Ultrafast fMRI detects age-related changes in harmonics of cardiac pulsations in the brain at 7 T
Marchini, C.; Abdelkarim, D.; Chai, Y.; Fabiani, M.; Gratton, G.; Sutton, B. P.
Show abstract
PurposeTo develop and apply an ultra-fast fMRI acquisition at 7 T to measure the pulsatile signals in the brain with full brain coverage and detect age-related differences. Pulsatile signals parameters provide information about the health status of the cerebrovascular system. This new acquisition provides a good mix of spatial coverage, image resolution, and temporal resolution for observing physiological signals. MethodsA partial separability MRI acquisition and reconstruction approach was used to collect 3D data acquired at 7 T with TR = 65 ms in 28 healthy adults. 8 young subjects and 14 older subjects (10 male and 12 female) had acceptable pulse plethysmography and MRI data. With full-brain coverage and 2 mm isotropic resolution, the reliability of the pulse signal (even/odd heartbeat as test/retest) within each brain voxel was computed across subjects. Within voxels of high pulse reliability, the average magnitude within 0.15 Hz of the 4 heartbeat harmonic frequencies were compared within CSF, GM, and WM between young/old and between male/female participants. ResultsIncreased first harmonic magnitude in older adults compared to young adults was detected in regions with reliable cardiac pulsations, which overlap major arteries and CSF pools. There was also a greater magnitude of the third harmonic normalized to the first in males. Brain maps of the pulse frequency and the harmonics were formed for visualization of regions of high pulsatility. ConclusionThis new approach captures the pulsatile signal with BOLD fMRI with high spatiotemporal resolution and can be sensitive to age- and sex-related differences.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Medullary vein architecture modulates the white matter BOLD cerebrovascular reactivity signal response to CO2: observations from high-resolution T2* weighted imaging at 7T 96%
- Dynamic variations of resting-state BOLD signal spectra in white matter 95%
- Detection of functional activity in brain white matter using fiber architecture informed synchrony mapping 95%
Similar papers in this journal
- Somatosensory-evoked response induces extensive diffusivity and kurtosis changes associated with neural activity in rodents 94%
- The developing Human Connectome Project fetal functional MRI release: Methods and data structures 94%
- Evaluating the dependence of ADC-fMRI on haemodynamics inbreath-hold and resting-state conditions 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.