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Ahmet Dogrul

Showing results (11-20 of 26) with videos related to

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Pain|December 13, 2000
The interaction between IL-1beta and morphine: possible mechanism of the deficiency of morphine-induced analgesia in diabetic miceHusamettin Gul, Oguzhan Yildiz, Ahmet Dogrul, et al.
European Journal of Pharmacology|September 28, 2010
Systemic cannabinoids produce CB₁-mediated antinociception by activation of descending serotonergic pathways that act upon spinal 5-HT(7) and 5-HT(2A) receptorsMelik Seyrek, Serdar Kahraman, Mehmet Salih Deveci, et al.
Acta Diabetologica|November 25, 2010
Systemic and spinal administration of etanercept, a tumor necrosis factor alpha inhibitor, blocks tactile allodynia in diabetic miceAhmet Dogrul, Husamettin Gul, Ozgur Yesilyurt, et al.
Pain|September 23, 2003
Topical cannabinoid antinociception: synergy with spinal sitesAhmet Dogrul, Husamettin Gul, Ahmet Akar, et al.
Anesthesia and Analgesia|November 23, 2005
Spinal L-type calcium channel blockade abolishes opioid-induced sensory hypersensitivity and antinociceptive toleranceAhmet Dogrul, Edward J Bilsky, Michael H Ossipov, et al.
Archives of Dermatological Research|April 30, 2016
Systemic and spinal administration of FAAH, MAGL inhibitors and dual FAAH/MAGL inhibitors produce antipruritic effect in miceOzgur Yesilyurt, Mutlu Cayirli, Yusuf Serdar Sakin, et al.
European Journal of Pharmacology|December 31, 2011
Systemic paracetamol-induced analgesic and antihyperalgesic effects through activation of descending serotonergic pathways involving spinal 5-HT₇ receptorsAhmet Dogrul, Melik Seyrek, Emin Ozgur Akgul, et al.
Pain|September 23, 2003
Topical cannabinoid enhances topical morphine antinociceptionOzgur Yesilyurt, Ahmet Dogrul, Husamettin Gul, et al.
Pain|November 19, 2002
'Knock-down' of spinal CB1 receptors produces abnormal pain and elevates spinal dynorphin content in miceAhmet Dogrul, Luis R Gardell, Shouwu Ma, et al.
Pain|September 23, 2003
Reversal of experimental neuropathic pain by T-type calcium channel blockersAhmet Dogrul, Luis R Gardell, Michael H Ossipov, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
Pain|December 13, 2000
The interaction between IL-1beta and morphine: possible mechanism of the deficiency of morphine-induced analgesia in diabetic miceHusamettin Gul, Oguzhan Yildiz, Ahmet Dogrul, et al.
European Journal of Pharmacology|September 28, 2010
Systemic cannabinoids produce CB₁-mediated antinociception by activation of descending serotonergic pathways that act upon spinal 5-HT(7) and 5-HT(2A) receptorsMelik Seyrek, Serdar Kahraman, Mehmet Salih Deveci, et al.
Acta Diabetologica|November 25, 2010
Systemic and spinal administration of etanercept, a tumor necrosis factor alpha inhibitor, blocks tactile allodynia in diabetic miceAhmet Dogrul, Husamettin Gul, Ozgur Yesilyurt, et al.
Pain|September 23, 2003
Topical cannabinoid antinociception: synergy with spinal sitesAhmet Dogrul, Husamettin Gul, Ahmet Akar, et al.
Anesthesia and Analgesia|November 23, 2005
Spinal L-type calcium channel blockade abolishes opioid-induced sensory hypersensitivity and antinociceptive toleranceAhmet Dogrul, Edward J Bilsky, Michael H Ossipov, et al.
Archives of Dermatological Research|April 30, 2016
Systemic and spinal administration of FAAH, MAGL inhibitors and dual FAAH/MAGL inhibitors produce antipruritic effect in miceOzgur Yesilyurt, Mutlu Cayirli, Yusuf Serdar Sakin, et al.
European Journal of Pharmacology|December 31, 2011
Systemic paracetamol-induced analgesic and antihyperalgesic effects through activation of descending serotonergic pathways involving spinal 5-HT₇ receptorsAhmet Dogrul, Melik Seyrek, Emin Ozgur Akgul, et al.
Pain|September 23, 2003
Topical cannabinoid enhances topical morphine antinociceptionOzgur Yesilyurt, Ahmet Dogrul, Husamettin Gul, et al.
Pain|November 19, 2002
'Knock-down' of spinal CB1 receptors produces abnormal pain and elevates spinal dynorphin content in miceAhmet Dogrul, Luis R Gardell, Shouwu Ma, et al.
Pain|September 23, 2003
Reversal of experimental neuropathic pain by T-type calcium channel blockersAhmet Dogrul, Luis R Gardell, Michael H Ossipov, et al.
Pageof 3