Intelligent Photonic IoT Research Center, Korea Photonics Technology Institute, Gwangju 61007, Korea.
Department of Biomedical Science & Engineering, Gwangju Institute of Science and Technology, Gwangju 61005, Korea.
Sensors (Basel). 2022 Jul 26;22(15):5597. doi: 10.3390/s22155597.
We developed a single-camera-based near-infrared (NIR) fluorescence imaging device using indocyanine green (ICG) NIR fluorescence contrast agents for image-induced surgery. In general, a fluorescent imaging system that simultaneously provides color and NIR images uses two cameras, which is disadvantageous because it increases the imaging head of the system. Recently, a single-camera-based NIR optical imaging device with quantum efficiency partially extended to the NIR region was developed to overcome this drawback. The system used RGB_NIR filters for camera sensors to provide color and NIR images simultaneously; however, the sensitivity and resolution of the infrared images are reduced by 1/4, and the exposure time and gain cannot be set individually when acquiring color and NIR images. Thus, to overcome these shortcomings, this study developed a compact fluorescent imaging system that uses a single camera with two complementary metal-oxide semiconductor (CMOS) image sensors. Sensitivity and signal-to-background ratio were measured according to the concentrations of ICG solution, exposure time, and camera gain to evaluate the performance of the imaging system. Consequently, the clinical applicability of the system was confirmed through the toxicity analysis of the light source and in vivo testing.
我们开发了一种基于单相机的近红外(NIR)荧光成像设备,使用吲哚菁绿(ICG)NIR 荧光对比剂进行图像引导手术。通常,同时提供彩色和 NIR 图像的荧光成像系统使用两个相机,这是不利的,因为它增加了系统的成像头。最近,开发了一种基于单相机的 NIR 光学成像设备,其量子效率部分扩展到 NIR 区域,以克服这一缺点。该系统使用 RGB_NIR 滤波器用于相机传感器,以同时提供彩色和 NIR 图像;然而,红外图像的灵敏度和分辨率降低了 1/4,并且在获取彩色和 NIR 图像时无法单独设置曝光时间和增益。因此,为了克服这些缺点,本研究开发了一种使用单个相机和两个互补金属氧化物半导体(CMOS)图像传感器的紧凑型荧光成像系统。根据 ICG 溶液的浓度、曝光时间和相机增益来测量灵敏度和信号背景比,以评估成像系统的性能。因此,通过光源的毒性分析和体内测试确认了该系统的临床适用性。