Illusions of Self-Motion during Magnetic Resonance-Guided Focused Ultrasound Thalamotomy for Tremor.
Authors: Ciocca M, Jameel A, Yousif N, Patel N, Smith J, Akgun S, Jones B, Gedroyc W, Nandi D, Tai Y, Seemungal BM, Bain P
Brain networks mediating vestibular perception of self-motion overlap with those mediating balance. A systematic mapping of vestibular perceptual pathways in the thalamus may reveal new brain modulation targets for improving balance in neurological conditions. Here, we systematically report how magnetic resonance-guided focused ultrasound surgery of the nucleus ventralis intermedius of the thalamus commonly evokes transient patient-reported illusions of self-motion. In 46 consecutive patients, we linked the descriptions of self-motion to sonication power and 3-dimensional (3D) coordinates of sonication targets. Target coordinates were normalized using a standard atlas, and a 3D model of the nucleus ventralis intermedius and adjacent structures was created to link sonication target to the illusion. A total of 63% of patients reported illusions of self-motion, which were more likely with increased sonication power and with targets located more inferiorly along the rostrocaudal axis. Higher power and more inferiorly targeted sonications increased the likelihood of experiencing illusions of self-motion by 4 and 2 times, respectively (odds ratios = 4.03 for power, 2.098 for location). The phenomenon of magnetic vestibular stimulation is the most plausible explanation for these illusions of self-motion. Temporary unilateral modulation of vestibular pathways (via magnetic resonance-guided focused ultrasound) unveils the central adaptation to the magnetic field-induced peripheral vestibular bias, leading to an explicable illusion of motion. Consequently, systematic mapping of vestibular perceptual pathways via magnetic resonance-guided focused ultrasound may reveal new intracerebral targets for improving balance in neurological conditions. ANN NEUROL 2024;96:121-132.
Introduction
Purpose
Thermal ablation
Study Objective
To characterize and quantify illusions of self-motion reported by patients undergoing magnetic resonance-guided focused ultrasound thalamotomy for tremor.
Animal model / Human subject
Human (58-84 years; 35 male, 11 female)
Disease model
Essential tremor, parkinsonian tremor
MRI or image guidance method
Magnetic Resonance (MRI) guidance
Targeted brain region(s)
Thalamus
Outcomes and Safety
Summary of Outcomes
63% of 46 patients experienced transient self-motion illusions; higher sonication power (OR=4.03) and inferior PSA target placement (OR=2.098) significantly increase illusion risk
Safety-related matter
No safety information or adverse effects are mentioned in the provided text; only the article title is present.
Brain Region
Ultrasound Parameters
Ultrasound instrument
MR-guided FUS system
FUS Mode
continuous
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
single session
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