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Measurement and verification of positron emitter nuclei generated at each treatment site by target nuclear fragment reactions in proton therapy.

机译:质子治疗中靶核碎片反应在每个治疗部位产生的正电子发射体核的测量和验证。

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PURPOSE: The purpose of this study is to verify the characteristics of the positron emitter nuclei generated at each treatment site by proton irradiation. METHODS: Proton therapy using a beam on-line PET system mounted on a rotating gantry port (BOLPs-RGp), which the authors developed, is provided at the National Cancer Center Kashiwa, Japan. BOLPs-RGp is a monitoring system that can confirm the activity distribution of the proton irradiated volume by detection of a pair of annihilation gamma rays coincidentally from positron emitter nuclei generated by the target nuclear fragment reactions between irradiated proton nuclei and nuclei in the human body. Activity is measured from a start of proton irradiation to a period of 200 s after the end of the irradiation. The characteristics of the positron emitter nuclei generated in a patient's body were verified by the measurement of the activity distribution at each treatment site using BOLPs-RGp. RESULTS: The decay curves for measured activity were able to be approximated using two or three half-life values regardless of the treatment site. The activity of half-life value of about 2 min was important for a confirmation of the proton irradiated volume. CONCLUSIONS: In each proton treatment site, verification of the characteristics of the generated positron emitter nuclei was performed by using BOLPs-RGp. For the monitoring of the proton irradiated volume, the detection of (15)O generated in a human body was important.
机译:目的:本研究的目的是验证质子辐照在每个治疗部位产生的正电子发射体核的特征。方法:作者在日本柏市国家癌症中心提供了使用束流在线PET系统进行质子治疗的方法,该系统安装在作者开发的旋转龙门端口(BOLPs-RGp)上。 BOLPs-RGp是一个监视系统,可以通过检测从正电子发射体核同时发生的一对an灭伽玛射线来确定质子辐照体积的活动分布,该by灭射线是由人体内质子核与核之间的目标核碎片反应生成的正电子发射体核产生的。从质子辐照开始到辐照结束后200秒之间的时间测量活性。通过使用BOLPs-RGp测量每个治疗部位的活性分布,可以验证患者体内产生的正电子发射体核的特征。结果:无论治疗部位如何,均可以使用两个或三个半衰期值近似估算出活性的衰减曲线。约2分钟的半衰期活性对于确认质子辐照量很重要。结论:在每个质子治疗位点,通过使用BOLPs-RGp对生成的正电子发射体核的特征进行验证。为了监测质子的照射量,检测在人体中产生的(15)O很重要。

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