F. D. Üstündağ Et Al. , "Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis," TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2, pp.151-160, 2023
Üstündağ, F. D. Et Al. 2023. Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis. TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2 , 151-160.
Üstündağ, F. D., Ünal, İ., Üstündağ, Ü. V., Cansız, D., Beler, M., Alturfan, A. A., ... Tiber, P.(2023). Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis. TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2, 151-160.
Üstündağ, Fümet Et Al. "Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis," TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2, 151-160, 2023
Üstündağ, Fümet D. Et Al. "Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis." TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2, pp.151-160, 2023
Üstündağ, F. D. Et Al. (2023) . "Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis." TOXICOLOGY MECHANISMS AND METHODS , vol.33, no.2, pp.151-160.
@article{article, author={Fümet Duygu Üstündağ Et Al. }, title={Morphine ameliorates pentylenetetrazole-induced locomotor pattern in zebrafish embryos; mechanism involving regulation of opioid receptors, suppression of oxidative stress, and inflammation in epileptogenesis}, journal={TOXICOLOGY MECHANISMS AND METHODS}, year=2023, pages={151-160} }