Gao Shengkui, Mondal Suman B, Zhu Nan, Liang RongGuang, Achilefu Samuel, Gruev Viktor
Washington University in St. Louis, Computer Science and Engineering Department, St. Louis, Missouri 63130, United States.
Washington University in St. Louis, Department of Radiology, St. Louis, Missouri 63130, United States.
J Biomed Opt. 2015 Jan;20(1):016018. doi: 10.1117/1.JBO.20.1.016018.
Near infrared (NIR) fluorescence imaging has shown great potential for various clinical procedures, including intraoperative image guidance. However, existing NIR fluorescence imaging systems either have a large footprint or are handheld, which limits their usage in intraoperative applications. We present a compact NIR fluorescence imaging system (NFIS) with an image overlay solution based on threshold detection, which can be easily integrated with a goggle display system for intraoperative guidance. The proposed NFIS achieves compactness, light weight, hands-free operation, high-precision superimposition, and a real-time frame rate. In addition, the miniature and ultra-lightweight light-emitting diode tracking pod is easy to incorporate with NIR fluorescence imaging. Based on experimental evaluation, the proposed NFIS solution has a lower detection limit of 25 nM of indocyanine green at 27 fps and realizes a highly precise image overlay of NIR and visible images of mice in vivo. The overlay error is limited within a 2-mm scale at a 65-cm working distance, which is highly reliable for clinical study and surgical use.
近红外(NIR)荧光成像在包括术中图像引导在内的各种临床操作中显示出巨大潜力。然而,现有的近红外荧光成像系统要么占地面积大,要么是手持式的,这限制了它们在术中应用中的使用。我们提出了一种紧凑的近红外荧光成像系统(NFIS),其具有基于阈值检测的图像叠加解决方案,该系统可轻松与护目镜显示系统集成用于术中引导。所提出的NFIS实现了紧凑性、轻量化、免手持操作、高精度叠加以及实时帧率。此外,微型超轻型发光二极管跟踪吊舱易于与近红外荧光成像相结合。基于实验评估,所提出的NFIS解决方案在27帧/秒时对吲哚菁绿的检测下限为25 nM,并实现了对小鼠体内近红外图像和可见光图像的高精度图像叠加。在65厘米的工作距离下,叠加误差限制在2毫米范围内,这对于临床研究和手术使用来说是高度可靠的。