A random phased-array for MR-guided transcranial ultrasound neuromodulation in non-human primates.
Authors: Chaplin V, Phipps MA, Caskey CF
Transcranial focused ultrasound (FUS) is a non-invasive technique for therapy and study of brain neural activation. Here we report on the design and characterization of a new MR-guided FUS transducer for neuromodulation in non-human primates at 650 kHz. The array is randomized with 128 elements 6.6 mm in diameter, radius of curvature 7.2 cm, opening diameter 10.3 cm (focal ratio 0.7), and 46% coverage. Simulations were used to optimize transducer geometry with respect to focus size, grating lobes, and directivity. Focus size and grating lobes during electronic steering were quantified using hydrophone measurements in water and a three-axis stage. A novel combination of optical tracking and acoustic mapping enabled measurement of the 3D pressure distribution in the cortical region of an ex vivo skull to within ~3.5 mm of the surface, and allowed accurate modelling of the experiment via non-homogeneous 3D acoustic simulations. The data demonstrates acoustic focusing beyond the skull bone, with the focus slightly broadened and shifted proximal to the skull. The fabricated design is capable of targeting regions within the S1 sensorimotor cortex of macaques.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To design and characterize a 650 kHz MR-guided focused ultrasound transducer optimized for neuromodulation in non-human primates, evaluating its focusing performance and skull transmission.
Animal model / Human subject
Macaque (non-human primate); strain: None; age: None; sex: None
Disease model
Healthy
MRI or image guidance method
MR-guided; additionally, optical tracking combined with acoustic mapping was used for targeting/measurement
Targeted brain region(s)
S1 Sensorimotor Cortex
Outcomes and Safety
Summary of Outcomes
No biological or behavioral effects were reported; the study acoustically characterized a new MR-guided transducer and demonstrated successful transcranial focusing beyond an ex vivo macaque skull (focus slightly broadened and shifted proximal to the skull). Successful FUS parameters/conditions: 650 kHz center frequency using a randomized 128‑element array (6.6 mm elements), radius of curvature 7.2 cm, opening diameter 10.3 cm (focal ratio 0.7), ~46% coverage, with electronic steering validated.
Safety-related matter
The provided text contains no mention of safety issues or adverse effects; no adverse effects were reported or discussed in the excerpt.
Brain Region
Ultrasound Parameters
Ultrasound instrument
MR-guided focused ultrasound (FUS) transducer — randomized 128-element array, 650 kHz; element diameter 6.6 mm; radius of curvature 7.2 cm; opening diameter (aperture) 10.3 cm; focal ratio 0.7; 46% coverage; manufacturer/model: None
FUS Frequency
650 kHz
Focal Characteristics
focal depth: None; focal length: 7.2 cm; aperture size: 10.3 cm
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