Publication | Closed Access
Brain perfusion monitoring with frequency-domain and continuous-wave near-infrared spectroscopy: a cross-correlation study in newborn piglets
25
Citations
35
References
2000
Year
Blood OxygenationContinuous-wave Near-infrared SpectroscopySocial SciencesBiosignal ProcessingNewborn PigletsBlood Flow MeasurementRadiologyInfrared SpectroscopyBrain Hypoxia-ischaemiaPerioperative MonitoringNeuroimagingNear-infrared SpectroscopyCerebral Blood FlowNeurophysiologyBrain Perfusion MonitoringSpectroscopyPhysiologyBiomedical ImagingTissue OxygenationElectrophysiologyNeuroscienceMedicine
The newborn piglet brain model was used to correlate continuous-wave (CW) and frequency-domain (FD) near-infrared spectroscopy. Six ventilated and instrumented newborn piglets were subjected to a series of manipulations in blood oxygenation with the effects on brain perfusion known to be associated with brain hypoxia-ischaemia. An excellent agreement between the CW and FD was demonstrated. This agreement improved when the scattering properties (determined by the FD device) were employed to calculate the differential pathlength factor, an important step in CW data processing.
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