Thayer School of Engineering, Dartmouth College, 14 Engineering Dr., Hanover, NH, 03755, USA.
DoseOptics LLC, 16 Cavendish Ct., Lebanon, NH, 03766, USA.
Nat Commun. 2020 May 8;11(1):2298. doi: 10.1038/s41467-020-16031-z.
Imaging Cherenkov emission during radiation therapy cancer treatments can provide a real-time, non-contact sampling of the entire dose field. The emitted Cherenkov signal generated is proportional to deposited dose, however, it is affected by attenuation from the intrinsic tissue optical properties of the patient, which in breast, ranges from primarily adipose to fibroglandular tissue. Patients being treated with whole-breast X-ray radiotherapy (n = 13) were imaged for 108 total fractions, to establish correction factors from the linear relationships between Cherenkov light and CT number (HU). This study elucidates this relationship in vivo, and a correction factor approach is used to scale each image to improve the linear correlation between Cherenkov emission intensity and dose ([Formula: see text]). This study provides a major step towards direct quantitative radiation dose imaging in humans by utilizing non-contact camera sensing of Cherenkov emission during the radiation therapy treatment.
在癌症放射治疗中对切伦科夫辐射进行成像可以实时、非接触式地对整个剂量场进行采样。所产生的切伦科夫信号与沉积剂量成正比,但会受到来自患者固有组织光学特性的衰减的影响,在乳房中,范围从主要为脂肪到纤维腺体组织。对接受全乳房 X 射线放射治疗的患者(n=13)进行了 108 个总分次的成像,以建立切伦科夫光与 CT 数(HU)之间的线性关系的校正因子。本研究在体内阐明了这种关系,并采用校正因子方法对每个图像进行缩放,以提高切伦科夫发射强度与剂量之间的线性相关性([Formula: see text])。本研究通过在放射治疗过程中利用非接触式相机感测切伦科夫发射,朝着直接对人体进行定量辐射剂量成像迈出了重要一步。