Neonatal EEG

Neonates’ delicate skin can be damaged by standard electrode technology. Working with Children’s National Medical Center under NIH funding, QUASAR is developing a gentle, dry electrode EEG system designed specifically to meet the needs of neonates and the medical professionals caring for them. The miniaturized dry electrodes developed under this effort have broad utility for pediatric applications. QUASAR is currently pursuing validation of the technology in a NICU environment and FDA 510(k) clearance.

fNIR

QUASAR is excited about the potential of functional near-infrared spectroscopy (fNIR), a non-invasive, light-based neuroimaging technique that measures brain activity by detecting changes in blood oxygenation levels. fNIR is attractive to medical and research professionals due to its non-invasive nature, portability, and accessibility. QUASAR is currently pursuing the incorporation of fNIR into a flight helmet for monitoring military aviators and pursuing the development of an integrated EEG/fNIR device as the two modalities complement each other to give a fuller picture of the brain’s activity than either one alone.

Inclusive EEG

EEG research has long suffered from barriers to full inclusivity. Type 4 hair and the hairstyles people who have it often select, such as braids or twists, are common exclusion criteria for study participation. As people of African origin are more likely to have this type of hair, this can result in lower participation rates in research for these people.
Under NIH funding, QUASAR is developing electrodes designed to function well with this type of hair and the hairstyles commonly associated with it. The resulting kit will be designed to support inclusion in EEG research and thus more comprehensive data feeding into related medicine.