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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Advancements in infrared imaging platforms: complementary imaging systems and contrast agents
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Advancements in infrared imaging platforms: complementary imaging systems and contrast agents

机译:红外成像平台的进步:互补成像系统和造影剂

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摘要

Recent advancements in the infrared (IR) imaging system design as well as the co-development of compatible contrast agents have facilitated the potential application of fluorescence imaging systems for deep tissue diagnostics and real-time vasculature visualization for intraoperative surgical guidance. Compared to conventional imaging techniques that achieve superior tissue penetration depth through the use of high energy or ionizing radiation sources, complementary chemical compounds, also known as imaging probes or contrast agents, are required to enable enhancement of the imaging sensitivity required for improved image quality in the IR fluorescence imaging technique. Therefore, using a systems-level approach to plan research efforts where the requirements of the imaging setup are considered at the start of the contrast agent design to effectively improve detection sensitivity would reduce the technical entry barrier for the adoption of new technologies. In this paper, we highlight (1) the recent advancements and key operating differences in the reported IR imaging systems, and (2) the recent progress in creating biocompatible IR-emitting contrast agents as well as improving detection sensitivity using targeting agents. The ability to maximize the full benefits and performance of any IR imaging platform is highly reliant on the thorough understanding of the requirements of each imaging platform and the physical characteristics of the complementary contrast agents.
机译:红外(IR)成像系统设计的最新进展以及兼容造影剂的共同发展已经促进了荧光成像系统对术中外科指导的深组织诊断和实时血管系统可视化的潜在应用。与通过使用高能或电离辐射源实现优异的组织穿透深度的传统成像技术相比,还需要称为成像探针或造影剂的互补化学化合物,以实现改善图像质量所需的成像灵敏度红外荧光成像技术。因此,利用系统级方法来规划研究工作,其中在造影剂设计的开始时考虑了成像设置的要求,以有效地提高检测灵敏度将减少用于采用新技术的技术进入障碍。在本文中,我们突出了(1)据据报道的IR成像系统的最新进步和关键操作差异,以及(2)近期创造生物相容性红外发射造影剂的进展以及使用靶向剂改善检测灵敏度。最大限度地提高任何IR成像平台的完全效益和性能的能力高度依赖于对每个成像平台的要求和互补造影剂的物理特性的彻底了解。

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