A 120 dB, Asynchronous, Time-Domain, Multispectral Imager for Near-Infrared Fluorescence Image-Guided Surgery

S. Blair, Missael Garcia, Nan Cui, V. Gruev
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引用次数: 4

Abstract

As surgery has become the standard-of-care for cancer, surgeons have been left underequipped to identify tumors in the operating room, causing many operations to end in positive margins and necessitating secondary treatments to remove remaining tumor tissue. Near-infrared fluorescence image-guided surgery utilizes near-infrared fluorescent markers and near-infrared sensitive cameras to highlight cancerous tissues. Unfortunately, state-of-the-art imaging systems are unable to handle the high dynamic range between strong surgical lighting and weak fluorescent emission and suffer from temperature-dependent co-registration error. To provide a cost-effective and space-efficient imaging system with sufficient dynamic range and no co-registration error, we have developed a single-chip snapshot multispectral imaging system that provides four channels across the visible and near-infrared spectra. By monolithically integrating an asynchronous time-domain image sensor and pixelated interference filters, we have achieved a dynamic range of 120 dB without co-registration error. The imager can detect less than 100 nM of the FDA-approved fluorescent dye indocyanine green under surgical lighting conditions, making it a promising candidate for image-guided surgery clinical trials.
用于近红外荧光成像引导手术的120 dB,异步,时域,多光谱成像仪
由于手术已经成为癌症治疗的标准,外科医生在手术室里没有足够的设备来识别肿瘤,导致许多手术以阳性边缘结束,需要二次治疗来切除剩余的肿瘤组织。近红外荧光图像引导手术利用近红外荧光标记物和近红外敏感相机来突出癌组织。不幸的是,最先进的成像系统无法处理强手术照明和弱荧光发射之间的高动态范围,并遭受温度依赖的共配准误差。为了提供具有足够动态范围且无共配准误差的经济高效的成像系统,我们开发了一种单芯片快照多光谱成像系统,该系统提供了跨越可见和近红外光谱的四个通道。通过单片集成异步时域图像传感器和像素化干扰滤波器,我们实现了120 dB的动态范围,没有共配准误差。该成像仪可以在手术照明条件下检测到小于100 nM的fda批准的荧光染料吲哚菁绿,使其成为图像引导手术临床试验的有希望的候选者。
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