none5noThe central neural mechanisms underlying differences in cardiovascular variability between wakefulness, non-rapid-eye-movement sleep (NREMS), and rapid-eye-movement sleep (REMS) remain poorly understood. These mechanisms may involve hypocretin (HCRT)/orexin signaling. HCRT signaling is linked to wake-sleep states, involved in central autonomic control, and impaired in narcoleptic patients. Thus, we investigated whether HCRT signaling plays a role in controlling cardiovascular variability during spontaneous behavior in HCRT-deficient mice. HCRT-ataxin3 transgenic mice lacking HCRT neurons (TG), knockout mice lacking HCRT peptides (KO), and wild-type controls (WT) were instrumented with electrodes for sleep recordings and a telemetric ...
Neurons that release hypocretin (HCRT; orexin) peptides control wake–sleep states and autonomic func...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...
The central neural mechanisms underlying differences in cardiovascular variability between wakefulne...
Hypothalamic hypocretin (HCRT) neurons control wake-sleep behavior, cardiovascular system and body t...
The central neural mechanisms underlying differences in cardiovascular variability between wakefulne...
Study Objectives: although blood pressure during sleep and the difference in blood pressure between ...
<div><p>The central neural pathways underlying the physiological coordination between thermoregulati...
Hypothalamic neurons releasing hypocretin (HCRT) control wake-sleep behavior, cardiovascular system ...
The central neural pathways underlying the physiological coordination between thermoregulation and t...
Narcolepsy with cataplexy (NC) is a lifelong disorder caused by loss of hypothalamic hypocretin/orex...
none7noSTUDY OBJECTIVES: increases in arterial pressure (AP) during sleep and smaller differences in...
<i>Hcrt</i> gene inactivation in mice leads to behavioral state instability, abnormal t...
Neurons that release hypocretin (HCRT; orexin) peptides control wake–sleep states and autonomic func...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...
The central neural mechanisms underlying differences in cardiovascular variability between wakefulne...
Hypothalamic hypocretin (HCRT) neurons control wake-sleep behavior, cardiovascular system and body t...
The central neural mechanisms underlying differences in cardiovascular variability between wakefulne...
Study Objectives: although blood pressure during sleep and the difference in blood pressure between ...
<div><p>The central neural pathways underlying the physiological coordination between thermoregulati...
Hypothalamic neurons releasing hypocretin (HCRT) control wake-sleep behavior, cardiovascular system ...
The central neural pathways underlying the physiological coordination between thermoregulation and t...
Narcolepsy with cataplexy (NC) is a lifelong disorder caused by loss of hypothalamic hypocretin/orex...
none7noSTUDY OBJECTIVES: increases in arterial pressure (AP) during sleep and smaller differences in...
<i>Hcrt</i> gene inactivation in mice leads to behavioral state instability, abnormal t...
Neurons that release hypocretin (HCRT; orexin) peptides control wake–sleep states and autonomic func...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...
Hypocretin/orexin signalling varies among sleep-wake behaviours, impacts upon cardiovascular autonom...