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Transcranial Functional Ultrasound Imaging Detects Focused Ultrasound Neuromodulation Induced Hemodynamic Changes <i>In Vivo</i>.

Authors: Bendig J, Aurup C, Blackman SG, McCune EP, Kim S, Konofagou EE

Focused ultrasound (FUS) is an emerging non-invasive technique for neuromodulation in the central nervous system (CNS). Functional ultrasound imaging (fUSI) leverages ultrafast Power Doppler Imaging (PDI) to detect changes in cerebral blood volume (CBV), which correlate well with neuronal activity and thus hold promise to monitor brain responses to FUS. Investigate the immediate and short-term effects of transcranial FUS neuromodulation in the brain with fUSI by characterizing hemodynamic responses. We designed a setup that aligns a FUS transducer with a linear array to allow immediate subsequent monitoring of the hemodynamic response with fUSI during and after FUS neuromodulation (FUS-fUSI) in lightly anesthetized mice. We investigated the effects of varying pressures and transducer positions on the hemodynamic responses. We found that higher FUS pressures increase the size of the activated brain area, as well as the magnitude of change in CBV and could show that sham sonications did not produce hemodynamic responses. Unilateral sonications resulted in bilateral hemodynamic changes with a significantly stronger response on the ipsilateral side. FUS neuromodulation in mice with a cranial window showed distinct activation patterns that were frequency-dependent and different from the activation patterns observed in the transcranial model. fUSI is hereby shown capable of transcranially monitoring online and short-term hemodynamic effects in the brain during and following FUS neuromodulation.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To investigate and characterize the immediate and short-term hemodynamic effects of transcranial focused ultrasound neuromodulation in the mouse brain using functional ultrasound imaging.
Animal model / Human subject Mouse (C57BL/6), male, 8–12 weeks (transcranial experiments, n=22); subgroup with cranial window: C57BL/6, male, 8–20 weeks (n=5)
MRI or image guidance method B-mode ultrasound imaging with stereotactic landmarking: head fixed in a stereotactic frame, interaural line localized via B-mode using reflective syringe tips, then manual neuronavigation with a micromanipulator referenced to an atlas; for cranial-window animals targeting used the anterior border (Bregma +2 mm) and a motorized stage.
Target coordinates AP: −0.2 to −2.0 mm from Bregma (imaging planes); cranial-window targeting referenced to anterior border at Bregma +2 mm. ML: 0 mm (midline) or ±1 mm. DV: None.

Outcomes and Safety

Summary of Outcomes FUS produced dose‑dependent increases in cerebral blood volume and larger activated brain areas with bilateral but ipsilaterally‑biased responses, with significant neuromodulatory effects observed for transcranial pressures around 1.7–2.6 MPa (vs 0.8 MPa), and in cranial‑window experiments for 1.68 MHz at ≳2.1–2.8 MPa and for 4.0 MHz at ≳2.3–3.0+ MPa.
Duration of biological effect 20 s
Safety-related matter No signs of structural changes or blood cell extravasation were observed in H&E staining in two mice 24 h after the highest transcranial FUS (1.68 MHz, PNP 2.6 MPa); thermocouple measurements showed temperature increases up to ~3.44°C in brain tissue and ~3.58°C under the skull at the highest pressures, and the authors note that thermal effects cannot be fully ruled out.

Brain Region

Visualization unavailable

Ultrasound Parameters

Ultrasound instrument Single-element spherical segment annular focused ultrasound transducers H-204 and H-215 (Sonic Concepts Inc., Bothell, WA, USA); ultrasound imaging array L22-14vXLF (Vermon S.A., Tours, France); programmable research ultrasound system Vantage 256 (Verasonics, Kirkland, WA). Transducer aperture/diameter: None
FUS Frequency 1.68 MHz
FUS Pressure 0.8, 1.7, 2.6 MPa
FUS Mode pulsed
Pulse duration 20 s
Duration of a single FUS session 320-410 s (5 min 20 s - 6 min 50 s)
Focal Characteristics focal depth: None; focal length: None; aperture size: None
Treatment frequency multiple sessions

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