Magnetic resonance-guided ultrasound thalamotomy for essential tremor: a review.
Authors: De Schlichting E, Meng Y, Huang Y, Jones RM, Hynynen K, Hamani C, Abrahao A, Davidson B, Lipsman N
Essential tremor (ET) is a common neurological disorder characterized by involuntary, rhythmic shaking, primarily of the hands. While not life-threatening, ET significantly impairs quality of life. Pharmacological treatments, like beta-blockers or anticonvulsants, often have limited efficacy, leading patients to more aggressive alternatives such as surgical intervention. Recently, magnetic resonance-guided focused ultrasound has emerged as an alternative to surgical procedures, offering incisionless lesioning of the thalamus, resulting in immediate and sustained tremor reduction. This review explores the MRgFUS technique in the treatment of ET, reviewing clinical efficacy, safety, and procedural advances. A literature search was conducted using PubMed for articles published between January 2015 and March 2024, with the terms: 'MRgFUS,' 'essential tremor,' 'focused ultrasound thalamotomy,' and 'bilateral thalamotomy.' Key points such as patient selection, skull density ratio, monitoring, thermal effects and tractography are discussed. MRgFUS has transformed the treatment of ET by providing a precise, incisionless alternative now included in clinical guidelines. Challenges such as SDR limitations or restricted approved-indications limit its extended use. Advances in targeting, thermometry and other biological effects such as histotripsy could expand accessibility and indications. By 2035, MRgFUS could become a standard outpatient procedure for ET and other brain disorders.
Introduction
Purpose
Thermal ablation
Study Objective
To review the use, efficacy, and safety of magnetic resonance-guided ultrasound thalamotomy as a treatment for essential tremor.
Disease model
Essential tremor
MRI or image guidance method
Magnetic resonance imaging (MRI) guidance
Targeted brain region(s)
Thalamus
Outcomes and Safety
Summary of Outcomes
No biological or behavioral outcomes are reported in the provided text (only the paper title was given), and no focused ultrasound parameters or their successes are described.
Safety-related matter
The supplied text contains only the article title and provides no information about safety or adverse effects.
Brain Region
Ultrasound Parameters
FUS Mode
continuous
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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