Modelling non-invasive brain stimulation in cognitive neuroscience

Моделирование неинвазивной стимуляции мозга в когнитивной нейронауке
Carlo Miniussi, Justin A. Harris, Manuela Ruzzoli
2013-07-01

causal inferencecognitive neurosciencefacilitatory and inhibitory effectsneural modulation (signal-to-noise)non-invasive brain stimulation
Non-invasive brain stimulation (NIBS) is a method for the study of cognitive function that is quickly gaining popularity. It bypasses the correlative approaches of other imaging techniques, making it possible to establish a causal relationship between cognitive processes and the functioning of specific brain areas. Like lesion studies, NIBS can provide information about where a particular process occurs. However, NIBS offers the opportunity to study brain mechanisms beyond process localisation, providing information about when activity in a given brain region is involved in a cognitive process, and even how it is involved. When using NIBS to explore cognitive processes, it is important to understand not only how NIBS functions but also the functioning of the neural structures themselves. We know that NIBS techniques have the potential to transiently influence behaviour by altering neuronal activity, which may have facilitatory or inhibitory behavioural effects, and these alterations can be used to understand how the brain works. Given that NIBS necessarily involves the relatively indiscriminate activation of large numbers of neurons, its impact on a neural system can be easily understood as modulation of neural activity that changes the relation between noise and signal. In this review, we describe the mutual interactions between NIBS and brain activity and provide an updated and precise perspective on the theoretical frameworks of NIBS and their impact on cognitive neuroscience. By transitioning our discussion from one aspect (NIBS) to the other (cognition), we aim to provide insights to guide future research.
1
Because NIBS indiscriminately activates large neuron populations, its effects are best understood as modulating the signal-to-noise relation in neural systems.
2
NIBS can provide temporal information about when a brain region contributes to a cognitive process, not just localisation.
3
NIBS can reveal how a brain region is involved in cognition by transiently altering neuronal activity with facilitatory or inhibitory behavioral effects.
4
NIBS enables causal inference about relationships between cognitive processes and specific brain areas, beyond correlative imaging methods.
5
The review synthesizes theoretical frameworks describing mutual interactions between NIBS and brain activity to guide future cognitive neuroscience research.

Non-invasive brain stimulation (NIBS) in cognitive neuroscience

How NIBS interacts with and modulates brain activity to causally probe cognitive processes — including timing, facilitation/inhibition of neuronal activity, and changes in signal–noise relations that affect behavior and cognitive function

Publication Details
Publication Date
2013-07-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Carlo Miniussi
Justin A. Harris
Manuela Ruzzoli
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%