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利用凝胶纳米传感器测定局部辐射剂量分布。

Determination of topographical radiation dose profiles using gel nanosensors.

机构信息

Chemical Engineering, School for Engineering of Matter, Transport, and Energy, Arizona State University, Tempe, AZ 85287, USA.

School of Molecular Sciences, Arizona State University, Tempe, AZ 85287, USA.

出版信息

Sci Adv. 2019 Nov 15;5(11):eaaw8704. doi: 10.1126/sciadv.aaw8704. eCollection 2019 Nov.

Abstract

Despite the emergence of sophisticated technologies in treatment planning and administration, routine determination of delivered radiation doses remains a challenge due to limitations associated with conventional dosimeters. Here, we describe a gel-based nanosensor for the colorimetric detection and quantification of topographical radiation dose profiles in radiotherapy. Exposure to ionizing radiation results in the conversion of gold ions in the gel to gold nanoparticles, which render a visual change in color in the gel due to their plasmonic properties. The intensity of color formed in the gel was used as a quantitative reporter of ionizing radiation. The gel nanosensor was used to detect complex topographical dose patterns including those administered to an anthropomorphic phantom and live canine patients undergoing clinical radiotherapy. The ease of fabrication, operation, rapid readout, colorimetric detection, and relatively low cost illustrate the translational potential of this technology for topographical dose mapping in radiotherapy applications in the clinic.

摘要

尽管在治疗计划和管理方面出现了复杂的技术,但由于常规剂量仪的局限性,常规确定所给予的辐射剂量仍然是一个挑战。在这里,我们描述了一种基于凝胶的纳米传感器,用于在放射治疗中对地形辐射剂量分布进行比色检测和定量。暴露于电离辐射会导致凝胶中的金离子转化为金纳米粒子,由于其等离子体特性,这会使凝胶中的颜色发生可见变化。凝胶中形成的颜色强度可作为电离辐射的定量报告。该凝胶纳米传感器用于检测复杂的地形剂量模式,包括对人体模型和接受临床放射治疗的活犬患者给予的剂量模式。该技术易于制造、操作、快速读出、比色检测和相对较低的成本,说明了其在临床放射治疗中的地形剂量测绘方面的转化潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8793/6858262/2c9b98b5fdd2/aaw8704-F1.jpg

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