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Profiling functional networks identify activation of corticostriatal connectivity in ET patients after MRgFUS thalamotomy.

Authors: Lin J, Kang X, Zhou J, Zhang D, Hu J, Lu H, Pan L, Lou X

MR-guided focused ultrasound (MRgFUS) thalamotomy is a novel and effective treatment for medication-refractory tremor in essential tremor (ET), but how the brain responds to this deliberate lesion is not clear. The current study aimed to evaluate the immediate and longitudinal alterations of functional networks after MRgFUS thalamotomy. We retrospectively obtained preoperative and postoperative 30-day, 90-day, and 180-day data of 31 ET patients subjected with MRgFUS thalamotomy from 2018 to 2020. Their archived resting-state functional MRI data were used for functional network comparison as well as graph-theory metrics analysis. Both partial least squares (PLS) regression and linear regression were conducted to associate functional features to tremor symptoms. MRgFUS thalamotomy dramatically abolished tremors, while global functional network only sustained immediate fluctuation within one week after the surgery. Network-based statistics have identified a long-term enhanced corticostriatal subnetwork by comparison between 180-day and preoperative data (P = 0.019). Within this subnetwork, network degree, global efficiency and transitivity were significantly recovered in ET patients right after MRgFUS thalamotomy compared to the pre-operative timepoint (P < 0.05), as well as hemisphere lateralization (P < 0.001). The PLS main component significantly accounted for 33.68 % and 34.16 % of the total variances of hand tremor score and clinical rating scale for tremor (CRST)-total score (P = 0.037 and 0.027). Network transitivity of this subnetwork could serve as a reliable biomarker for hand tremor score control prediction at 180-day after the surgery (β = 2.94, P = 0.03). MRgFUS thalamotomy promoted corticostriatal connectivity activation correlated with tremor improvement in ET patient after MRgFUS thalamotomy.

Introduction

Purpose Thermal ablation
Study Objective To evaluate the immediate and longitudinal alterations of brain functional networks following MR-guided focused ultrasound (MRgFUS) thalamotomy in patients with essential tremor.
Animal model / Human subject Homo sapiens (human patients with essential tremor, n=31; matched healthy controls n=31); strain: N/A; age: None (matched between groups); sex: mixed (both sexes, matched)
Disease model Essential tremor
MRI or image guidance method MR-guided focused ultrasound (ExAblate Neuro) in a 3T MRI suite targeting the left Vim with head fixation; initial low-power sonications adjusted by real-time patient feedback, then increased energy to ablate target tissue to ~55–60°C.
Targeted brain region(s) Thalamus

Outcomes and Safety

Summary of Outcomes Unilateral MR-guided focused ultrasound (MRgFUS) thalamotomy rapidly and durably abolished hand tremor in medication‑refractory essential tremor patients and produced long‑term enhancement of a corticostriatal functional subnetwork (increased network degree, global efficiency, and transitivity), with subnetwork transitivity predicting 180‑day tremor improvement.
Duration of biological effect 180 days
Safety-related matter The paper mentions potential immediate postoperative effects of MRgFUS thalamotomy such as local brain edema, damage to distant nuclei, and transient blood–brain barrier openings and neuromodulation from ultrasound, advising caution about early postoperative functional studies. No specific clinical adverse events or long-term safety issues were reported in the cohort.

Brain Region

Ultrasound Parameters

Ultrasound instrument ExAblate Neuro focused ultrasound system (InSightec, Israel); transducer aperture/diameter: None
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency Single session

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