Focused ultrasound for functional neurosurgery.
Authors: Lev-Tov L, Barbosa DAN, Ghanouni P, Halpern CH, Buch VP
Brain lesioning is a fundamental technique in the functional neurosurgery world. It has been investigated for decades and presented promising results long before novel pharmacological agents were introduced to treat movement disorders, psychiatric disorders, pain, and epilepsy. Ablative procedures were replaced by effective drugs during the 1950s and by Deep Brain Stimulation (DBS) in the 1990s as a reversible neuromodulation technique. In the last decade, however, the popularity of brain lesioning has increased again with the introduction of magnetic resonance-guided focused ultrasound (MRgFUS). In this review, we will cover the current and emerging role of MRgFUS in functional neurosurgery. Literature review from PubMed and compilation. Investigated since 1930, MRgFUS is a technology enabling targeted energy delivery at the convergence of mechanical sound waves. Based on technological advancements in phased array ultrasound transducers, algorithms accounting for skull penetration by sound waves, and MR imaging for targeting and thermometry, MRgFUS is capable of brain lesioning with sub-millimeter precision and can be used in a variety of clinical indications. MRgFUS is a promising technology evolving as a dominant tool in different functional neurosurgery procedures in movement disorders, psychiatric disorders, epilepsy, among others.
Introduction
Purpose
Thermal ablation
Study Objective
To evaluate the application and potential of focused ultrasound for use in functional neurosurgery.
Outcomes and Safety
Summary of Outcomes
No experimental results or methods are present in the provided text (only the paper title), so no biological or behavioral effects can be summarized and no focused ultrasound parameters reporting success are available.
Safety-related matter
No safety or adverse effects were mentioned in the provided text.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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