Davidson Benjamin, Lozano Andres M
Division of Neurosurgery, Department of Surgery, University of Toronto, Toronto, Canada.
Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, Canada.
Expert Rev Med Devices. 2025 May;22(5):467-475. doi: 10.1080/17434440.2025.2489493. Epub 2025 Apr 17.
Magnetic resonance-guided focused ultrasound (MRgFUS) has emerged as a leading noninvasive therapy for tremor, offering a precise, lesion-based alternative to deep brain stimulation (DBS) and traditional lesioning techniques. By using phased ultrasound arrays to focus energy at intracranial targets, MRgFUS allows for real-time visualization and monitoring, improving safety and efficacy. Initially developed for essential tremor (ET), MRgFUS-VIM-thalamotomy has gained widespread acceptance and is now a first-line option for tremor-dominant Parkinson's disease (TDPD) and other tremor syndromes.
This review discusses the fundamental physics of focused ultrasound, key anatomical targets, and the clinical application of MRgFUS thalamotomy, pallidotomy, and subthalamotomy. Skull density ratio (SDR) and energy efficiency are highlighted as crucial factors affecting treatment outcomes. The evolution of MRgFUS as a bilateral treatment, along with the exploration of novel targets such as the pallidothalamic tract, is examined. Additionally, we discuss advancements in FUS neuromodulation, which could complement lesioning by providing temporary or reversible symptom relief.
MRgFUS is poised to further revolutionize tremor treatment with frameless technology, staged bilateral procedures, and the integration of neuromodulation. Future developments may allow for precise, adaptive therapies that enhance both efficacy and patient experience.
磁共振引导聚焦超声(MRgFUS)已成为治疗震颤的领先无创疗法,为深部脑刺激(DBS)和传统毁损技术提供了一种基于病灶的精确替代方案。通过使用相控超声阵列将能量聚焦于颅内靶点,MRgFUS实现了实时可视化和监测,提高了安全性和有效性。最初研发用于特发性震颤(ET),MRgFUS丘脑腹中间核毁损术已获得广泛认可,现在是震颤为主型帕金森病(TDPD)和其他震颤综合征的一线治疗选择。
本综述讨论了聚焦超声的基本物理学原理、关键解剖靶点以及MRgFUS丘脑毁损术、苍白球毁损术和丘脑底核毁损术的临床应用。颅骨密度比(SDR)和能量效率被强调为影响治疗效果的关键因素。研究了MRgFUS作为双侧治疗方法的发展历程,以及对诸如苍白球丘脑束等新靶点的探索。此外,我们还讨论了聚焦超声神经调节的进展,它可以通过提供临时或可逆的症状缓解来补充毁损治疗。
MRgFUS有望通过无框架技术、分期双侧手术以及神经调节的整合进一步彻底改变震颤治疗。未来的发展可能会实现精确的适应性治疗,提高疗效并改善患者体验。