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利用空间频域成象技术校正组织中的切伦科夫光衰减,以实现全乳放射治疗中表面剂量的定量。

Correcting Cherenkov light attenuation in tissue using spatial frequency domain imaging for quantitative surface dosimetry during whole breast radiation therapy.

机构信息

Dartmouth College, Thayer School of Engineering, Hanover, New Hampshire, United States.

DoseOptics LLC, Lebanon, New Hampshire, United States.

出版信息

J Biomed Opt. 2018 Nov;24(7):1-10. doi: 10.1117/1.JBO.24.7.071609.

Abstract

Imaging Cherenkov emission during radiotherapy permits real-time visualization of external beam delivery on superficial tissue. This signal is linear with absorbed dose in homogeneous media, indicating potential for quantitative dosimetry. In humans, the inherent heterogeneity of tissue optical properties (primarily from blood and skin pigment) distorts the linearity between detected Cherenkov signal and absorbed dose. We examine the potential to correct for superficial vasculature using spatial frequency domain imaging (SFDI) to map tissue optical properties for large fields of view. In phantoms, applying intensity corrections to simulate blood vessels improves Cherenkov image (CI) negative contrast by 24% for a vessel 1.9-mm-in diameter. In human trials, SFDI and CI are acquired for women undergoing whole breast radiotherapy. Applied corrections reduce heterogeneity due to vasculature within the sampling limits of the SFDI from a 22% difference as compared to the treatment plan, down to 6% in one region and from 14% down to 4% in another region. The optimal use for this combined imaging system approach is to correct for small heterogeneities such as superficial blood vessels or for interpatient variations in blood/melanin content such that the corrected CI more closely represents the surface dose delivered.

摘要

放射治疗期间的切伦科夫发射成像允许实时可视化外照射在浅层组织上的输送。该信号在均匀介质中与吸收剂量呈线性关系,表明具有定量剂量测定的潜力。在人体中,组织光学特性的固有非均质性(主要来自血液和皮肤色素)会扭曲检测到的切伦科夫信号与吸收剂量之间的线性关系。我们通过空间频域成像(SFDI)来检查针对大视场映射组织光学特性的校正浅层脉管系统的可能性。在体模中,应用强度校正来模拟血管,可将直径为 1.9 毫米的血管的切伦科夫图像(CI)负对比度提高 24%。在人体试验中,对接受全乳放射治疗的女性进行了 SFDI 和 CI 的采集。应用校正后,与治疗计划相比,SFDI 采样范围内的血管引起的异质性降低了 22%,在一个区域内降低到 6%,在另一个区域内降低到 14%。这种组合成像系统方法的最佳用途是校正浅层血管等小的不均匀性,或校正患者间血液/黑色素含量的变化,以使校正后的 CI 更接近所输送的表面剂量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a32/6228320/48ec8c536e80/JBO-024-071609-g001.jpg

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