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SPAD BASED IMAGING OF CHERENKOV LIGHT IN RADIATION THERAPY

机译:放射治疗中Cherenkov光的基于Spad的成像

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During radiotherapy, X-ray beams induce Cherenkov light emission in tissue as part of the dose delivery. This light can be used for dosimetry, in order to track and image the dose as it happens. The Cherenkov light levels are in the range of 10~(-6) to 10~(-9) W/cm~2, which makes it challenging to detect in a clinical environment. However, because the radiation is pulsed in 4 microsecond bursts, time-gated acquisition of the signal allows for robust detection, even in the presence of ambient room lighting. Thus, imaging sensors for this application must be highly sensitive and must be able to time gate faster than a microsecond. In this study, the use of a solid-state detector composed of 64x32 single photon avalanche diodes (SPAD) was examined. The advantages of this technology were intra-chip amplification, superior X-ray noise rejection, and fast temporal gating of the acquisition. The results show that the SPAD camera was sensitive enough to detect Cherenkov radiation despite the 3% fill factor. 2D oversampling (×25) was also used to increase final image resolution to 320×160. In this work we demonstrate the SPAD camera performance in imaging Cherenkov emission from a tissue optical phantom and one patient undergoing radiotherapy. The SPAD camera sensors could be a viable alternative for Cherenkov imaging, as compared to current imaging methods that are mostly focused around image intensifier-based cameras and so have a range of non-linearities and instabilities which could be solved by an all solid-state camera sensor.
机译:在放射疗法期间,X射线束诱导组织中的Cherenkov光发射作为剂量递送的一部分。这种光可用于剂量测定法,以便在发生这种情况时跟踪和映像剂量。 Cherenkov光线水平在10〜(-6)至10〜(-9)W / cm〜2的范围内,这使得在临床环境中检测到挑战。然而,由于辐射在4微秒的突发中脉冲,所以即使在环境室照明的存在下,信号也允许鲁棒检测。因此,本申请的成像传感器必须高度敏感,并且必须能够快于微秒的栅极。在该研究中,研究了使用由64x32单光子雪崩二极管(Spad)组成的固态检测器。该技术的优点是芯片内放大,优异的X射线噪声抑制,以及采集的快速时间门。结果表明,尽管填充因子3%,所以将母摄相机足够敏感以检测Cherenkov辐射。 2D过采样(×25)还用于将最终图像分辨率提高到320×160。在这项工作中,我们展示了从组织光学模型和一个患者接受放射治疗的患者的映像Cherenkov发射中的照相机性能。与大多数聚焦基于图像增强器的相机的当前成像方法相比,SPAD相机传感器可以是Cherenkov成像的可行替代品,因此具有一系列非线性和不稳定性,可以通过所有固态解决。相机传感器。

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