetic behaviorsBeatriz E Nielsen, Christopher P Ford
Cell Reports|May 18, 2022
Divergent properties and independent regulation of striatal dopamine and GABA co-transmissionSarah M Zych, Christopher P Ford
Pageof 6