1.
Physiological Roles of Gonadotropin-Inhibitory Hormone Signaling in the Control of Mammalian Reproductive Axis: Studies in the NPFF1 Receptor Null Mouse
by León, Silvia
Endocrinology (Philadelphia), 2014-08, Vol.155 (8), p.2953-2965

2.
Neuropeptide S: A Neuropeptide Promoting Arousal and Anxiolytic-like Effects
by Xu, Yan-Ling
Neuron (Cambridge, Mass.), 2004, Vol.43 (4), p.487-497

3.
Neural substrates of awakening probed with optogenetic control of hypocretin neurons
by Deisseroth, Karl
Nature, 2007-11-15, Vol.450 (7168), p.420-424

4.
A key role for orexin in panic anxiety
by Shekhar, Anantha
Nature medicine, 2010-01, Vol.16 (1), p.111-115

5.
A role for lateral hypothalamic orexin neurons in reward seeking
by Wimmer, Mathieu
Nature, 2005-09-22, Vol.437 (7058), p.556-559

6.
A Series of Suppressive Signals within the Drosophila Circadian Neural Circuit Generates Sequential Daily Outputs
by Liang, Xitong
Neuron (Cambridge, Mass.), 2017-06-21, Vol.94 (6), p.1173-1189.e4

7.
Orexinergic system in the locus coeruleus modulates the CO.sub.2 ventilatory response
by Vicente, Mariane C
Pflügers Archiv, 2016-05-01, Vol.468 (5), p.763

8.
Neuropeptide Transmission in Brain Circuits
by van den Pol, Anthony N
Neuron (Cambridge, Mass.), 2012-10-04, Vol.76 (1), p.98-115

9.
Cardiovascular response, feeding behavior and locomotor activity in mice lacking the NPY Y1 receptor
by Pedrazzini, Thierry
Nature medicine, 1998-06, Vol.4 (6), p.722-726

10.
A Role for Orexin in Central Vestibular Motor Control
by Zhang, Jun
Neuron (Cambridge, Mass.), 2011, Vol.69 (4), p.793-804

11.
Distinct Narcolepsy Syndromes in Orexin Receptor-2 and Orexin Null Mice: Molecular Genetic Dissection of Non-REM and REM Sleep Regulatory Processes
by Willie, Jon T
Neuron (Cambridge, Mass.), 2003-06-05, Vol.38 (5), p.715-730

12.
Single stimulation of Y2 receptors in BNSTav facilitates extinction and dampens reinstatement of fear
by Verma, Dilip
Psychopharmacology, 2018-11-15, Vol.236 (1), p.281-291

13.
RF-amide neuropeptides and their receptors in Mammals: Pharmacological properties, drug development and main physiological functions
by Quillet, Raphaelle
Alimentary Pharmacology & Therapeutics (Suppl), 2016-04, Vol.160, p.84-132

14.
Neuropeptide systems and new treatments for nicotine addiction
by Bruijnzeel, Adriaan W
Psychopharmacology, 2016-12-28, Vol.234 (9-10), p.1419-1437

15.
Orexins in the paraventricular nucleus of the thalamus mediate anxiety-like responses in rats
by Li, Yonghui
Psychopharmacologia, 2010-07-20, Vol.212 (2), p.251-265

16.
Identification, Expression, and Physiological Functions of Siberian Hamster Gonadotropin-Inhibitory Hormone
by Ubuka, Takayoshi
Endocrinology (Philadelphia), 2012-01, Vol.153 (1), p.373-385

17.
Gonadotropin-Inhibitory Hormone Is a Hypothalamic Peptide That Provides a Molecular Switch between Reproduction and Feeding
by Clarke, Iain J
Neuroendocrinology, 2012-06, Vol.95 (4), p.305-316

18.
Role of Neuropeptide Y in neural invasion in pancreatic cancer
by Ekizce, M
Pancreatology : official journal of the International Association of Pancreatology (IAP) ... [et al.], 2020-11, Vol.20, p.S141-S141

19.
No Evidence That RFamide-Related Peptide 3 Directly Modulates LH Secretion in the Ewe
by Decourt, C
Endocrinology (Philadelphia), 2016-04, Vol.157 (4), p.1566-1575

20.
Dendritic Peptide Release Mediates Interpopulation Crosstalk between Neurosecretory and Preautonomic Networks
by Son, Sook Jin
Neuron (Cambridge, Mass.), 2013-06-19, Vol.78 (6), p.1036-1049
