Effects of different slow paced breathing regimes on cerebrospinal fluid (CSF) oscillations
Nasseri, P.; Banks, M.; Li, A. Y.; Lewis, L. D.; Yoo, H. J.; Mather, M.
Show abstract
Cerebrospinal fluid (CSF) transport is crucial for waste clearance and the maintenance of healthy brain function. Various factors, including respiration, have been proposed to drive CSF pulsation. Despite the close relationship between CSF movement and respiration, the impact of different slow respiratory frequencies on CSF oscillations remains unclear. Utilizing a fast neuroimaging technique, we investigated the effects of four different paced respiratory conditions on CSF oscillations. Our findings indicate that all paced respiratory conditions resulted in increased CSF oscillatory power and BOLD global signal amplitude, factors previously associated with increased CSF pulsations. Additionally, we observed that, compared to rest, paced sighing at the 0.02-0.03 Hz frequency range significantly increased the coupling between CSF oscillations and the negative derivative of the BOLD signal. Our study provides a novel perspective on how the frequency of breathing can influence CSF oscillations during wakefulness. HighlightsBreathing manipulations affect CSF oscillatory power during wakefulness Paced sighing at frequency lower than breathing led to stronger dynamic between CSF and BOLD Breathing and sighing manipulations lower the BOLD signal proxy of arousal
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Lag-optimized BOLD cerebrovascular reactivity derived from breathing task data has a stronger relationship with baseline cerebral blood flow 94%
- Cardiovascular and vasomotor pulsations in the brain and periphery during awake and NREM sleep in a multimodal fMRI study 94%
- Demonstrating the need for long inter-stimulus intervals when studying the post-movement beta rebound following a simple button press 94%
Similar papers in this journal
- Recovery of Consciousness and Cognition after General Anesthesia in Humans 94%
- Reproducible, data-driven characterization of sleep based on brain dynamics and transitions from whole-night fMRI 93%
- Modulation of aperiodic EEG activity provides sensitive index of cognitive state changes during working memory task 93%
Similar papers in this journal
"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.