Functional ultrasound imaging (fUSI) is an emerging hemodynamic neuroimaging modality whose potential for connectome-scale network mapping remains largely untested. Here, we establish a non-invasive transcranial fUSI protocol and an fMRI-inspired preprocessing framework that enable robust resting-state functional connectomics in the mouse. We show that fUSI resolves canonical brain-wide cortical and subcortical networks with high spatial concordance to fMRI, including a default-mode (DMN) and a laterocortical network. Notably, fUSI networks are robustly embedded within the structural connectome, with structure-function coupling being parsimoniously described by four dominant axes that differentially relate functional systems to known anatomical substrates. We also show that, beyond static organization, fUSI reproduces hallmark resting state fMRI dynamics, including dominant anti-correlated coactivation patterns (CAPs) and a structured transition architecture that converges onto three stable attractor modes. Together, these results establish transcranial fUSI as a portable and scalable complement to fMRI for connectome-scale mapping of mouse brain networks.

Structural and dynamic embedding of the mouse functional connectome revealed by functional ultrasound imaging (fUSI) / Pepe, Chiara; Mariani, Jean-Charles; Urosevic, Mila; Gini, Silvia; Stuefer, Alexia; Ricci, Fabio; Galbusera, Alberto; Iurilli, Giuliano; Gozzi, Alessandro. - ELETTRONICO. - 2026:(2026). [10.64898/2026.02.05.704055]

Structural and dynamic embedding of the mouse functional connectome revealed by functional ultrasound imaging (fUSI)

Pepe, Chiara
Co-primo
;
Urosevic, Mila;Gini, Silvia;Stuefer, Alexia;
2026-01-01

Abstract

Functional ultrasound imaging (fUSI) is an emerging hemodynamic neuroimaging modality whose potential for connectome-scale network mapping remains largely untested. Here, we establish a non-invasive transcranial fUSI protocol and an fMRI-inspired preprocessing framework that enable robust resting-state functional connectomics in the mouse. We show that fUSI resolves canonical brain-wide cortical and subcortical networks with high spatial concordance to fMRI, including a default-mode (DMN) and a laterocortical network. Notably, fUSI networks are robustly embedded within the structural connectome, with structure-function coupling being parsimoniously described by four dominant axes that differentially relate functional systems to known anatomical substrates. We also show that, beyond static organization, fUSI reproduces hallmark resting state fMRI dynamics, including dominant anti-correlated coactivation patterns (CAPs) and a structured transition architecture that converges onto three stable attractor modes. Together, these results establish transcranial fUSI as a portable and scalable complement to fMRI for connectome-scale mapping of mouse brain networks.
2026
NY, USA
Cold Spring Harbor (biorXiv)
Structural and dynamic embedding of the mouse functional connectome revealed by functional ultrasound imaging (fUSI) / Pepe, Chiara; Mariani, Jean-Charles; Urosevic, Mila; Gini, Silvia; Stuefer, Alexia; Ricci, Fabio; Galbusera, Alberto; Iurilli, Giuliano; Gozzi, Alessandro. - ELETTRONICO. - 2026:(2026). [10.64898/2026.02.05.704055]
Pepe, Chiara; Mariani, Jean-Charles; Urosevic, Mila; Gini, Silvia; Stuefer, Alexia; Ricci, Fabio; Galbusera, Alberto; Iurilli, Giuliano; Gozzi, Alessa...espandi
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/475750
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
  • OpenAlex ND
social impact