Optical Signal Processor - meaning and definition. What is Optical Signal Processor
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What (who) is Optical Signal Processor - definition

BRAIN-SCANNING SIGNAL
Event Related Optical Signal

Analog signal processing         
TYPE OF SIGNAL PROCESSING
Analog signal processor; Analogue signal processing; Analog Signal Processing
Analog signal processing is a type of signal processing conducted on continuous analog signals by some analog means (as opposed to the discrete digital signal processing where the signal processing is carried out by a digital process). "Analog" indicates something that is mathematically represented as a set of continuous values.
Image processor         
  • video processor]], [[digital signal processor]] (DSP) and a [[32-bit]] [[microcontroller]] controlling the chip
SPECIALIZED DIGITAL SIGNAL PROCESSOR USED FOR IMAGE PROCESSING
Image processing engine; Image-processing engine; Image signal processor; Image processing unit
An image processor, also known as an image processing engine, image processing unit (IPU), or image signal processor (ISP), is a type of media processor or specialized digital signal processor (DSP) used for image processing, in digital cameras or other devices.DIGITAL SIGNAL & IMAGE PROCESSINGFundamentals of digital image processing
Event-related optical signal         
Event-related optical signal (EROS) is a neuroimaging technique that uses infrared light through optical fibers to measure changes in optical properties of active areas of the cerebral cortex. The fast optical signal (EROS) measures changes in infrared light scattering that occur with neural activity.

Wikipedia

Event-related optical signal

Event-related optical signal (EROS) is a neuroimaging technique that uses infrared light through optical fibers to measure changes in optical properties of active areas of the cerebral cortex. The fast optical signal (EROS) measures changes in infrared light scattering that occur with neural activity. Whereas techniques such as diffuse optical imaging (DOI) and near-infrared spectroscopy (NIRS) measure optical absorption of hemoglobin, and thus are based on cerebral blood flow, EROS takes advantage of the scattering properties of the neurons themselves, and thus provide a much more direct measure of cellular activity.