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Transl Vis Sci Technol. 2020 Jun 29;9(7):42. doi: 10.1167/tvst.9.7.42. eCollection 2020 Jun.
2
We need to talk about the Warburg effect.我们需要谈谈瓦伯格效应。
Nat Metab. 2020 Feb;2(2):127-129. doi: 10.1038/s42255-020-0172-2.
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Imaging radiation dose in breast radiotherapy by X-ray CT calibration of Cherenkov light.基于切伦科夫光的 X 射线 CT 校准对乳腺癌放射治疗中的成像辐射剂量进行评估。
Nat Commun. 2020 May 8;11(1):2298. doi: 10.1038/s41467-020-16031-z.
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Ga-PSMA Cerenkov luminescence imaging in primary prostate cancer: first-in-man series.镓-前列腺特异性膜抗原切伦科夫发光成像在原发性前列腺癌中的应用:首例人体研究系列
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5
Intraoperative Ga-PSMA Cerenkov Luminescence Imaging for Surgical Margins in Radical Prostatectomy: A Feasibility Study.术中 Ga-PSMA 荷电粒子发光成像在根治性前列腺切除术中评估手术切缘的可行性研究。
J Nucl Med. 2020 Oct;61(10):1500-1506. doi: 10.2967/jnumed.119.240424. Epub 2020 Feb 14.
6
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8
Experimentally Observed Cherenkov Light Generation in the Eye During Radiation Therapy.实验观察到放射治疗过程中眼睛内的切伦科夫光产生。
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对切伦科夫发光成像临床应用的最新及新兴方法的综述。

A review of recent and emerging approaches for the clinical application of Cerenkov luminescence imaging.

作者信息

Mc Larney Benedict, Skubal Magdalena, Grimm Jan

机构信息

Molecular Pharmacology Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

Front Phys. 2021;9. doi: 10.3389/fphy.2021.684196. Epub 2021 Jul 28.

DOI:10.3389/fphy.2021.684196
PMID:36845872
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9957555/
Abstract

Cerenkov luminescence (CL) is a blue-weighted emission of light produced by a vast array of clinically approved radioisotopes and LINAC accelerators. When β particles (emitted during the decay of radioisotopes) are present in a medium such as water or tissue, they are able to travel faster than the speed of light in that medium and in doing so polarize the molecules around them. Once the particle has left the local area, the polarized molecules relax and return to their baseline state releasing the additional energy as light (luminescence). This blue glow has commonly been used to determine the output of nuclear power plant cores and, in recent years, has found traction in the preclinical and clinical imaging field. This brief review will discuss the technology which has enabled the emergence of the biomedical Cerenkov imaging field, recent pre-clinical studies with potential clinical translation of Cerenkov luminescence imaging (CLI) and the current clinical implementations of the method. Finally, an outlook is given as to the direction in which the field is heading.

摘要

切伦科夫发光(CL)是由大量临床批准的放射性同位素和直线加速器产生的蓝光加权发射光。当β粒子(在放射性同位素衰变过程中发射)存在于水或组织等介质中时,它们能够以比该介质中光速更快的速度行进,并在此过程中使周围分子极化。一旦粒子离开局部区域,极化分子就会弛豫并回到其基线状态,将额外的能量以光(发光)的形式释放出来。这种蓝光通常用于确定核电站堆芯的输出,近年来,它在临床前和临床成像领域得到了应用。本简要综述将讨论推动生物医学切伦科夫成像领域出现的技术、切伦科夫发光成像(CLI)潜在临床转化的近期临床前研究以及该方法目前的临床应用。最后,展望了该领域的发展方向。