Focused ultrasound thalamotomy for essential tremor in octogenarians

J Neurosurg 145:27–35, 2026

This multicenter retrospective cohort study evaluates unilateral MR-guided high-intensity focused ultrasound (MRgHIFU) thalamotomy targeting the ventral intermediate nucleus (VIM) for medically refractory essential tremor in patients aged 80 years and older. Results from 129 patients show marked reductions in tremor and disability scores, high patient-reported relief, and generally mild, transient adverse events.

Age-stratified analyses found comparable tremor benefit across 80–84 and ≥85 year groups, modest gait changes, and low rates of serious complications, supporting MRgHIFU as a noninvasive therapeutic option for elderly patients ineligible for deep brain stimulation.

Objective Evaluate safety and efficacy of unilateral MRgHIFU thalamotomy targeting the VIM for medication-refractory essential tremor in patients aged ≥ 80 years.

Design Retrospective, multicenter cohort of consecutive patients treated between 2016 and 2023 at five academic centers, with assessments at baseline, immediately posttreatment, and 3 months.

Primary outcome Tremor severity measured by TETRAS; primary endpoint was change from baseline to follow-up.

Efficacy In 129 patients (mean age 84), mean TETRAS improved by 9.2 points at 3 months (p < 0.001), with significant improvement also seen on CRST and mean patient-reported tremor relief of 81%.

Gait effects DGI gait scores improved modestly overall but were not significant in the ≥ 85 years subgroup.

Safety Adverse events were generally mild/transient; nonsurgical adverse events occurred in 1.6% of patients.

Age-stratified results Treatment response and adverse event profiles did not significantly differ between ages 80–84 and ≥ 85 years.

Conclusion Unilateral MRgHIFU VIM thalamotomy provides a low-complication, noninvasive option that significantly improves tremor and disability in adults aged ≥ 80 years, supporting consideration for those ineligible for invasive procedures like DBS.

Brain Bleeding Associated With Cavitation During Focused Ultrasound Ablation

Neurosurgery 97:1215–1218, 2025

This report presents two cases of symptomatic intracranial hemorrhage occurring during MR-guided focused ultrasound (MRgFUS) ablation for movement disorders, associated with persistent cavitation activity despite power reductions. Both patients developed contralateral motor deficits after sonications; one recovered substantially, the other remained significantly disabled, and imaging confirmed hematomas at the targeted sites.

The authors review procedural variables, cavitation mechanisms, mitigation strategies, and institutional experience (~500 cases, 0.4% incidence), recommending a conservative approach—including treatment termination—when uncontrollable cavitation arises, and urging further study of patient- and system-related risk factors to minimize bleeding risk.

• MRgFUS Complication: Symptomatic brain bleeding can occur during magnetic resonance–guided focused ultrasound (MRgFUS) ablation for movement disorders, although it is a rare complication (approximately 0.4% incidence in a center with over 500 cases).

• Cavitation Risk: Persistent cavitation—microbubble formation and collapse during sonication—is strongly associated with the occurrence of brain hemorrhage in MRgFUS procedures, even when standard mitigation steps (such as lowering power) are taken.

• Case Outcomes: In two reported cases, both patients developed contralateral motor weakness and brain hematoma following persistent cavitation during MRgFUS; one patient recovered functional independence, while the other remained severely disabled.

• Technical Mitigation: When cavitation is detected, the recommended strategy is to reduce sonication power and, if needed, increase duration to maintain energy delivery; however, if uncontrollable cavitation persists, treatment termination should be considered.

• Patient Factors: Bleeding can occur even in patients without traditional vascular risk factors, suggesting procedural factors like cavitation may be more critical than patient comorbidities in these cases.

• Incidence and Reporting: Over 20,000 MRgFUS procedures have been performed globally with very few reports of symptomatic brain bleeding, highlighting the importance of continued reporting to refine safety practices.

• Clinical Implication: MRgFUS is an effective and generally safe treatment for movement disorders, but it is not without risk; both clinicians and patients should be aware that severe complications, though rare, are possible.

• Best Practice: A conservative approach is advised if cavitation cannot be controlled during MRgFUS, and further study into both technical and patient-related risk factors for hemorrhage is warranted.

Comparison of Dentatorubrothalamic Tractography Methods Based on the Anatomy of the Rubral Wing

Operative Neurosurgery 27:56–64, 2024

Precise localization of the dentatorubrothalamic (DRT) tract can facilitate anatomic targeting in MRI-guided high-intensity focused ultrasound (HIFU) thalamotomy and thalamic deep brain stimulation for tremor. The anatomic segment of DRT fibers adjacent to the ventral intermediate nucleus of the thalamus (VIM), referred to as the rubral wing (RW), may be directly visualized on the fast gray matter acquisition T1 inversion recovery. We compared reproducibility, lesion overlap, and clinical outcomes when reconstructing the DRT tract using a novel anatomically defined RW region of interest, DRT-RW, to an existing tractography method based on the posterior subthalamic area region of interest (DRT-PSA).

