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1. Electrophysiological characterization of sleep/wake, activity and the response to caffeine in adult cynomolgus macaques

2. Validation of ‘Somnivore’, a Machine Learning Algorithm for Automated Scoring and Analysis of Polysomnography Data

3. Activation of the nociceptin/orphanin-FQ receptor promotes NREM sleep and EEG slow wave activity

4. Evaluation of the efficacy of the hypocretin/orexin receptor agonists <scp>TAK</scp> ‐925 and <scp>ARN</scp> ‐776 in narcoleptic <scp> orexin/tTA; TetO‐DTA </scp> mice

5. Evaluation of the Efficacy of the Hypocretin/orexin Receptor Agonists TAK-925 and ARN-776 in NarcolepticOrexin/tTA; TetO-DTAMice

6. From structure to clinic: design of a muscarinic M1 receptor agonist with the potential to treat Alzheimer’s disease

7. The development of sleep/wake disruption and cataplexy as hypocretin/orexin neurons degenerate in male vs. female Orexin/tTA; TetO-DTA Mice

8. Trace amine-associated receptor 1 agonism promotes wakefulness without impairment of cognition in Cynomolgus macaques

9. From structure to clinic: Design of a muscarinic M1 receptor agonist with potential to treatment of Alzheimer's disease

10. Electrophysiological characterization of sleep/wake, activity and the response to caffeine in adult cynomolgus macaques

11. Acute cognitive effects of the hypocretin receptor antagonist almorexant relative to zolpidem and placebo: a randomized clinical trial

12. From Structure to Clinic: Discovery of A M1 Muscarinic Acetylcholine Receptor Agonist for the Treatment of Memory Loss in Alzheimer's Disease

13. Trace Amine-Associated Receptor 1 Regulates Wakefulness and EEG Spectral Composition

14. Automated Sleep Stage Scoring Using k-Nearest Neighbors Classifier

15. Homeostatic Sleep Pressure is the Primary Factor for Activation of Cortical nNOS/NK1 Neurons

16. A role for cortical nNOS/NK1 neurons in coupling homeostatic sleep drive to EEG slow wave activity

17. Longitudinal analysis of the electroencephalogram and sleep phenotype in the R6/2 mouse model of Huntington’s disease

18. Almorexant Promotes Sleep and Exacerbates Cataplexy in a Murine Model of Narcolepsy

19. The wake-promoting effects of hypocretin-1 are attenuated in old rats

20. The Dual Hypocretin Receptor Antagonist Almorexant is Permissive for Activation of Wake-Promoting Systems

21. GABABreceptor-mediated modulation of hypocretin/orexin neurones in mouse hypothalamus

22. Pharmacology of basimglurant (RO4917523, RG7090), a unique metabotropic glutamate receptor 5 negative allosteric modulator in clinical development for depression

23. Immune response gene expression increases in the aging murine hippocampus

25. GABAB agonism promotes sleep and reduces cataplexy in murine narcolepsy

26. The effects of temperature and synaptic blockade in vitro on neurons of the horizontal limb of the diagonal band of Broca in the rat basal forebrain

27. The hypocretin/orexin antagonist almorexant promotes sleep without impairment of performance in rats

28. Dual Hypocretin Receptor Antagonism Is More Effective for Sleep Promotion than Antagonism of Either Receptor Alone

29. A new perspective for schizophrenia: TAAR1 agonists reveal antipsychotic- and antidepressant-like activity, improve cognition and control body weight

30. Selective increases in non-rapid eye movement sleep following whole body heating in rats

31. Discovery of 1-[3-(4-bromo-2-methyl-2h-pyrazol-3-yl)-4-methoxyphenyl]-3-(2,4-difluorophenyl)urea (nelotanserin) and related 5-hydroxytryptamine2A inverse agonists for the treatment of insomnia

32. Locus Coeruleus and Tuberomammillary Nuclei Ablations Attenuate Hypocretin/Orexin Antagonist-Mediated REM Sleep

33. Disinhibition of ventrolateral preoptic area sleep-active neurons by adenosine: a new mechanism for sleep promotion

34. Age-related decline in hypocretin (orexin) receptor 2 messenger RNA levels in the mouse brain

35. Selective 5HT(2A) and 5HT(6) receptor antagonists promote sleep in rats

36. The Hypocretin/Orexin Antagonist Almorexant Promotes Sleep Without Impairment of Performance in Rats

37. Dual hypocretin receptor antagonism is more effective for sleep promotion than antagonism of either receptor alone.

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