Related Experiment Video
Updated: May 23, 2026

Optogenetic Manipulation of Neural Circuits During Monitoring Sleep/wakefulness States in Mice
Published on: June 19, 2019
Activation of inactivation process initiates rapid eye movement sleep
Birendra Nath Mallick1, Abhishek Singh, Mudasir Ahmad Khanday
1School of Life Sciences, Jawaharlal Nehru University, New Delhi 110067, India. remsbnm@yahoo.com
Abstract:
Interactions among REM-ON and REM-OFF neurons form the basic scaffold for rapid eye movement sleep (REMS) regulation; however, precise mechanism of their activation and cessation, respectively, was unclear. Locus coeruleus (LC) noradrenalin (NA)-ergic neurons are REM-OFF type and receive GABA-ergic inputs among others. GABA acts postsynaptically on the NA-ergic REM-OFF neurons in the LC and presynaptically on the latter's projection terminals and modulates NA-release on the REM-ON neurons. Normally during wakefulness and non-REMS continuous release of NA from the REM-OFF neurons, which however, is reduced during the latter phase, inhibits the REM-ON neurons and prevents REMS. At this stage GABA from substantia nigra pars reticulate acting presynaptically on NA-ergic terminals on REM-ON neurons withdraws NA-release causing the REM-ON neurons to escape inhibition and being active, may be even momentarily. A working-model showing neurochemical-map explaining activation of inactivation process, showing contribution of GABA-ergic presynaptic inhibition in withdrawing NA-release and dis-inhibition induced activation of REM-ON neurons, which in turn activates other GABA-ergic neurons and shutting-off REM-OFF neurons for the initiation of REMS-generation has been explained. Our model satisfactorily explains yet unexplained puzzles (i) why normally REMS does not appear during waking, rather, appears following non-REMS; (ii) why cessation of LC-NA-ergic-REM-OFF neurons is essential for REMS-generation; (iii) factor(s) which does not allow cessation of REM-OFF neurons causes REMS-loss; (iv) the association of changes in levels of GABA and NA in the brain during REMS and its deprivation and associated symptoms; v) why often dreams are associated with REMS.
Insights
This study presents a neurochemical model explaining how GABA and noradrenaline (NA) interactions regulate REM sleep (REMS). It clarifies how REM-OFF neuron cessation, mediated by GABA, is essential for REMS initiation and dreams.
Area of Science:
- Neuroscience
- Sleep Science
- Neurochemistry
Background:
- Rapid eye movement sleep (REMS) regulation involves complex interactions between REM-ON and REM-OFF neurons.
- The precise mechanisms governing the activation and cessation of these neuronal types, particularly the role of noradrenaline (NA) and GABA, remained unclear.
Purpose of the Study:
- To elucidate the neurochemical mechanisms underlying REMS regulation.
- To explain the activation and cessation processes of REM-ON and REM-OFF neurons.
- To address previously unexplained aspects of REMS generation and its associated phenomena.
Main Methods:
- Development of a working model illustrating the neurochemical interactions.
- Mapping the activation and inactivation processes involving GABA-ergic presynaptic inhibition.
- Explaining the dis-inhibition induced activation of REM-ON neurons.
Main Results:
- The model explains why REMS occurs after non-REMS and not during wakefulness.
- It highlights the necessity of Locus Coeruleus (LC) NA-ergic REM-OFF neuron cessation for REMS generation.
- It links GABA and NA level changes to REMS, REMS deprivation, and dreaming.
Conclusions:
- The proposed neurochemical model provides a framework for understanding REMS initiation.
- GABA-ergic presynaptic inhibition plays a crucial role in modulating NA release and REMS generation.
- The model helps explain REMS regulation, deprivation symptoms, and the association of dreams with REMS.
Related Concept Videos
Sleep-Wake Cycles
NREM Sleep
NREM sleep comprises four progressive stages that seamlessly merge:
Stages of Sleep
Before sleep begins, in wakefulness, the brain exhibits primarily beta waves, which are high in frequency and low in amplitude, indicating alertness...
REM Sleep Behavior Disorder
RBD is significantly associated with...
Understanding Sleep
The circadian rhythm, a nearly 24-hour cycle, is deeply influenced by environmental light cues. Light exposure directly affects the hypothalamus, which in turn regulates...
Functional Brain Systems: Reticular Formation
Within the reticular formation, there are several distinct nuclei that can be classified into three broad categories. The Raphe nuclei are located along the midline of the brainstem. They are primarily known for their role in synthesizing and releasing serotonin, a neurotransmitter involved in regulating mood, appetite, sleep, and circadian rhythms. The...

