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Measuring human cerebral blood flow and brain function with fiber-based speckle contrast optical spectroscopy system

Byungchan Kim, Sharvari Zilpelwar, Edbert J. Sie, Francesco Marsili, Bernhard Zimmermann, David A. Boas, Xiaojun Cheng

2023Communications Biology62 citationsDOIOpen Access PDF

Abstract

Cerebral blood flow (CBF) is crucial for brain health. Speckle contrast optical spectroscopy (SCOS) is a technique that has been recently developed to measure CBF, but the use of SCOS to measure human brain function at large source-detector separations with comparable or greater sensitivity to cerebral rather than extracerebral blood flow has not been demonstrated. We describe a fiber-based SCOS system capable of measuring human brain activation induced CBF changes at 33 mm source detector separations using CMOS detectors. The system implements a pulsing strategy to improve the photon flux and uses a data processing pipeline to improve measurement accuracy. We show that SCOS outperforms the current leading optical modality for measuring CBF, i.e. diffuse correlation spectroscopy (DCS), achieving more than 10x SNR improvement at a similar financial cost. Fiber-based SCOS provides an alternative approach to functional neuroimaging for cognitive neuroscience and health science applications.

Topics & Concepts

Cerebral blood flowDetectorSpeckle patternNeuroimagingComputer scienceOptical fiberSensitivity (control systems)Biomedical engineeringHuman brainDiffuse optical imagingMeasure (data warehouse)OpticsArtificial intelligencePhysicsNeuroscienceMedicineElectronic engineeringIterative reconstructionAnesthesiaPsychologyEngineeringData miningOptical Imaging and Spectroscopy TechniquesThermoregulation and physiological responsesClimate Change and Health Impacts
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