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Debatisse, J.

Publications and source records attributed to Debatisse, J..

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Thalamic blood flow and EEG frequency band power during hyperventilation in idiopathic generalized epilepsy

Absence seizures in idiopathic generalised epilepsy (IGE) involve thalamo-cortical circuits. Hyperventilation (HV) is a standard technique to trigger epileptiform discharges and absence seizures in IGE. HV also increases electroencephalography (EEG) delta band power and decreases global cerebral blood flow (CBF). The relationships between HV, EEG band power, and regional CBF have not been investigated in the same patients at the same time. We compared the effects of hyperventilation between 13 individuals with IGE and 18 healthy controls on thalamic CBF assessed with pseudo-continuous Arterial Spin Labelling (pCASL) simultaneously to EEG frequency band power during three periods of hyperventilation interleaved with three periods of rest, normalised to each participants pre-HV values. Pre-HV, there were no differences between patients and controls. During the three rest periods combined, patients had higher normalised respiratory rates but no difference in CBF or EEG band power compared with controls. During HV, CBF decreases were similar in controls and IGE patients in cortical gray matter (37.1{+/-}1.3% in controls, 37.9{+/-}2.0% in patients) and basal ganglia (35.6{+/-}2.0% in controls, 33.3{+/-}2.3% in patients). In the thalamus, CBF decreased by 35.5{+/-}1.9% in controls, but only by 27.1{+/-}2.5% in patients (p=0.011). Delta band power increased by 42% in patients, but only by 27% in patients (p<0.045). Both controls and patients thalamic CBF significantly decreased as a function of respiratory rate, but the relationship was weaker in patients (rho -0.38 [0.95 confidence interval lower limit -0.629; upper limit -0.059] vs -0.51 [-0.698; -0.255] in controls). Delta power correlated with thalamic CBF only in controls (rho -0.21 [-0.388; -0.017]) but not in patients (rho -0.1 [-0.345; 0.157]). EEG power and respiratory rate were not significantly correlated in either group. This first study of the interrelationships between HV, blood flow, and EEG band power suggests that regional thalamic abnormalities of blood flow regulation, or a neurophysiological abnormality leading to smaller reactive blood flow changes, may underlie HV-associated EEG activation. Graphical abstract textIn this first investigation of combined hyperventilation, blood flow and EEG band power measurements in idiopathic generalised epileptic patients and healthy subjects, we revealed that localized thalamic blood flow regulatory problems or neurophysiological disorders caused minor reactive blood flow variations and may cause hyperventilation-associated EEG activation. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=182 SRC="FIGDIR/small/586742v1_ufig1.gif" ALT="Figure 1"> View larger version (58K): org.highwire.dtl.DTLVardef@12a5ebeorg.highwire.dtl.DTLVardef@b22944org.highwire.dtl.DTLVardef@b335dforg.highwire.dtl.DTLVardef@195c5e2_HPS_FORMAT_FIGEXP M_FIG C_FIG

neuroscience↗

PREMISE: A database of 20 Macaca Fascicularis PET/MRI brain imaging available for research

Non-human primate (NHP) studies are unique in translational research, especially in neurosciences and neuroimaging approaches are a preferred method for scaling cross-species comparative neurosciences. In this regard, neuroimaging database development and sharing are encouraged to increase the number of subjects available to the community while limiting the number of animals used in research. We present here a simultaneous PET/MR dataset of 20 Macaca Fascicularis structured according to the Brain Imaging Data Structure (BIDS) standards. This database contains multiple MRI sequences (anatomical, diffusion and perfusion imaging notably), as well as PET perfusion and inflammation using respectively [15O]H2O and [11C]PK11195 radiotracers. We describe the pipeline method to assemble baseline data from various cohorts and qualitatively assessed all the data using signal-to-noise and contrast-to-noise ratios as well as the median of intensity. The database is stored and available through the PRIME-DE consortium repository.

scientific communication and education↗