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Nadia S. Hejazi

7 papers in the library · 306 citations · publishing 2012-2026

Papers

Concomitant BDNF and sleep slow wave changes indicate ketamine-induced plasticity in major depressive disorder

The International Journal of Neuropsychopharmacology June 7, 2012 Wallace C. Duncan, Simone Sarasso, Fabio Ferrarelli et al. 253 citations

A single infusion of the NMDA receptor antagonist ketamine rapidly reduces depressive symptoms in patients with treatment-resistant major depressive disorder. In 30 patients, ketamine increased electroencephalogram slow wave activity during early non-REM sleep and raised plasma levels of brain-derived neurotrophic factor. The occurrence of high amplitude slow waves and their slope also increased, indicating enhanced synaptic strength. Changes in BDNF levels correlated with changes in EEG parameters, but only in patients who responded to ketamine. This suggests that enhanced synaptic plasticity, reflected by increased slow wave activity and BDNF, is part of the mechanism behind ketamine's rapid antidepressant effects.

Are 24-hour motor activity patterns associated with continued rapid response to ketamine?

Neuropsychiatric Disease and Treatment October 1, 2018 Wallace C. Duncan, Elizabeth E. Slonena, Nadia S. Hejazi et al. 17 citations

Patients with major depressive disorder who had a brief antidepressant response to ketamine (lasting 24-48 hours) showed blunted 24-hour wrist activity amplitude from baseline through three days post-infusion and a phase advance of activity on day one that returned to baseline by day three. Those with a continued response (over 72 hours) had phase-advanced activity at baseline and day one, plus increased amplitude on days one and three. Nonresponders did not show these patterns. The time course of antidepressant response to ketamine appears linked to underlying biological differences in motor activity timekeeping, which may involve circadian system mechanisms.

Functional changes in sleep-related arousal after ketamine administration in individuals with treatment-resistant depression.

Translational Psychiatry June 4, 2024 Elizabeth D. Ballard, Deanna K Greenstein, Philip T Reiss et al. 16 citations

Ketamine, a drug that modulates the glutamate system, is linked to changes in sleep, depression, and suicidal thoughts. In a randomized, double-blind, crossover trial, 36 people with treatment-resistant major depression and 25 healthy volunteers underwent polysomnography before and after receiving ketamine or placebo. At baseline, those with depression had less total sleep time and shorter REM latency. Ketamine increased slow-wave (delta) brain activity early in the night and both alpha and delta activity later, compared to placebo. However, ketamine did not significantly alter sleep arousal metrics or mediate its antidepressant or anti-suicidal effects through sleep changes. The findings suggest sleep-related variables are part of broader neurobiological shifts after ketamine.

Exploring the impact of music on response to ketamine/esketamine: A scoping review.

Neuroscience and Biobehavioral Reviews July 1, 2024 Mina Kheirkhah, Allison C. Nugent, Alicia A Livinski et al. 13 citations

Music and ketamine each influence therapeutic outcomes, yet their combined use is rarely studied. This scoping review maps existing research on administering music alongside ketamine or esketamine in humans. Studies include healthy volunteers and patients of various ages, using different doses and treatment processes, with music played at varying times relative to drug administration. Research on music during ketamine anesthesia is included, as anesthesia drove early ketamine use. Recreational ketamine studies are excluded. The review is limited to English-language articles with no year restriction. It is the first comprehensive overview of music and ketamine/esketamine interplay, offering guidance for future study design.

REM density predicts rapid antidepressant response to ketamine in individuals with treatment-resistant depression.

Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology May 1, 2025 Mina Kheirkhah, Wallace C. Duncan, Qiaoping Yuan et al. 6 citations

People with treatment-resistant depression show higher REM density in the first REM period and shorter REM latency than healthy volunteers, while total night REM density does not differ. Ketamine treatment reduces REM density in the first REM period but does not change total night REM density or REM latency. Baseline REM density in the first REM period moderately predicts whether a person will respond to ketamine, with higher levels indicating greater likelihood of response. This marker could help identify individuals most likely to benefit from ketamine therapy.

Mindfulness, music, visual occlusion in ketamine therapy for depression: do they change outcomes? A qualitative and quantitative analysis of a randomized controlled trial

Frontiers in Psychiatry September 2, 2025 Mina Kheirkhah, Nastasia McDonald, Julia Aepfelbacher et al. 1 citation

Adding mindfulness, music, and a light-occluding eye mask during ketamine infusion for depression did not improve antidepressant effects compared to ketamine alone, but it enriched the subjective experience. Participants in the combined sensory intervention group reported deeper engagement, a stronger sense of connection to reality, increased focus, moments of relief from sadness, and feelings of awe and spiritual insight. However, four individuals in that group reported discomfort. The findings suggest that while the sensory interventions make the experience more meaningful for many, they may cause discomfort for a few, and making them optional could avoid this.

Modulation of early non-rapid eye movement slow wave activity by ketamine in treatment-resistant depression.

Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology June 16, 2026 Nadia S. Hejazi, Mina Kheirkhah, Brady A. Riedner et al.

Slow-wave activity (SWA) during early non-rapid eye movement sleep is lower in people with treatment-resistant depression (TRD) than in healthy volunteers. Ketamine, but not placebo, increases SWA in TRD patients, especially those who respond to treatment, while having no effect on SWA in healthy volunteers. Ketamine also improves overall sleep in TRD patients by increasing total sleep time and sleep efficiency and reducing sleep latency. The increase in SWA after ketamine lessens with age. The findings suggest that ketamine's antidepressant effects are closely tied to its modulation of early sleep SWA and its ability to improve sleep architecture in TRD.