In vivo parcellation of the human superior colliculus from brain-wide probabilistic connectivity

M Matteo Diano (Department of Psychology and Neuroscience Institute of Turin, University of Torino) C Carlos Andrés Méndez (Institut des Sciences Cognitives Marc Jeannerod) O Olga Dal Monte (Department of Psychology and Neuroscience Institute of Turin, University of Torino) M Marco Lanzilotto (Department of Medicine and Surgery, University of Parma) D Davide Orsenigo (Department of Psychology and Neuroscience Institute of Turin, University of Torino) A Alessio Borriero (Department of Psychology and Neuroscience Institute of Turin, University of Torino) E Enrico Premi (Stroke Unit, “Spedali Civili” Hospital) A Alessia Celeghin (Department of Psychology and Neuroscience Institute of Turin, University of Torino) M Matteo Panormita (Department of Psychology and Neuroscience Institute of Turin, University of Torino) L Luca Bonini (Department of Medicine and Surgery, University of Parma) G Giuseppe Di Cesare (Department of Medicine and Surgery, University of Parma) M Marzio Gerbella (Department of Medicine and Surgery, University of Parma) G Giacomo Rizzolatti (Department of Medicine and Surgery, University of Parma) H Holly Bridge (Oxford Centre for Functional Magnetic Resonance Imaging of the Brain, Centre for Integrative Neuroimaging, University of Oxford) M Marco Tamietto (Department of Psychology and Neuroscience Institute of Turin, University of Torino)

Abstract

The Superior Colliculus (SC) is a multimodal integration midbrain structure receiving input from various sensory systems (visual, auditory, and somatosensory) and using this information to guide rapid, reflexive responses. Research using invasive animal model techniques has extensively characterized the SC connectional fingerprint and subcomponent differentiation. However, the extent to which these findings can be generalized to humans remains largely unknown. Here, we developed a fully data-driven approach to examine the wiring diagram of each voxel in the human SC in a cohort of 200 participants. Using diffusion MRI to infer probabilistic tractography, we identified three subregions within the human SC with distinct topography and unique brain-wide connectivity patterns. A superficial division is primarily linked with visual cortical areas, the amygdala, and the posterior thalamus. An intermediate-lateral division is connected predominantly with the auditory and somatosensory cortices and with sectors of the posterior parietal cortex. A deep subregion exhibits preferential connectivity with the brainstem and cerebellum. These in vivo features highlight the heterogeneity in the extrinsic connectivity of the human SC. Probabilistic coupling partly reflects conserved SC interaction motifs reported in other mammals with direct tracing methods, while also showing potential adaptations of cortical–midbrain interactions compatible with human neocortical expansion.

Article Details

Volume / Issue Vol. 122, Issue 44
Published November 04, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (15)

M

Matteo Diano

Department of Psychology and Neuroscience Institute of Turin, University of Torino

C

Carlos Andrés Méndez

Institut des Sciences Cognitives Marc Jeannerod

O

Olga Dal Monte

Department of Psychology and Neuroscience Institute of Turin, University of Torino

M

Marco Lanzilotto

Department of Medicine and Surgery, University of Parma

D

Davide Orsenigo

Department of Psychology and Neuroscience Institute of Turin, University of Torino

A

Alessio Borriero

Department of Psychology and Neuroscience Institute of Turin, University of Torino

E

Enrico Premi

Stroke Unit, “Spedali Civili” Hospital

A

Alessia Celeghin

Department of Psychology and Neuroscience Institute of Turin, University of Torino

M

Matteo Panormita

Department of Psychology and Neuroscience Institute of Turin, University of Torino

L

Luca Bonini

Department of Medicine and Surgery, University of Parma

G

Giuseppe Di Cesare

Department of Medicine and Surgery, University of Parma

M

Marzio Gerbella

Department of Medicine and Surgery, University of Parma

G

Giacomo Rizzolatti

Department of Medicine and Surgery, University of Parma

H

Holly Bridge

Oxford Centre for Functional Magnetic Resonance Imaging of the Brain, Centre for Integrative Neuroimaging, University of Oxford

M

Marco Tamietto

Department of Psychology and Neuroscience Institute of Turin, University of Torino