Multi-lens ultrasound arrays enable large scale three-dimensional micro-vascularization characterization over whole organs
Abstract
Abstract Mapping microcirculation at the whole-organ scale in 3D is crucial for understanding vascular pathologies and improving diagnostics. Although 3D ultrasound localization microscopy (ULM) enables microscopic resolution by localizing intravenously injected microbubbles in small animal models, visualizing entire organs in large animals or humans remains challenging due to limited field of view, low sensitivity, and probe technological complexity. Here, we demonstrate how a multi-lens array method overcomes these limitations. Combined with 3D ULM, it maps and quantifies large vascular volumes (up to 120 × 100 × 82 mm³) at high spatial resolution (125–200 µm) with a volumetric acquisition rate of 312 Hz, using low-cost technology. This approach enables deeper insights into hemodynamics from large vessels to pre-capillary arterioles, by providing vast and rich datasets of whole-organ vascularization. It could also facilitate diagnosis of microcirculation disorders and monitoring of small-vessel disease treatments by addressing key limitations of current imaging modalities.
Article Details
Authors (12)
Nabil Haidour
Hugues Favre
Philippe Mateo
Juliette Reydet
Alain Bizé
Lucien Sambin
Jianping Dai
Paul-Matthieu Chiaroni
Bijan Ghaleh
Mathieu Pernot
Mickael Tanter
Institute Physics for Medicine Paris, École Supérieure de Physique et de Chimie Industrielles de la Ville de Paris, Inserm U1273, CNRS U8631, Paris Sciences et Lettres – Université PSL
Clement Papadacci