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The <t>fNIRS</t> montage used in the experiment. ( A ) fNIRS channels (yellow label), LEDs (red), and detectors (magenta) onto a head model showing the coverage on the prefrontal areas. ( B ) LEDs (red), detectors (blue), and the fNIRS channels (green line) location on a standard 10–20 EEG system. Optode maps and figures were generated using <t>nirsLAB</t> <t>software.</t>
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The fNIRS montage used in the experiment. ( A ) fNIRS channels (yellow label), LEDs (red), and detectors (magenta) onto a head model showing the coverage on the prefrontal areas. ( B ) LEDs (red), detectors (blue), and the fNIRS channels (green line) location on a standard 10–20 EEG system. Optode maps and figures were generated using nirsLAB software.

Journal: Sensors (Basel, Switzerland)

Article Title: The Validation of a Portable Functional NIRS System for Assessing Mental Workload

doi: 10.3390/s21113810

Figure Lengend Snippet: The fNIRS montage used in the experiment. ( A ) fNIRS channels (yellow label), LEDs (red), and detectors (magenta) onto a head model showing the coverage on the prefrontal areas. ( B ) LEDs (red), detectors (blue), and the fNIRS channels (green line) location on a standard 10–20 EEG system. Optode maps and figures were generated using nirsLAB software.

Article Snippet: We processed the raw fNIRS data using a traditional fNIRS signal processing pipeline on our MATLAB-based fNIRS data processing software to retain the noise-free low-frequency fNIRS signal (0.01 and 0.2 Hz).

Techniques: Generated, Software