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Innovations in Nuclear Imaging Instrumentation: Cerenkov Imaging

机译:核成像仪器的创新:切伦科夫成像

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摘要

Cerenkov luminescence (CL) is blue glow light produced by charged subatomic particles travelling faster than the phase velocity of light in a dielectric medium such as water or tissue. CL was first discovered in 1934, but for biomedical research it was only recognized in 2009 after advances in optical camera sensors brought the required high sensitivity. Recently, applications of CL from clinical radionuclides have been rapidly expanding to include not only preclinical and clinical biomedical imaging but also an approach to therapy. Cerenkov Luminescence Imaging (CLI) utilizes CL generated from clinically relevant radionuclides alongside optical imaging instrumentation. CLI is advantageous over traditional nuclear imaging methods in terms of infrastructure cost, resolution and imaging time. Furthermore, CLI is a truly multimodal imaging method where the same agent can be detected by two independent modalities, with optical (CL) imaging and with positron emission tomography (PET) imaging. CL has been combined with small molecules, biomolecules and nanoparticles to improve diagnosis and therapy in cancer research. Here, we cover the fundamental breakthroughs and recent advances in reagents and instrumentation methods for CLI as well as therapeutic application of CL.
机译:切伦科夫发光(CL)是由带电的亚原子粒子产生的蓝色辉光,其传播速度快于电介质(例如水或组织)中的相速度。 CL最早于1934年被发现,但对于生物医学研究,直到光学相机传感器的进步带来了所需的高灵敏度后,才在2009年得到认可。最近,来自临床放射性核素的CL的应用已迅速扩展,不仅包括临床前和临床生物医学成像,还包括治疗方法。切伦科夫发光成像(CLI)利用临床相关放射性核素和光学成像仪器产生的CL。在基础设施成本,分辨率和成像时间方面,CLI优于传统核成像方法。此外,CLI是真正的多模式成像方法,其中可以通过光学(CL)成像和正电子发射断层扫描(PET)成像两个独立的模式来检测同一药物。 CL已与小分子,生物分子和纳米颗粒结合使用,以改善癌症研究中的诊断和治疗。在这里,我们介绍了用于CLI的试剂和仪器方法以及CL的治疗应用的基本突破和最新进展。

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  • 年(卷),期 -1(48),4
  • 年度 -1
  • 页码 359–366
  • 总页数 16
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