Multimodal Signals

Multimodal signals are information cues that combine two or more sensory channels, such as visual, auditory, olfactory, or tactile inputs, to shape perception and behavior. The nervous system integrates these signals by comparing their timing, intensity, and reliability, allowing organisms to respond more effectively when cues agree or to resolve conflicts when they differ. In behavioral research, multimodal signals help explain communication, social interaction, attention, decision-making, and responses to environmental change. Studying how animals and humans combine sensory information can clarify the neural basis of behavior and improve models of perception, communication, and adaptive action.

Multimodal Signals - Related Videos

Research

JoVE Journal - Neuroscience
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Preterm EEG: A Multimodal Neurophysiological Protocol

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Cited by 39 •

2012

This video explains the background theory of the neonatal EEG activity and the sensory responses, followed by a live demonstration of their recording in neonatal intensive care unit.

Research

JoVE Journal - Engineering

A Multimodal Wide-Field Fourier-Transform Raman Microscope

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2025

A wide-field Fourier-transform microscope, based on a compact and ultra-stable birefringent interferometer, allows the parallel acquisition of spectra for all pixels of a 2D detector. The time-domain approach enables the disentanglement of photoluminescence and Raman signals, and allows rapid Raman mapping (~5 ms/pixel) with ~1-µm spatial and 23-cm-1 spectral resolution.

4D Multimodality Imaging of Citrobacter rodentium Infections in Mice

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Cited by 19 •

2013

Multi-modality imaging is a valuable approach for studying bacterial colonization in small animal models. This protocol outlines infection of mice with bioluminescent Citrobacter rodentium and the longitudinal monitoring of bacterial colonization using composite 3D diffuse light imaging tomography with μCT imaging to create a 4D movie of C. rodentium infection.

Biofunctionalized Prussian Blue Nanoparticles for Multimodal Molecular Imaging Applications

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Cited by 17 •

2015

This protocol describes the synthesis of biofunctionalized Prussian blue nanoparticles and their use as multimodal, molecular imaging agents. The nanoparticles have a core-shell design where gadolinium or manganese ions within the nanoparticle core generate MRI contrast. The biofunctional shell contains fluorophores for fluorescence imaging and targeting ligands for molecular targeting.

Education

JoVE Science Education - Engineering
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Acquisition and Analysis of an ECG (electrocardiography) Signal

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2023

Source: Peiman Shahbeigi-Roodposhti and Sina Shahbazmohamadi, Biomedical Engineering Department, University of Connecticut, Storrs, Connecticut An electrocardiograph is a graph recorded by electric potential changes occurring between electrodes placed on a patient's torso to demonstrate cardiac activity. An ECG signal tracks heart rhythm and many cardiac diseases, such as poor blood flow to the heart and structural abnormalities. The action potential created by contractions of the heart wall...

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