Sustained modulation of primate deep brain circuits with focused ultrasonic waves.
Authors: Webb TD, Wilson MG, Odéen H, Kubanek J
Transcranial focused ultrasound has the potential to noninvasively modulate deep brain circuits and impart sustained, neuroplastic effects. Bring the approach closer to translations by demonstrating sustained modulation of deep brain circuits and choice behavior in task-performing non-human primates. Low-intensity transcranial ultrasound of 30 s in duration was delivered in a controlled manner into deep brain targets (left or right lateral geniculate nucleus; LGN) of non-human primates while the subjects decided whether a left or a right visual target appeared first. While the animals performed the task, we recorded intracranial EEG from occipital screws. The ultrasound was delivered into the deep brain targets daily for a period of more than 6 months. The brief stimulation induced effects on choice behavior that persisted up to 15 minutes and were specific to the sonicated target. Stimulation of the left/right LGN increased the proportion of rightward/leftward choices. These effects were accompanied by an increase in gamma activity over visual cortex. The contralateral effect on choice behavior and the increase in gamma, compared to sham stimulation, suggest that the stimulation excited the target neural circuits. There were no detrimental effects on the animals' discrimination performance over the months-long course of the stimulation. This study demonstrates that brief, 30-s ultrasonic stimulation induces neuroplastic effects specifically in the target deep brain circuits, and that the stimulation can be applied daily without detrimental effects. These findings encourage repeated applications of transcranial ultrasound to malfunctioning deep brain circuits in humans with the goal of providing a durable therapeutic reset.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To demonstrate that brief, low-intensity transcranial focused ultrasound can produce sustained, target-specific modulation of deep brain circuits and choice behavior in awake, task-performing non-human primates.
Animal model / Human subject
Macaca mulatta (rhesus macaque); subjects B (5 years, male), E (7 years, male), C (8 years, male), H (8 years, male)
Disease model
Healthy
MRI or image guidance method
Phased‑array electronic steering (software‑controlled targeting via a skull‑mounted head frame/256‑element transducer array) with targeting validated using MR thermometry.
Targeted brain region(s)
And Lateral Geniculate Nucleus (Lgn)
Outcomes and Safety
Summary of Outcomes
Thirty-second low‑intensity transcranial focused ultrasound to the lateral geniculate nucleus produced a target‑specific excitation: left/right LGN sonication induced contralateral choice biases lasting up to ~15 minutes and increased gamma activity over visual cortex, with no behavioral or anatomical harm after months of daily application. The study used parameters including ~480 kHz center frequency, 30 s sonication, ~30 ms pulses with <15% duty cycle and in‑situ ISPTA up to ~2 W/cm^2 and included active sham controls, but adaptation limited statistical power and no specific parameter set was conclusively identified as superior.
Duration of biological effect
15 minutes
Safety-related matter
No adverse effects were detected: over months-long daily stimulation the animals showed stable or improved visual discrimination, contrast-enhanced T1/T2 MRI showed no blood–brain barrier disruption or edema in the stimulated LGN, and the authors report no safety concerns despite in‑situ ISPTA up to 2 W/cm2.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Remus (phased array system); transducer: 256-element ultrasound transducer array (Doppler Electronic Technologies, Guangzhou, China); transducer aperture/diameter: None
FUS Frequency
480 kHz, 650 kHz
FUS Intensity
0.6 W/cm2
FUS Pressure
1.5 MPa
FUS Mode
pulsed
Pulse duration
30 ms
Duration of a single FUS session
30 seconds
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Multiple sessions
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