State-dependent associative plasticity highlights function-specific premotor-motor pathways crucial for arbitrary visuomotor mapping.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40367165.
- Also identified by DOI 10.1126/sciadv.adu4098 and PMC identifier 12077503.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Arbitrary visuomotor mapping (AVMM) showcases the brain's ability to link sensory inputs with actions. The ventral premotor cortex (PMv) is proposed as central to sensorimotor transformations, relaying descending motor commands through the primary motor cortex (M1). However, direct evidence of this pathway's involvement in AVMM remains elusive. In four experiments, we used cortico-cortical paired associative stimulation (ccPAS) to enhance (ccPAS<sub>PMv-M1</sub>) or inhibit (ccPAS<sub>M1-PMv</sub>) PMv-to-M1 connectivity via Hebbian plasticity. Leveraging state-dependent properties of transcranial magnetic stimulation, we targeted function-specific visuomotor neurons within the pathway, testing their physiological/behavioral relevance to AVMM. State-dependent ccPAS<sub>PMv-M1</sub>, applied during motor responses to target visual cues, enhanced neurophysiological and behavioral indices of AVMM, while ccPAS<sub>M1-PMv</sub> had an opposite influence, with the effects being more pronounced for target relative to control visual cues. These results highlight the plasticity and causal role of spatially overlapping but functionally specific neural populations within the PMv-M1 pathway in AVMM and suggest state-dependent ccPAS as a tool for targeted modulation of visuomotor pathways.
Medical subject headings
- Motor Cortex
- Neuronal Plasticity
- Brain Mapping
- Psychomotor Performance