paper

Development of a 4D Cerebral Microvascular Imaging Platform for Mouse Stroke Model

arXiv:2609.16666

Abstract

In ischemic stroke, changes in cerebral hemodynamics during both the ischemic and reperfusion phases strongly influence stroke outcomes. However, these hemodynamic changes remain incompletely understood. To address this challenge, we devised an imaging platform that enables time-resolved ultrasound microvascular imaging during the experimental induction of ischemia and reperfusion in a mouse model. The platform leverages our previous ultrasound imaging framework combined with continuous mechanical scanning, which acquires whole-brain blood-flow signals within 5 s. The experiments demonstrated that the proposed platform can visualize both local and whole-brain hemodynamic responses to the induction of ischemia and reperfusion, suggesting its potential for rapid and continuous whole-brain hemodynamic assessment in small-animal models.

4 pages, 6 figures, This work has been submitted to the IEEE IUS 2026 conference for possible publication. Copyright may be transferred without notice, after which this version may no longer be accessible