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Focal Volume, Acoustic Radiation Force, and Strain in Two-Transducer Regimes.

Authors: Naftchi-Ardebili K, Menz MD, Salahshoor H, Popelka GR, Baccus SA, Pauly KB

Transcranial focused ultrasound stimulation (TUS) holds promise for non-invasive neural modulation in treating neurological disorders. Most clinically relevant targets are deep within the brain (near or at its geometric center), surrounded by other sensitive regions that need to be spared clinical intervention. However, in TUS, increasing frequency with the goal of improving spatial resolution reduces the effective penetration depth. We show that by using a pair of 1 MHz, orthogonally arranged transducers we improve the spatial resolution afforded by each of the transducers individually, by nearly 40 fold, achieving a sub-cubic millimeter target volume of $0.24\ mm^3$. We show that orthogonally placed transducers generate highly localized standing waves with Acoustic Radiation Force (ARF) arranged into periodic regions of compression and tension near the target. We further present an extended capability of the orthogonal setup, which is to impart selective pressures--either positive or negative, but not both--on the target. Lastly, we share our preliminary findings that strain can arise from both particle motion and ARF with the former reaching its maximum value at the focus, and the latter remaining null at the focus and reaching its maximum around the focus. As the field is investigating the mechanism of interaction in TUS by way of elucidating the mapping between ultrasound parameters and neural response, orthogonal transducers expand our toolbox by making it possible to conduct these investigations at much finer spatial resolutions, with localized and directed (compression vs. tension) ARF and the capability of applying selective pressures at the target.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To demonstrate that orthogonally arranged 1 MHz transducers can achieve sub-cubic millimeter targeting and impart localized, directional acoustic radiation forces to improve transcranial focused ultrasound stimulation.

Outcomes and Safety

Summary of Outcomes No biological or behavioral effects were reported; instead the study shows that using a pair of orthogonally arranged 1 MHz transducers yields ~40-fold improved spatial resolution with a sub-cubic-millimeter focal volume (0.24 mm^3). The orthogonal configuration produced highly localized standing waves and controllable acoustic radiation force—creating periodic compression/tension regions and enabling selective positive or negative pressure at the target—and revealed strain contributions from particle motion (max at focus) and ARF (null at focus, max around focus).
Safety-related matter The text contains no mention of safety concerns or adverse effects; no adverse effects were reported.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Frequency 1 MHz
Focal Characteristics focal depth: None; focal length: None; aperture size: None

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