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Transcranial Focused Ultrasound Modulates Visual Thalamus in a Nonhuman Primate Model.

Authors: Yu K, He B

The thalamus plays a pivotal role as a neural hub, integrating and distributing visual information to cortical regions responsible for visual processing. Transcranial focused ultrasound (tFUS) has emerged as a promising non-invasive brain stimulation technology, enabling modulation of neural circuits with high spatial precision. This study investigates the tFUS neuromodulation at visual thalamus and characterizes the resultant effects on interconnected visual areas in a nonhuman primate model. Experiments were conducted on a rhesus macaque trained in a visual fixation task, combining tFUS stimulation with simultaneous scalp electroencephalography (EEG) and intracranial recordings from area V4, a region closely linked to the thalamus. Ultrasound was delivered through a 128-element random array ultrasound transducer operating at 700 kHz, with the focus steered onto the pulvinar of the thalamus based on neuroanatomical atlas and individual brain model. EEG source imaging revealed localized tFUS-induced activities in the thalamus, midbrain, and visual cortical regions. Critically, tFUS stimulation of the pulvinar can elicit robust neural responses in V4 without visual input, manifested as significant modulations in local field potentials, elevated alpha and gamma power, corroborating the functional thalamocortical connectivity. Furthermore, the tFUS neuromodulatory effects on visually-evoked V4 activities were region-specific within the thalamus and dependent on ultrasound pulse repetition frequency. This work provides direct electrophysiological evidence demonstrating the capability of tFUS in modulating the visual thalamus and its functional impact on interconnected cortical regions in a large mammalian model, paving the way for potential investigations for tFUS treating visual, sensory, and cognitive impairments.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To investigate whether transcranial focused ultrasound (tFUS) targeting the visual thalamus can modulate thalamic activity and influence interconnected visual cortical areas in a nonhuman primate model.
Animal model / Human subject Rhesus macaque (Macaca mulatta); strain: not reported; age: not reported; sex: not reported
Disease model Healthy
MRI or image guidance method Neuroanatomical atlas and individual brain model
Targeted brain region(s) Thalamus
Target coordinates RAS coordinates: -6.56, -11.25, 3.83

Outcomes and Safety

Summary of Outcomes tFUS targeted to the pulvinar (700 kHz, delivered with a 128‑element array) evoked robust V4 neural responses without visual input, produced localized EEG source activity in thalamus/midbrain/visual cortex, modulated local field potentials, and increased alpha and gamma power. Effects were region‑specific within the thalamus and depended on pulse repetition frequency (PRF); the paper reports PRF‑dependent efficacy but does not specify which exact PRF values were most effective.
Safety-related matter Scalp temp increase was less than 0.01 degree C, and after repeated tFUS session the macaque showed no adverse behavioral effects over 10 days.

Brain Region

Ultrasound Parameters

Ultrasound instrument 128-element random array ultrasound transducer (700 kHz); manufacturer: None reported; aperture/diameter: None reported
FUS Frequency 700 kHz
FUS Intensity 6.99 W/cm2
FUS Pressure 950.9 kPa
FUS Mode pulsed
Pulse duration 0.2 ms
Duration of a single FUS session 400 ms
Focal Characteristics Focal depth: 13.9 mm; Focal length: None; Aperture size: 60 mm
Treatment frequency Multiple

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