5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent. / Perrier, Jean-Francois; Hounsgaard, Jørn Dybkjær.

In: Journal of Neurophysiology, No. 89, 2003, p. 954-959.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Perrier, J-F & Hounsgaard, JD 2003, '5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent', Journal of Neurophysiology, no. 89, pp. 954-959.

APA

Perrier, J-F., & Hounsgaard, J. D. (2003). 5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent. Journal of Neurophysiology, (89), 954-959.

Vancouver

Perrier J-F, Hounsgaard JD. 5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent. Journal of Neurophysiology. 2003;(89):954-959.

Author

Perrier, Jean-Francois ; Hounsgaard, Jørn Dybkjær. / 5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent. In: Journal of Neurophysiology. 2003 ; No. 89. pp. 954-959.

Bibtex

@article{0749386074c511dbbee902004c4f4f50,
title = "5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent",
author = "Jean-Francois Perrier and Hounsgaard, {J{\o}rn Dybkj{\ae}r}",
year = "2003",
language = "English",
pages = "954--959",
journal = "Journal of Neurophysiology",
issn = "0022-3077",
publisher = "American Physiological Society",
number = "89",

}

RIS

TY - JOUR

T1 - 5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L -type calcium surrent

AU - Perrier, Jean-Francois

AU - Hounsgaard, Jørn Dybkjær

PY - 2003

Y1 - 2003

M3 - Journal article

SP - 954

EP - 959

JO - Journal of Neurophysiology

JF - Journal of Neurophysiology

SN - 0022-3077

IS - 89

ER -

ID: 123288