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Is it possible to measure hemodynamic changes in the prefrontal cortex through the frontal sinus using continuous
E Hernandez-Martin1, F Marcano1, C Modroño-Pascual1
1Department of Basic Medical Science (Physiology), Faculty of Health Sciences, Medicine Section, Universidad de La Laguna 38071, Spain.
Near-infrared (NIR) light can reach the cerebral cortex via the frontal sinus. Continuous-wave diffuse optical tomography (CW-DOT) reliably measured cortical hemodynamic changes in two studies.
Area of Science:
- Neuroscience
- Biomedical Optics
- Medical Imaging
Background:
- The frontal sinus presents a potential pathway for light delivery to the prefrontal cortex.
- Non-invasive monitoring of cortical hemodynamics is crucial for understanding brain function.
Purpose of the Study:
- To demonstrate the feasibility of using near-infrared (NIR) light through the frontal sinus for cortical monitoring.
- To validate continuous-wave diffuse optical tomography (CW-DOT) for measuring hemodynamic changes in the prefrontal cortex.
Main Methods:
- Utilized continuous-wave diffuse optical tomography (CW-DOT) with NIR light projected through the frontal sinus.
- Monitored temporal changes of a blood dye in the prefrontal cortex.
- Recorded hemodynamic changes induced by low-frequency transcranial magnetic stimulation (TMS) on the prefrontal cortex.
Main Results:
- NIR light successfully penetrated the frontal sinus to reach the cerebral cortex.
- CW-DOT provided sufficient information for reliable measurement of cortical hemodynamic changes.
- Demonstrated the capability to track blood dye dynamics and TMS-induced hemodynamic responses.
Conclusions:
- The frontal sinus is a viable route for NIR light penetration to the cerebral cortex.
- CW-DOT is an effective technique for non-invasively assessing cortical hemodynamics through the frontal sinus.
- This approach offers a promising method for brain function monitoring.
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