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Scott J Baker

Showing results (1-10 of 11) with videos related to

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The Journal of Pharmacology and Experimental Therapeutics|December 22, 2010
Awake rat pharmacological magnetic resonance imaging as a translational pharmacodynamic biomarker: metabotropic glutamate 2/3 agonist modulation of ketamine-induced blood oxygenation level dependence signalsChih-Liang Chin, Jaymin Upadhyay, Gerard J Marek, et al.
Biochemical Pharmacology|January 12, 2011
Paradigm shift in translational neuroimaging of CNS disordersUnal Sakoğlu, Jaymin Upadhyay, Chih-Liang Chin, et al.
Neuropharmacology|August 26, 2009
Comparison of mechanical allodynia and the affective component of inflammatory pain in ratsJanel M Boyce-Rustay, Chengmin Zhong, Rebecca Kohnken, et al.
Pain|August 27, 2013
Multimodal assessment of nervous and immune system responses following sciatic nerve injuryLoren Lasko, Xin Huang, Martin J Voorbach, et al.
Plos One|November 30, 2011
Default-mode-like network activation in awake rodentsJaymin Upadhyay, Scott J Baker, Prasant Chandran, et al.
Pain|August 3, 2005
Electrophysiological and in vivo characterization of A-317567, a novel blocker of acid sensing ion channelsG R Dubé, Sonya G Lehto, Nicole M Breese, et al.
Neuroimage|September 18, 2012
Pharmacological modulation of brain activity in a preclinical model of osteoarthritisJaymin Upadhyay, Scott J Baker, Rajasimhan Rajagovindan, et al.
Pain|July 13, 2010
A-995662 [(R)-8-(4-methyl-5-(4-(trifluoromethyl)phenyl)oxazol-2-ylamino)-1,2,3,4-tetrahydronaphthalen-2-ol], a novel, selective TRPV1 receptor antagonist, reduces spinal release of glutamate and CGRP in a rat knee joint pain modelPamela S Puttfarcken, Ping Han, Shailen K Joshi, et al.
Pharmacology, Biochemistry, and Behavior|December 17, 2009
H4 receptor antagonism exhibits anti-nociceptive effects in inflammatory and neuropathic pain models in ratsGin C Hsieh, Prasant Chandran, Anita K Salyers, et al.
Pain|March 16, 2011
Selective blockade of TRPA1 channel attenuates pathological pain without altering noxious cold sensation or body temperature regulationJun Chen, Shailen K Joshi, Stanley DiDomenico, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
The Journal of Pharmacology and Experimental Therapeutics|December 22, 2010
Awake rat pharmacological magnetic resonance imaging as a translational pharmacodynamic biomarker: metabotropic glutamate 2/3 agonist modulation of ketamine-induced blood oxygenation level dependence signalsChih-Liang Chin, Jaymin Upadhyay, Gerard J Marek, et al.
Biochemical Pharmacology|January 12, 2011
Paradigm shift in translational neuroimaging of CNS disordersUnal Sakoğlu, Jaymin Upadhyay, Chih-Liang Chin, et al.
Neuropharmacology|August 26, 2009
Comparison of mechanical allodynia and the affective component of inflammatory pain in ratsJanel M Boyce-Rustay, Chengmin Zhong, Rebecca Kohnken, et al.
Pain|August 27, 2013
Multimodal assessment of nervous and immune system responses following sciatic nerve injuryLoren Lasko, Xin Huang, Martin J Voorbach, et al.
Plos One|November 30, 2011
Default-mode-like network activation in awake rodentsJaymin Upadhyay, Scott J Baker, Prasant Chandran, et al.
Pain|August 3, 2005
Electrophysiological and in vivo characterization of A-317567, a novel blocker of acid sensing ion channelsG R Dubé, Sonya G Lehto, Nicole M Breese, et al.
Neuroimage|September 18, 2012
Pharmacological modulation of brain activity in a preclinical model of osteoarthritisJaymin Upadhyay, Scott J Baker, Rajasimhan Rajagovindan, et al.
Pain|July 13, 2010
A-995662 [(R)-8-(4-methyl-5-(4-(trifluoromethyl)phenyl)oxazol-2-ylamino)-1,2,3,4-tetrahydronaphthalen-2-ol], a novel, selective TRPV1 receptor antagonist, reduces spinal release of glutamate and CGRP in a rat knee joint pain modelPamela S Puttfarcken, Ping Han, Shailen K Joshi, et al.
Pharmacology, Biochemistry, and Behavior|December 17, 2009
H4 receptor antagonism exhibits anti-nociceptive effects in inflammatory and neuropathic pain models in ratsGin C Hsieh, Prasant Chandran, Anita K Salyers, et al.
Pain|March 16, 2011
Selective blockade of TRPA1 channel attenuates pathological pain without altering noxious cold sensation or body temperature regulationJun Chen, Shailen K Joshi, Stanley DiDomenico, et al.
Pageof 2