The Emerging Role of Magnetic Resonance Imaging-Guided Focused Ultrasound in Functional Neurosurgery.
Authors: Fiani B, Lissak IA, Soula M, Sarhadi K, Shaikh ES, Baig A, Farooqui M, Quadri SA
Functional disorders of the central nervous system (CNS) are diverse in terms of their etiology and symptoms, however, they can be quite debilitating. Many functional neurological disorders can progress to a level where pharmaceuticals and other early lines of treatment can no longer optimally treat the condition, therefore requiring surgical intervention. A variety of stereotactic and functional neurosurgical approaches exist, including deep brain stimulation, implantation, stereotaxic lesions, and radiosurgery, among others. Most techniques are invasive or minimally invasive forms of surgical intervention and require immense precision to effectively modulate CNS circuitry. Focused ultrasound (FUS) is a relatively new, safe, non-invasive neurosurgical approach that has demonstrated efficacy in treating a range of functional neurological diseases. It can function reversibly, through mechanical stimulation causing circuitry changes, or irreversibly, through thermal ablation at low and high frequencies respectively. In preliminary studies, magnetic resonance imaging-guided high-intensity focused ultrasound (MRgHIFU) has been shown to have long-lasting treatment effects in several disease types. The technology has been approved by the FDA and internationally for a number of treatment-resistant neurological disorders and currently clinical trials are underway for several other neurological conditions. In this review, the authors discuss the potential applications and emerging role of MRgHIFU in functional neurosurgery in the coming years.
Introduction
Purpose
Thermal ablation
Study Objective
To review and describe the mechanisms, current applications, and potential future roles of magnetic resonance-guided high-intensity focused ultrasound (MRgHIFU) in functional neurosurgery.
MRI or image guidance method
Magnetic resonance imaging-guided high-intensity focused ultrasound (MRgHIFU)
Outcomes and Safety
Summary of Outcomes
MRgHIFU produced durable therapeutic modulation of CNS circuitry, yielding long‑lasting clinical benefit in several treatment‑resistant functional neurological disorders via either reversible mechanical stimulation or irreversible thermal ablation. Successful parameters reported include MRgHIFU delivered at low frequencies for mechanical (reversible) stimulation and at high frequencies for thermal (irreversible) ablation.
Safety-related matter
The authors describe MRgHIFU as a relatively safe, non-invasive technique with fewer risks and side effects than invasive neurosurgical approaches and note it is FDA-approved for several conditions. However, they state additional human trials are needed to establish safety and efficacy for other indications.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Magnetic resonance imaging-guided high-intensity focused ultrasound (MRgHIFU); Manufacturer: None; Transducer aperture/diameter: None
Focal Characteristics
focal depth: None, focal length: None, aperture size: None
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