TY - JOUR
T1 - Multisensory integration
T2 - important issue to understand cognitive functions of the lateral prefrontal cortex
AU - Wang, Mengyue
AU - Funahashi, Shintaro
N1 - Publisher Copyright:
© 2026 the author(s), published by De Gruyter, Berlin/Boston.
PY - 2026
Y1 - 2026
N2 - The lateral prefrontal cortex (LPFC) receives visual, auditory, and somatosensory information and has extensive local neural connections across different sensory regions. Therefore, this cortical area is likely an ideal site for investigating the neural mechanisms of multisensory integration and for understanding how such integration contributes to various cognitive functions. However, it has been shown that the LPFC is functionally heterogeneous and compartmentalized with respect to different sensory modalities and that each sensory area exhibits topographic representation of sensory information. Human neuroimaging studies indicate that although multiple sensory modalities are integrated in domain-general regions of the prefrontal cortex, each sensory modality is primarily processed within functionally segregated networks. These domain-general regions largely correspond to visual areas, whereas modality-specific regions are located adjacent to them. This organization suggests that each sensory modality is mainly processed by distinct functional networks in the prefrontal cortex. Despite the importance of multisensory integration for understanding prefrontal functions, relatively few studies have been conducted, with most focusing audio-visual integration in vocal communication. This limitation is partly due to the difficulty of activating prefrontal neurons using simple sensory stimuli and behavioral tasks, as well as the limitation of experimental data for computational approach and experimental techniques for investigating activities under multimodal conditions. Recently, several novel multisensory technologies have been developed, enabling the investigation of multisensory integration under conditions close to natural environments. These approaches are expected to advance our understanding of the neural mechanisms underlying multisensory integration in the prefrontal cortex.
AB - The lateral prefrontal cortex (LPFC) receives visual, auditory, and somatosensory information and has extensive local neural connections across different sensory regions. Therefore, this cortical area is likely an ideal site for investigating the neural mechanisms of multisensory integration and for understanding how such integration contributes to various cognitive functions. However, it has been shown that the LPFC is functionally heterogeneous and compartmentalized with respect to different sensory modalities and that each sensory area exhibits topographic representation of sensory information. Human neuroimaging studies indicate that although multiple sensory modalities are integrated in domain-general regions of the prefrontal cortex, each sensory modality is primarily processed within functionally segregated networks. These domain-general regions largely correspond to visual areas, whereas modality-specific regions are located adjacent to them. This organization suggests that each sensory modality is mainly processed by distinct functional networks in the prefrontal cortex. Despite the importance of multisensory integration for understanding prefrontal functions, relatively few studies have been conducted, with most focusing audio-visual integration in vocal communication. This limitation is partly due to the difficulty of activating prefrontal neurons using simple sensory stimuli and behavioral tasks, as well as the limitation of experimental data for computational approach and experimental techniques for investigating activities under multimodal conditions. Recently, several novel multisensory technologies have been developed, enabling the investigation of multisensory integration under conditions close to natural environments. These approaches are expected to advance our understanding of the neural mechanisms underlying multisensory integration in the prefrontal cortex.
KW - executive function
KW - prefrontal cortex
KW - sensory integration
KW - sensory representation
KW - topographic representation
UR - https://www.scopus.com/pages/publications/105045989450
U2 - 10.1515/revneuro-2026-0076
DO - 10.1515/revneuro-2026-0076
M3 - Review article
C2 - 42474200
AN - SCOPUS:105045989450
SN - 0334-1763
JO - Reviews in the Neurosciences
JF - Reviews in the Neurosciences
ER -