Department of Neurological Surgery, University of Virginia Health System, Charlottesville, Virginia 22908, USA.
J Neurosurg. 2013 May;118(5):1035-45. doi: 10.3171/2012.12.JNS121095. Epub 2013 Jan 18.
Intracerebral hemorrhage (ICH) is a major cause of death and disability throughout the world. Surgical techniques are limited by their invasive nature and the associated disability caused during clot removal. Preliminary data have shown promise for the feasibility of transcranial MR-guided focused ultrasound (MRgFUS) sonothrombolysis in liquefying the clotted blood in ICH and thereby facilitating minimally invasive evacuation of the clot via a twist-drill craniostomy and aspiration tube.
In an in vitro model, the following optimum transcranial sonothrombolysis parameters were determined: transducer center frequency 230 kHz, power 3950 W, pulse repetition rate 1 kHz, duty cycle 10%, and sonication duration 30 seconds. Safety studies were performed in swine (n = 20). In a swine model of ICH, MRgFUS sonothrombolysis of 4 ml ICH was performed. Magnetic resonance imaging and histological examination demonstrated complete lysis of the ICH without additional brain injury, blood-brain barrier breakdown, or thermal necrosis due to sonothrombolysis. A novel cadaveric model of ICH was developed with 40-ml clots implanted into fresh cadaveric brains (n = 10). Intracerebral hemorrhages were successfully liquefied (> 95%) with transcranial MRgFUS in a highly accurate fashion, permitting minimally invasive aspiration of the lysate under MRI guidance.
The feasibility of transcranial MRgFUS sonothrombolysis was demonstrated in in vitro and cadaveric models of ICH. Initial in vivo safety data in a swine model of ICH suggest the process to be safe. Minimally invasive treatment of ICH with MRgFUS warrants evaluation in the setting of a clinical trial.
脑出血(ICH)是全世界范围内导致死亡和残疾的主要原因。手术技术受到其侵袭性和在清除血栓过程中引起的相关残疾的限制。初步数据表明,经颅磁共振引导聚焦超声(MRgFUS)声溶栓在使 ICH 中的血凝块液化并通过扭转钻颅造口术和抽吸管微创清除血栓方面具有可行性。
在体外模型中,确定了以下最佳经颅声溶栓参数:换能器中心频率 230 kHz,功率 3950 W,脉冲重复率 1 kHz,占空比 10%,声处理持续时间 30 秒。在猪(n = 20)中进行了安全性研究。在 ICH 的猪模型中,对 4 ml ICH 进行了 MRgFUS 声溶栓。磁共振成像和组织学检查显示,ICH 完全溶解,没有因声溶栓而导致额外的脑损伤、血脑屏障破裂或热坏死。开发了一种新的 ICH 尸体模型,将 40ml 血块植入新鲜的尸体大脑中(n = 10)。通过经颅 MRgFUS 以高度精确的方式成功地使脑出血液化(> 95%),从而可以在 MRI 引导下微创抽吸溶解物。
在 ICH 的体外和尸体模型中证明了经颅 MRgFUS 声溶栓的可行性。在 ICH 的猪模型中的初步体内安全性数据表明该过程是安全的。MRgFUS 微创治疗 ICH 值得在临床试验中进行评估。