Division of Hepatobiliary Surgery, Department of General Surgery, Carolinas Medical Center, Charlotte, NC 28204, USA.
HPB (Oxford). 2011 Mar;13(3):185-91. doi: 10.1111/j.1477-2574.2010.00269.x. Epub 2011 Jan 27.
This study aimed to evaluate a novel three-dimensional ultrasound (US) guidance system for use in hepatic microwave ablation (MWA).
An in vitro assessment was performed in which users with different degrees of experience were evaluated for accuracy in targeting phantom lesions embedded in agar using US alone, or US in conjunction with the InVision™ System (IVS). An eight-patient pilot trial of the IVS was then performed in the setting of open hepatic MWA, in which lesions would otherwise have been targeted with conventional US.
In vitro studies demonstrated that the IVS significantly improved targeting accuracy at all levels of operator experience (novice, beginner and expert). In the human trial, a total of 31 tumours were targeted and all lesions were hit in one pass, as assessed by independent US image observations. There were no adverse operative events; however, there was minor line-of-sight interference with the infra-red tracking mechanism when some lesions high on the dome of the liver were targeted.
The IVS significantly increased the accuracy of complex targeting procedures of phantom lesions and enhanced targeting in an eight-patient clinical pilot study. During the accrual phase of this pilot study, the development of improved non-optical tracking hardware obviated the requirement to maintain a direct line of sight. The trial was then halted prematurely in order to focus on the application of the IVS utilizing this non-optical modality.
本研究旨在评估一种新型三维超声(US)引导系统在肝部微波消融(MWA)中的应用。
进行了一项体外评估,评估了不同经验水平的使用者使用单独 US 或结合 InVision™ System(IVS)对琼脂中嵌入的幻影病变进行靶向定位的准确性。然后,在开放式肝 MWA 环境中对 IVS 进行了八例患者的初步试验,否则这些病变将使用常规 US 进行靶向定位。
体外研究表明,IVS 在所有操作员经验水平(新手、初学者和专家)上均显著提高了靶向准确性。在人体试验中,总共靶向了 31 个肿瘤,所有病变均在一次通过中命中,这是通过独立的 US 图像观察评估的。没有不良手术事件;然而,当靶向肝脏穹顶高处的一些病变时,红外跟踪机制存在轻微的视线干扰。
IVS 显著提高了对幻影病变的复杂靶向程序的准确性,并在八项患者临床初步研究中增强了靶向定位。在该初步研究的入组阶段,改进的非光学跟踪硬件的开发消除了保持直接视线的要求。然后提前停止了试验,以便专注于使用这种非光学模式应用 IVS。