Department of Neurosurgery, Johns Hopkins University, Baltimore, MD, United States.
Vasoptic Medical, Inc., Baltimore, MD, United States.
Sci Rep. 2020 May 6;10(1):7614. doi: 10.1038/s41598-020-64492-5.
Cerebrovascular surgery can benefit from an intraoperative system that conducts continuous monitoring of cerebral blood flow (CBF). Such a system must be handy, non-invasive, and directly integrated into the surgical workflow. None of the currently available techniques, considered alone, meets all these criteria. Here, we introduce the SurgeON™ system: a newly developed non-invasive modular tool which transmits high-resolution Laser Speckle Contrast Imaging (LSCI) directly onto the eyepiece of the surgical microscope. In preclinical rodent and rabbit models, we show that this system enabled the detection of acute perfusion changes as well as the recording of temporal response patterns and degrees of flow changes in various microvascular settings, such as middle cerebral artery occlusion, femoral artery clipping, and complete or incomplete cortical vessel cautery. During these procedures, a real-time visualization of vasculature and CBF was available in high spatial resolution through the eyepiece as a direct overlay on the live morphological view of the surgical field. Upon comparison with indocyanine green angiography videoangiography (ICG-VA) imaging, also operable via SurgeON, we found that direct-LSCI can produce greater information than ICG-VA and that continuous display of data is advantageous for performing immediate LSCI-guided adjustments in real time.
脑血管外科学术中系统可受益于持续监测脑血流 (CBF) 的系统。此类系统必须便于使用、非侵入性且直接整合到手术流程中。目前没有一种单独使用的技术能满足所有这些标准。在此,我们引入 SurgeON™系统:一种新开发的非侵入性模块化工具,可将高分辨率激光散斑对比成像 (LSCI) 直接传输到手术显微镜的目镜上。在临床前啮齿动物和兔模型中,我们表明该系统能够检测急性灌注变化,以及记录各种微血管环境中的时间响应模式和血流变化程度,如大脑中动脉闭塞、股动脉夹闭以及完全或不完全皮质血管烧灼。在这些过程中,通过目镜以高空间分辨率实时可视化血管和 CBF,可以作为手术区域实时形态学视图的直接叠加。与可通过 SurgeON 操作的吲哚菁绿血管造影视频血管造影 (ICG-VA) 成像相比,我们发现直接 LSCI 可提供比 ICG-VA 更多的信息,并且连续显示数据有利于实时执行即时 LSCI 引导的调整。