Bubrick Ellen J, McDannold Nathan J, White Phillip J
Department of Neurology, Brigham and Women's Hospital, Boston, MA, USA.
Department of Radiology, Brigham and Women's Hospital, Boston, MA, USA.
Epilepsy Curr. 2022 Mar 29;22(3):156-160. doi: 10.1177/15357597221086111. eCollection 2022 Jun.
Patients with drug-resistant epilepsy (DRE) who are not surgical candidates have unacceptably few treatment options. Benefits of implanted electrostimulatory devices are still largely palliative, and many patients are not eligible to receive them. A new form of neuromodulation, low intensity focused ultrasound (LIFUS), is rapidly emerging, and has many potential intracranial applications. LIFUS can noninvasively target tissue with a spatial distribution of highly focused acoustic energy that ensures a therapeutic effect only at the geometric focus of the transducer. A growing literature over the past several decades supports the safety of LIFUS and its ability to noninvasively modulate neural tissue in animals and humans by positioning the beam over various brain regions to target motor, sensory, and visual cortices as well as frontal eye fields and even hippocampus. Several preclinical studies have demonstrated the ability of LIFUS to suppress seizures in epilepsy animal models without damaging tissue. Resection after sonication to the antero-mesial lobe showed no pathologic changes in epilepsy patients, and this is currently being trialed in serial treatments to the hippocampus in DRE. Low intensity focused ultrasound is a promising, novel, incisionless, and radiation-free alternative form of neuromodulation being investigated for epilepsy. If proven safe and effective, it could be used to target lateral cortex as well as deep structures without causing damage, and is being studied extensively to treat a wide variety of neurologic and psychiatric disorders including epilepsy.
对于不适合手术的耐药性癫痫(DRE)患者而言,可用的治疗方案少得令人难以接受。植入式电刺激设备的益处很大程度上仍只是缓解症状,而且许多患者没有资格接受这类设备治疗。一种新的神经调节形式——低强度聚焦超声(LIFUS)正在迅速兴起,并且有许多潜在的颅内应用。LIFUS能够以高度聚焦的声能空间分布非侵入性地靶向组织,从而确保仅在换能器的几何焦点处产生治疗效果。在过去几十年里,越来越多的文献支持LIFUS的安全性以及它通过将波束定位在不同脑区以靶向运动、感觉和视觉皮层以及额叶眼区甚至海马体,从而在动物和人类中对神经组织进行非侵入性调节的能力。多项临床前研究已经证明LIFUS能够在不损伤组织的情况下抑制癫痫动物模型中的癫痫发作。对癫痫患者进行前内侧叶超声处理后切除组织,未发现病理变化,目前正在对DRE患者的海马体进行系列治疗试验。低强度聚焦超声是一种有前景的、新型的、无创且无辐射的神经调节替代形式,正在针对癫痫进行研究。如果被证明安全有效,它可用于靶向外侧皮层以及深部结构而不造成损伤,并且正在被广泛研究用于治疗包括癫痫在内的多种神经和精神疾病。