Disarming emotional memories using Targeted Memory Reactivation during Rapid Eye Movement sleep
Greco, V.; Foldes, T.; Harrison, N. A.; Murphey, K.; Wawrzuta, M.; Abdellahi, M. E. A.; Lewis, P. A.
Show abstract
Emotional responses are dampened across sleep, and this is thought to be mediated by neural reactivation during Rapid Eye Movement (REM) Sleep. Such reactivation can be triggered by targeted memory reactivation (TMR), a technique in which a tone previously associated with a memory during wake is re-presented during subsequent sleep. Prior work has shown that TMR in REM reduces arousal responses to negative stimuli. The present study builds on this by measuring autonomic responses and brain activity as well as behaviour. Participants rated the arousal of 48 affective images, paired with semantically matching sounds. Half of these sounds were cued during REM in the subsequent overnight sleep cycle. Participants rated the images in a Magnetic Resonance Imaging (MRI) scanner with pulse oximetry 48 hours after encoding, and again after two weeks. Results showed that TMR during REM was also associated with reduced brain activity in the two primary nodes of the Salience Network (SN): the Anterior Insula and dorsal Anterior Cingulate Cortex (dACC), as well as the orbitofrontal cortex, subgenual cingulate, and left amygdala, all of which are known to be important for emotional processing. TMR markedly reduced the emotional heart rate deceleration (HRD) response, and also reduced subjective arousal ratings for highly arousing images, while increasing ratings for less arousing images. We conclude that REM TMR can facilitate a decrease in physiological and neurological responses to arousal. These findings have potential implications for the use of TMR in treatment of depression and anxiety disorders. HighlightsO_LITMR in REM sleep reduces Salience Network responses to emotional pictures. C_LIO_LITMR in REM sleep reduces heart rate deceleration to emotional pictures. C_LIO_LITMR in REM sleep reduces subjective arousal ratings of highly arousing images. C_LIO_LITMR in REM sleep provides a promising potential avenue for treatment of PTSD. C_LI
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Magnetic seizure therapy and electroconvulsive therapy increase frontal aperiodic activity 93%
- A Brain Model of Altered Self-Appraisal in Social Anxiety Disorder 93%
- Sleep to remember, sleep to protect: increased sleep spindle and theta activity predict fewer intrusive memories after analogue trauma 93%
Similar papers in this journal
- Effects of Diazepam on Hippocampal Blood Flow in People at Clinical High Risk for Psychosis 91%
- Nicotine dependence (trait) and acute nicotinic stimulation (state) modulate attention but not cognitive control: converging fMRI evidence from Go-Nogo and Flanker tasks 91%
- Perinatal exposure to fluoxetine and maternal adversity affect myelin-related gene expression and epigenetic regulation in the corticolimbic circuit of juvenile rats 91%
Similar papers in this journal
- Associating EEG Functional Networks and the Effect of Sleep Deprivation as Measured Using Psychomotor Vigilance Tests 93%
- Delta-range coupling between prefrontal cortex and hippocampus supported by respiratory rhythmic input from the olfactory bulb in freely behaving rats 93%
- First-night effect reduces the beneficial effects of sleep on visual plasticity and modifies the underlying neurochemical processes 93%
Similar papers in this journal
- Clinical Response to Neurofeedback in Major Depression Relates to Subtypes of Whole-Brain Activation Patterns During Training 92%
- Dysfunction of ventral tegmental area GABA neurons causes mania-like behavior 92%
- The mPFC molecular clock mediates the effects of sleep deprivation on depression-like behavior and regulates sleep consolidation and homeostasis 92%
Similar papers in this journal
- Evidence for domain-general arousal from semantic and neuroimaging meta-analyses reconciles opposing views on arousal 94%
- CB-1 receptor agonist drastically changes oscillatory activity, defining active sleep 94%
- Aversive memories can be weakened during human sleepvia the reactivation of positive interfering memories 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.