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Noncontact recognition of fluorescently labeled objects in deep tissue via a novel optical light beam arrangement

机译:通过新型光束布置对深层组织中的荧光标记物体进行非接触式识别

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摘要

To date, few optical imaging systems are available in clinical practice to perform noninvasive measurements transcutaneously. Instead, functional imaging is performed using ionizing radiation or intense magnetic fields in most cases. The applicability of fluorescence imaging (e.g., for the detection of fluorescently labeled objects, such as tumors) is limited due to the restricted tissue penetration of light and the required long exposure time. Thus, the development of highly sensitive and easily manageable instruments is necessary to broaden the utility of optical imaging. To advance these developments, an improved fluorescence imaging system was designed in this study that operates on the principle of noncontact laser-induced fluorescence and enables the detection of fluorescence from deeper tissue layers as well as real-time imaging. The high performance of the developed optical laser scanner results from the combination of specific point illumination, an intensified charge-coupled device (ICCD) detector with a novel light trap, and a filtering strategy. The suitability of the laser scanner was demonstrated in two representative applications and an in vivo evaluation. In addition, a comparison with a planar imaging system was performed. The results show that the exposure time with the developed laser scanner can be reduced to a few milliseconds during measurements with a penetration depth of up to 32 mm. Due to these short exposure times, real-time fluorescence imaging can be easily achieved. The ability to measure fluorescence from deep tissue layers enables clinically relevant applications, such as the detection of fluorescently labeled malignant tumors.
机译:迄今为止,在临床实践中很少有光学成像系统可用于经皮执行无创测量。而是在大多数情况下使用电离辐射或强磁场执行功能成像。由于光的组织穿透受限和所需的长曝光时间,荧光成像的适用性(例如,用于检测荧光标记的物体,例如肿瘤)受到限制。因此,必须开发高度灵敏且易于管理的仪器,以扩大光学成像的实用性。为了推进这些发展,在本研究中设计了一种改进的荧光成像系统,该系统以非接触激光诱导的荧光原理工作,并能够检测更深组织层的荧光并进行实时成像。先进的光学激光扫描仪的高性能归功于特定点照明,具有新型光阱的增强型电荷耦合器件(ICCD)检测器以及滤波策略的结合。激光扫描仪的适用性在两个代表性应用和体内评估中得到了证明。另外,与平面成像系统进行了比较。结果表明,开发的激光扫描仪的曝光时间可在测量过程中减少至几毫秒,穿透深度最大为32 mm。由于这些短的曝光时间,可以容易地实现实时荧光成像。测量来自深部组织层的荧光的能力可实现临床相关应用,例如检测荧光标记的恶性肿瘤。

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