Nguyen John Quan Minh, McWade Melanie, Thomas Giju, Beddard Bryce T, Herington Jennifer L, Paria Bibhash C, Schwartz Herbert S, Halpern Jennifer L, Holt Ginger E, Mahadevan-Jansen Anita
Vanderbilt University, Biophotonics Center, Nashville, Tennessee, United States.
Vanderbilt University, Department of Pediatrics, Nashville, Tennessee, United States.
J Med Imaging (Bellingham). 2018 Apr;5(2):021220. doi: 10.1117/1.JMI.5.2.021220. Epub 2018 Mar 2.
Fluorescence imaging is a well-established optical modality that has been used to localize and track fluorophores and has demonstrated great potential for surgical guidance. Despite the variety of fluorophores currently being researched, many existing intraoperative fluorescence imaging systems are specifically designed for a limited number of applications. We present a modular wide-field fluorescence overlay tissue imaging system for intraoperative surgical guidance that is comprised of commercially available standardized components. Its modular layout allows for the accommodation of a broad range of fluorophores, fields of view (FOV), and spatial resolutions while maintaining an integrated portable design for intraoperative use. Measurements are automatic and feature a real-time projection overlay technique that intuitively displays fluorescence maps directly onto a [Formula: see text] FOV from a working distance of 35 cm. At a 20-ms exposure time, [Formula: see text] samples of indocyanine green could be measured with high signal-to-noise ratio and was later tested in an mouse model before finally being demonstrated for intraoperative autofluorescence imaging of human soft tissue sarcoma margins. The system's modular design and ability to enable naked-eye visualization of wide-field fluorescence allow for the flexibility to adapt to numerous clinical applications and can potentially extend the adoption of fluorescence imaging for intraoperative use.
荧光成像是一种成熟的光学模态,已被用于定位和追踪荧光团,并在手术引导方面显示出巨大潜力。尽管目前正在研究多种荧光团,但许多现有的术中荧光成像系统是专门为有限数量的应用而设计的。我们提出了一种用于术中手术引导的模块化宽视野荧光叠加组织成像系统,该系统由市售的标准化组件组成。其模块化布局允许容纳多种荧光团、视野(FOV)和空间分辨率,同时保持用于术中使用的集成便携式设计。测量是自动的,并具有实时投影叠加技术,可从35厘米的工作距离将荧光图直观地直接显示在[公式:见正文]视野上。在20毫秒的曝光时间下,可以以高信噪比测量[公式:见正文]吲哚菁绿样本,随后在小鼠模型中进行测试,最终用于人体软组织肉瘤边缘的术中自发荧光成像演示。该系统的模块化设计以及实现宽视野荧光裸眼可视化的能力,使其具有适应众多临床应用的灵活性,并有可能扩大荧光成像在术中的应用。