Fnirs Mapping

Functional near-infrared spectroscopy mapping is a noninvasive method for visualizing changes in cerebral hemodynamics by measuring how near-infrared light travels through the scalp and cortex. It uses wavelength-dependent absorption by oxygenated and deoxygenated hemoglobin to estimate local changes in blood oxygenation associated with neural activity. In neuroscience, fNIRS mapping supports studies of cortical function during movement, speech, learning, and social interaction, including research with infants and participants who cannot undergo MRI. Because sensors can be portable and relatively tolerant of motion, the technique enables measurements in more natural settings, although signals primarily reflect the superficial cortex and require careful preprocessing and interpretation.

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Education

JoVE Science Education - Advanced Biology

Fate Mapping

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2023

Fate mapping is a technique used to understand how embryonic cells divide, differentiate, and migrate during development. In classic fate mapping experiments, cells in different areas of an embryo are labeled with a chemical dye and then tracked to determine which tissues or structures they form. Technological improvements now allow for individual cells to be marked and traced throughout embryonic development and adulthood. This video reviews the concepts behind fate mapping, and then details a...

Motor Maps

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California One principle of brain organization is the topographic mapping of information. Especially in sensory and motor cortices, adjacent regions of the brain tend to represent information from adjacent parts of the body, resulting in maps of the body expressed on the surface of the brain. The primary sensory and motor maps in the brain surround a prominent sulcus known as the central sulcus. The cortex...

Research

JoVE Journal - Behavior
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fMRI Validation of fNIRS Measurements During a Naturalistic Task

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Cited by 107 •

2015

We present a method to compare functional brain activity recorded during a naturalistic task using fNIRS with activity recorded during fMRI.

Research

JoVE Journal - Behavior
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Using Fiberless, Wearable fNIRS to Monitor Brain Activity in Real-world Cognitive Tasks

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Cited by 162 •

2015

Monitoring brain activity outside the lab without physical constraints presents methodological challenges. A fiberless, wearable functional Near Infrared Spectroscopy (fNIRS) system was used to measure brain activity during an ecological prospective memory task. It was demonstrated that this system could be used to monitor brain activity during non-lab based experiments.

How to Calculate and Validate Inter-brain Synchronization in a fNIRS Hyperscanning Study

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Cited by 20 •

2021

The dynamics between coupled brains of individuals have been increasingly represented by inter-brain synchronization (IBS) when they coordinate with each other, mostly using simultaneous-recording signals of brains (namely hyperscanning) with fNIRS. In fNIRS hyperscanning studies, IBS has been commonly assessed through the wavelet transform coherence (WTC) method because of its advantage on expanding time series into time-frequency space where oscillations can be seen in a highly intuitive way.

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