Measurement of scattered rays from different materials using an inorganic scintillator based optical fiber sensor and its application in radiotherapy

闪烁体 光纤 光学 材料科学 纤维 光电子学 物理 复合材料 探测器
作者
Tianci Xie,Bo He,Qieming Shi,Jinqian Qian,Wenjing Hao,Song Li,Elfed Lewis,Weimin Sun
出处
期刊:Biomedical Physics & Engineering Express [IOP Publishing]
卷期号:8 (2): 025004-025004 被引量:1
标识
DOI:10.1088/2057-1976/ac48e3
摘要

Abstract Measurements using an Optical Fiber OFS including an inorganic scintillator placed on the surface of a phantom show that the particle energy distribution inside the phantom remains unchanged. The backscattered intensity measured using an Optical Fiber Sensor (OFS) exhibits a linear relationship with the total radiation dose delivered to the phantom, and this relationship shows that the OFS can be used for indirect dose measurement when located on the surface of the phantom i.e. that arising from the energetic backscattered electrons and photons. Such a device can therefore be used as a clinical in-vivo dosimeter, being located on the patient’s body surface. In addition, the measurement results for the same OFS located inside and outside the radiation field of a compound water based phantom are analyzed. The differences in measurement of the fluorescence signal in response to various tissue materials representing bone or tumor tissue in the irradiation field are strongly related to the material’s ability to block the scattered rays from the water phantom, as well as the scattered x-rays generated by the material located within the phantom.
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