Treatment-Specific Network Modulation of MRI-Guided Focused Ultrasound Thalamotomy in Essential Tremor : Modulation of ET-Related Network by MRgFUS Thalamotomy.
Authors: Xiong Y, Lin J, Bian X, Lu H, Zhou J, Zhang D, Pan L, Lou X
MRI-guided focused ultrasound (MRgFUS) thalamotomy is a novel, effective, and non-invasive treatment for essential tremor (ET). However, the network mediating MRgFUS in treating ET is not precisely known. This study aimed to identify the disease-specific network associated with the therapeutic effects of MRgFUS thalamotomy on ET and investigate its regional characteristics and genetic signatures to gain insights into the neurobiological mechanism of ET and MRgFUS thalamotomy. Twenty-four ET patients treated with MRgFUS thalamotomy underwent resting-state functional MRI at baseline and postoperative 6 months to measure the fractional amplitude of low-frequency fluctuation (fALFF). Ordinal trends canonical variates analysis (OrT/CVA) was performed on the within-subject fALFF data to identify the ET-related network. Genetic functional enrichment analysis was conducted to study the genetic signatures of this ET-related network using brain-wide gene expression data. OrT/CVA analysis revealed a significant ET-related network for which subject expression showed consistent increases after surgery. The treatment-induced increases in subject expression were significantly correlated with concurrent tremor improvement. This network was characterized by increased activity in the sensorimotor cortex and decreased activity in the posterior cingulate cortex. It was correlated with an expression map of a weighted combination genes enriched for mitochondria relevant ontology terms. This study demonstrates that the therapeutic effects of MRgFUS thalamotomy on ET are associated with modulating a distinct ET-related network which may be driven by mitochondria relevant neurobiological mechanism. Quantification of treatment-induced modulation on the ET-related network can provide an objective marker for evaluating the efficacy of MRgFUS thalamotomy.
Introduction
Purpose
Thermal ablation
Study Objective
To identify the disease-specific brain network mediating the therapeutic effects of MRgFUS thalamotomy in essential tremor and characterize its regional characteristics and genetic signatures.
Animal model / Human subject
Homo sapiens; strain: N/A; Patients: 24 essential tremor patients (age not specified, sex not specified); Healthy controls: 24 (16 males, 8 females), mean age 60.50 ± 11.17 years
Disease model
Essential tremor
MRI or image guidance method
MRI-guided (MRgFUS) using the ExAblate system in a 3-T MRI suite
Targeted brain region(s)
Thalamus
Outcomes and Safety
Summary of Outcomes
MRgFUS thalamotomy produced large, sustained clinical improvement in essential tremor (marked reductions in hand tremor and CRST scores) and induced network-level brain changes—namely increased activity in bilateral sensorimotor cortex and decreased activity in posterior cingulate cortex—with post-treatment increase in the ET-related network expression correlating with tremor reduction and linked to mitochondrial-related gene signatures. No multiple focused-ultrasound parameter variants were tested (all patients received left Vim MRgFUS thalamotomy).
Duration of biological effect
6 months
Safety-related matter
The paper does not report any safety issues or adverse effects related to MRgFUS thalamotomy; no adverse events or complications are mentioned.
Brain Region
Ultrasound Parameters
Ultrasound instrument
ExAblate (InSightec, Tirat Carmel, Israel); Transducer aperture/diameter: None
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Single session
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