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An X-Ray Based Capsule for Colorectal Cancer Screening incorporating Single Photon Counting Technology

机译:结合单光子计数技术的基于X射线的大肠癌筛查胶囊

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An ingestible capsule for colorectal cancer screening, based on ionizing-radiation imaging, has been developed and is in advanced stages of system stabilization and clinical evaluation. The imaging principle allows future patients using this technology to avoid bowel cleansing, and to continue the normal life routine during procedure. The Check-Cap capsule, or C-Scan~® Cap, imaging principle is essentially based on reconstructing scattered radiation, while both radiation source and radiation detectors reside within the capsule. The radiation source is a custom-made radioisotope encased in a small canister, collimated into rotating beams. While traveling along the human colon, irradiation occurs from within the capsule towards the colon wall. Scattering of radiation occurs both inside and outside the colon segment; some of this radiation is scattered back and detected by sensors onboard the capsule. During procedure, the patient receives small amounts of contrast agent as an addition to his/her normal diet. The presence of contrast agent inside the colon dictates the dominant physical processes to become Compton Scattering and X-Ray Fluorescence (XRF), which differ mainly by the energy of scattered photons. The detector readout electronics incorporates low-noise Single Photon Counting channels, allowing separation between the products of these different physical processes. Separating between radiation energies essentially allows estimation of the distance from the capsule to the colon wall, hence structural imaging of the intraluminal surface. This allows imaging of structural protrusions into the colon volume, especially focusing on adenomas that may develop into colorectal cancer.
机译:已经开发出一种基于电离辐射成像的用于大肠癌筛查的可摄取胶囊,该胶囊处于系统稳定和临床评估的后期阶段。成像原理使未来的患者可以使用该技术避免肠道清洁,并在手术过程中继续正常的生活。 Check-Cap胶囊或C-Scan〜®Cap成像原理基本上基于重建散射辐射,而辐射源和辐射探测器均位于胶囊内。辐射源是装在小罐中的定制放射性同位素,准直成旋转光束。当沿着人类结肠行进时,辐射从胶囊内部朝结肠壁发生。辐射的散射既发生在结肠段的内部,也发生在结肠段的外部。其中一些辐射被散射回去,并被胶囊上的传感器检测到。在手术过程中,患者除了接受常规饮食外,还接受少量的造影剂。结肠内造影剂的存在决定了主要的物理过程变为康普顿散射和X射线荧光(XRF),其主要区别在于散射光子的能量。检测器读出电子器件具有低噪声的单光子计数通道,可在这些不同物理过程的产品之间进行分离。辐射能量之间的分离实质上允许估计从胶囊到结肠壁的距离,因此可以对腔内表面进行结构成像。这使得可以对结肠中的结构性突起进行成像,尤其是集中于可能发展成结肠直肠癌的腺瘤。

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