METHODS: We reviewed data of 23 patients with either essential tremor (n = 18) or tremor-predominant Parkinson’s disease (n = 5) who underwent HIFU thalamotomy, targeting the VIM. DRT tractography, ipsilateral to the lesion, was created based on either DRT-PSA or DRT-RW. Volume sections of each tract were created and dice similarity coefficients were used to measure spatial overlap between the 2 tractographies. Post-HIFU lesion size and location (on postoperative T2 MRI) was correlated with tremor outcomes and side effects for both DRT tractography methods and the RW itself.

RESULTS: DRT-PSA passed through the RW and DRT-RW intersected with the ROIs of the DRT-PSA in all 23 cases. A higher percentage of the RW was ablated in patients who achieved tremor control (18.9%, 95% CI 15.1, 22.7) vs those without tremor relief (6.7%, 95% CI% 0, 22.4, P= .017). In patients with tremor control 6 months postoperatively (n= 12), those with side effects (n = 6) had larger percentages of their tracts ablated in comparison with those without side effects in both DRT-PSA (44.8, 95% CI 31.8, 57.8 vs 24.2%, 95% CI 12.4, 36.1, P = .025) and DRT-RW (35.4%, 95% CI 21.5, 49.3 vs 21.7%, 95% CI 12.7, 30.8, P = .030).

CONCLUSION: Tractography of the DRT could be reconstructed by direct anatomic visualization of the RW on fast gray matter acquisition T1 inversion recovery-MRI. Anatomic planning is expected to be quicker, more reproducible, and less operator-dependent.

A novel high-precision fiber tractography for nuclear localization in transcranial magnetic resonance–guided focused ultrasound surgery

J Neurosurg 140:1471–1481, 2024

In transcranial MR-guided focused ultrasound (TcMRgFUS), fiber tractography using diffusion tensor imaging (DTI) has been proposed as a direct method to identify the ventral intermediate nucleus (Vim), the ventral caudal nucleus (Vc), and the pyramidal tract (PT). However, the limitations of the DTI algorithm affect the accuracy of visualizing anatomical structures due to its low-quality fiber tractography, whereas the application of the generalized q-sampling imaging (GQI) algorithm enables the visualization of high-quality fiber tracts, offering detailed insights into the spatial distribution of motor cortex fibers. This retrospective study aimed to investigate the usefulness of high-precision fiber tractography using the GQI algorithm as a planning image in TcMRgFUS to achieve favorable clinical outcomes.

METHODS This study included 20 patients who underwent TcMRgFUS. The Clinical Rating Scale for Tremor (CRST) scores and MR images were evaluated pretreatment and at 24 hours and 3–6 months after treatment. Cases were classified based on the presence and adversity of adverse events (AEs): no AEs, mild AEs without additional treatment, and severe AEs requiring prolonged hospitalization. Fiber tractography of the Vim, Vc, and PT was visualized using the DTI and GQI algorithm. The overlapping volume between Vim fibers and the lesion was measured, and correlation analysis was performed. The relationship between AEs and the overlapping volume of the Vc and PT fibers within the lesions was examined. The cutoff value to achieve a favorable clinical outcome and avoid AEs was determined using receiver operating characteristic curve analysis.

RESULTS All patients showed improvement in tremors 24 hours after treatment, with 3 patients experiencing mild AEs and 1 patient experiencing severe AEs. At the 3- to 6-month follow-up, 5 patients experienced recurrence, and 2 patients had persistent mild AEs. Although fiber visualization in the motor cortex using the DTI algorithm was insufficient, the GQI algorithm enabled the visualization of significantly higher-quality fibers. A strong correlation was observed between the overlapping volume that intersects the lesion and Vim fibers and the degree of tremor improvement (r = 0.72). Higher overlapping volumes of Vc and PT within the lesion were associated with an increased likelihood of AEs (p < 0.05); the cutoff volume of Vim fibers within the lesion for a favorable clinical outcome was 401 mm 3 , while the volume of Vc and PT within the lesion to avoid AEs was 99 mm 3 .

CONCLUSIONS This pilot study suggests that incorporating the high-precision GQI algorithm for fiber tractography as a planning imaging technique for TcMRgFUS has the potential to enhance targeting precision and achieve favorable clinical outcomes.