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Updated: Jul 16, 2026

Whole-Brain 3D Activation and Functional Connectivity Mapping in Mice using Transcranial Functional Ultrasound Imaging
Published on: February 24, 2021
Current status of functional MRI on small animals: application to physiology, pathophysiology, and cognition
Annemie Van der Linden1, Nadja Van Camp, Pedro Ramos-Cabrer
1Bio-Imaging Laboratory, Department of Biomedical Sciences, University of Antwerp, Antwerp, Belgium. Annemie.vanderlinden@ua.ac.be
Abstract:
This review aims to make the reader aware of the potential of functional MRI (fMRI) in brain activation studies in small animal models. As small animals generally require anaesthesia for immobilization during MRI protocols, this is believed to be a serious limitation to the type of question that can be addressed with fMRI. We intend to introduce a fresh view with an in-depth overview of the surprising number of fMRI applications in a wide range of important research domains in neuroscience. These include the pathophysiology of brain functioning, the basic science of activity, and functional connectivity of different sensory circuits, including sensory brain mapping, the challenges when studying the hypothalamus as the major control centre in the central nervous system, and the limbic system as neural substrate for emotions and reward. Finally the contribution of small animal fMRI research to cognitive neuroscience is outlined. This review avoids focusing exclusively on traditional small laboratory animals such as rodents, but rather aims to broaden the scope by introducing alternative lissencephalic animal models such as songbirds and fish, as these are not yet well recognized as neuroimaging study subjects. These models are well established in many other neuroscience disciplines, and this review will show that their investigation with in vivo imaging tools will open new doors to cognitive neuroscience and the study of the autonomous nervous system in experimental animals.
Insights
Functional MRI (fMRI) reveals surprising neuroscience insights in small animal models, even with anesthesia. This review highlights diverse applications and novel animal models for brain research.
Area of Science:
- Neuroscience
- Neuroimaging
- Animal Models
Background:
- Functional MRI (fMRI) is crucial for brain activation studies.
- Anesthesia in small animals is a perceived limitation for fMRI research.
- Diverse neuroscience research domains can benefit from small animal fMRI.
Purpose of the Study:
- To highlight the potential of fMRI in small animal models.
- To provide an overview of fMRI applications in neuroscience research.
- To introduce alternative animal models for neuroimaging.
Main Methods:
- Review of existing literature on small animal fMRI studies.
- Exploration of fMRI applications across various neuroscience fields.
- Inclusion of non-traditional animal models like songbirds and fish.
Main Results:
- fMRI is applicable to a wide range of neuroscience topics, including sensory circuits, hypothalamus, and limbic system.
- Anesthesia does not preclude valuable fMRI research in small animals.
- Alternative animal models offer new avenues for cognitive neuroscience and autonomic nervous system studies.
Conclusions:
- Small animal fMRI holds significant potential for advancing neuroscience.
- Expanding the scope to include diverse animal models enhances research possibilities.
- fMRI in small animals, including non-rodents, opens new frontiers in brain research.
Related Concept Videos
Magnetic Resonance Imaging
Brain Imaging
These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans), magnetic resonance imaging (MRI), functional magnetic resonance imaging (fMRI), and Transcranial Magnetic Stimulation (TMS).

