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A microelectronic portal imaging device for image guided conformal microirradiation of murine cancer models

机译:用于鼠类癌症模型的图像引导适形微辐射的微电子门成像设备

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Image guided conformal small animal orthovoltage microirradiators are currently under development to perform radiobiological experiments with preclinical cancer models. An important component of these instruments is the treatment delivery image guidance system, a microelectronic portal imaging device (μEPID). Here, we present the design and implementation of a μEPID, specifically designed and constructed for small animal orthovoltage microirradiators. The μEPID can acquire images in the range of 60 kVp to 320 kVp x-ray photon energies and can endure high doses from orthovoltage beams without radiation damage. The μEPID can acquire 200 μm resolution images at a rate of 17 frames per second for online in vivo co-registration between irradiation beams and small animal anatomy. An exposure with less than 1% of a 2 Gy treatment field is required for imaging, which is an adequate ratio between imaging dose and treatment dose to avoid undesired irradiation of healthy tissue or alteration of the preclinical cancer model. The μEPID was calibrated for microdosimetry with a precision of4.1% with respect to an ion chamber, used as a gold standard. To validate the in vivo device performance, irradiations of lung, brain, and xenograft breast cancer preclinical models were performed and analyzed.
机译:图像引导的保形小动物正电压微辐照器目前正在开发中,以利用临床前癌症模型进行放射生物学实验。这些仪器的重要组成部分是治疗传送图像引导系统,即微电子门禁成像设备(μEPID)。在这里,我们介绍了μEPID的设计和实现,它是专门为小型动物正电压微辐照器设计和制造的。 μEPID可以获取60 kVp至320 kVp X射线光子能量范围内的图像,并且可以承受来自正电压光束的高剂量而不会造成辐射损坏。 μEPID可以以每秒17帧的速率获取200μm分辨率的图像,以实现辐射束与小动物解剖结构之间的在线体内共配准。成像所需的曝光量小于2 Gy治疗视野的1%,这是成像剂量与治疗剂量之间的适当比率,以避免对健康组织进行不希望的照射或改变临床前癌症模型。相对于用作金标准的离子室,对μEPID进行了微剂量校准,校准精度为4.1%。为了验证体内装置的性能,对肺,脑和异种移植乳腺癌的临床前模型进行了辐照和分析。

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