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Phys Med Biol. 2014 Dec 7;59(23):7107-23. doi: 10.1088/0031-9155/59/23/7107. Epub 2014 Nov 3.
2
Optical dosimetry of radiotherapy beams using Cherenkov radiation: the relationship between light emission and dose.利用切伦科夫辐射进行放射治疗束的光学剂量测定:光发射与剂量之间的关系。
Phys Med Biol. 2014 Jul 21;59(14):3789-811. doi: 10.1088/0031-9155/59/14/3789. Epub 2014 Jun 18.
3
Imaging Cerenkov emission as a quality assurance tool in electron radiotherapy.将切伦科夫辐射成像作为电子放射治疗中的质量保证工具。
Phys Med Biol. 2014 Apr 21;59(8):1963-78. doi: 10.1088/0031-9155/59/8/1963. Epub 2014 Apr 2.
4
Cherenkov video imaging allows for the first visualization of radiation therapy in real time.切伦科夫视频成像是实时可视化放射治疗的首次尝试。
Int J Radiat Oncol Biol Phys. 2014 Jul 1;89(3):615-22. doi: 10.1016/j.ijrobp.2014.01.046. Epub 2014 Mar 28.
5
Real-time in vivo Cherenkoscopy imaging during external beam radiation therapy.实时体内 Cherenkoscopy 成像在体外放射治疗期间。
J Biomed Opt. 2013 Nov;18(11):110504. doi: 10.1117/1.JBO.18.11.110504.
6
Superficial dosimetry imaging based on Čerenkov emission for external beam radiotherapy with megavoltage x-ray beam.基于切伦科夫辐射的外照射放射治疗浅层剂量成像用兆伏 X 射线束。
Med Phys. 2013 Oct;40(10):101914. doi: 10.1118/1.4821543.
7
Superficial dosimetry imaging of Čerenkov emission in electron beam radiotherapy of phantoms.体模中电子束放射治疗的切伦科夫发射的表面剂量成像。
Phys Med Biol. 2013 Aug 21;58(16):5477-93. doi: 10.1088/0031-9155/58/16/5477. Epub 2013 Jul 24.
8
Three-dimensional Čerenkov tomography of energy deposition from ionizing radiation beams.基于切伦科夫效应的离子束能量沉积的三维层析成像。
Opt Lett. 2013 Mar 1;38(5):634-6. doi: 10.1364/OL.38.000634.
9
Projection imaging of photon beams by the Čerenkov effect.切伦科夫效应的光子束投影成像。
Med Phys. 2013 Jan;40(1):012101. doi: 10.1118/1.4770286.
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Time-gated Cherenkov emission spectroscopy from linear accelerator irradiation of tissue phantoms.组织体模的线性加速器辐照的时门控切伦科夫发射光谱学。
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射波刀放疗期间的实时切伦科夫发射门静脉成像。

Real-time Cherenkov emission portal imaging during CyberKnife® radiotherapy.

作者信息

Roussakis Yiannis, Zhang Rongxiao, Heyes Geoff, Webster Gareth, Mason Suzannah, Green Stuart, Pogue Brian, Dehghani Hamid

机构信息

Physical Sciences of Imaging in the Biomedical Science, University of Birmingham, Birmingham, West Midlands B15 2TT, UK.

出版信息

Phys Med Biol. 2015 Nov 21;60(22):N419-25. doi: 10.1088/0031-9155/60/22/N419. Epub 2015 Oct 29.

DOI:10.1088/0031-9155/60/22/N419
PMID:26513015
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4647064/
Abstract

The feasibility of real-time portal imaging during radiation therapy, through the Cherenkov emission (CE) effect is investigated via a medical linear accelerator (CyberKnife(®)) irradiating a partially-filled water tank with a 60 mm circular beam. A graticule of lead/plywood and a number of tissue equivalent materials were alternatively placed at the beam entrance face while the induced CE at the exit face was imaged using a gated electron-multiplying-intensified-charged-coupled device (emICCD) for both stationary and dynamic scenarios. This was replicated on an Elekta Synergy(®) linear accelerator with portal images acquired using the iViewGT(™) system. Profiles across the acquired portal images were analysed to reveal the potential resolution and contrast limits of this novel CE based portal imaging technique and compared against the current standard. The CE resolution study revealed that using the lead/plywood graticule, separations down to 3.4  ±  0.5 mm can be resolved. A 28 mm thick tissue-equivalent rod with electron density of 1.69 relative to water demonstrated a CE contrast of 15% through air and 14% through water sections, as compared to a corresponding contrast of 19% and 12% using the iViewGT(™) system. For dynamic scenarios, video rate imaging with 30 frames per second was achieved. It is demonstrated that CE-based portal imaging is feasible to identify both stationary and dynamic objects within a CyberKnife(®) radiotherapy treatment field.

摘要

通过医用直线加速器(射波刀(®))用60毫米圆形光束照射部分装满水的水箱,研究了利用切伦科夫辐射(CE)效应在放射治疗期间进行实时门静脉成像的可行性。在光束入射面交替放置铅/胶合板刻度线和一些组织等效材料,同时使用门控电子倍增增强电荷耦合器件(emICCD)对出射面的感应CE进行成像,以研究静态和动态场景。在医科达Synergy(®)直线加速器上重复该实验,使用iViewGT(™)系统采集门静脉图像。分析采集到的门静脉图像的轮廓,以揭示这种基于CE的新型门静脉成像技术的潜在分辨率和对比度极限,并与当前标准进行比较。CE分辨率研究表明,使用铅/胶合板刻度线,可以分辨低至3.4±0.5毫米的间距。一根28毫米厚、相对于水的电子密度为1.69的组织等效棒,在空气中的CE对比度为15%,在水段中的CE对比度为14%,而使用iViewGT(™)系统时相应的对比度分别为19%和12%。对于动态场景,实现了每秒30帧的视频速率成像。结果表明,基于CE的门静脉成像能够在射波刀(®)放射治疗野内识别静态和动态物体。