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The functional characterization of callosal connections.
Giorgio M Innocenti1, Kerstin Schmidt2, Chantal Milleret3
1Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden; Signal Processing Laboratory (LTS5), École Polytechnique Fédérale (EPFL), Lausanne, Switzerland.
Progress in Neurobiology
|November 15, 2021
Summary
Callosal axons in the brain
Area of Science:
- Neuroscience
- Neurobiology
- Cortical Connectivity
Background:
- The brain's distributed systems rely on synaptic interactions between distant neurons.
- While connections are known, their functional roles require further investigation.
- Studies on the corpus callosum offer unique insights into neuronal communication.
Purpose of the Study:
- To explore the functional characterization of connections between distant neurons.
- To propose a new interpretation of corpus callosum connections.
- To develop a general theory of cortico-cortical connectivity.
Main Methods:
- Synthesizing findings from multiple neuroscience disciplines.
- Analyzing studies on the corpus callosum in humans and animals.
- Examining factors like convergence-divergence patterns and conduction velocities.
Main Results:
- Callosal axons may preferentially drive targets when coupled with other inputs, creating conditional network states.
- Factors influencing this include projection patterns, excitation/inhibition balance, and firing states.
- Recent studies support a conditional driving or modulatory role for callosal axons.
Conclusions:
- Callosal axons play a conditional, rather than solely direct, role in driving post-synaptic targets.
- This role is dependent on task contingencies and network states.
- A new framework for understanding cortico-cortical connectivity is proposed.
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