Axelsson Johan, Glaser Adam K, Gladstone David J, Pogue Brian W
Thayer School of Engineering, Dartmouth College, Hanover, New Hampshire 03755, USA.
Opt Express. 2012 Feb 27;20(5):5133-42. doi: 10.1364/OE.20.005133.
Measurements of Cherenkov emission in tissue during radiation therapy are shown to enable estimation of hemoglobin oxygen saturation non-invasively, through spectral fitting of the spontaneous emissions from the treated tissue. Tissue oxygenation plays a critical role in the efficacy of radiation therapy to kill tumor tissue. Yet in-vivo measurement of this has remained elusive in routine use because of the complexity of oxygen measurement techniques. There is a spectrally broad emission of Cherenkov light that is induced during the time of irradiation, and as this travels through tissue from the point of the radiation deposition, the tissue absorption and scatter impart spectral changes. These changes can be quantified by diffuse spectral fitting of the signal. Thus Cherenkov emission spectroscopy is demonstrated for the first time quantitatively in vitro and qualitatively in vivo, and has potential for real-time online tracking of tissue oxygen during radiation therapy when fully characterized and developed.
研究表明,在放射治疗期间对组织中的切伦科夫辐射进行测量,能够通过对治疗组织的自发辐射进行光谱拟合,以非侵入性方式估计血红蛋白氧饱和度。组织氧合作用在放射治疗杀死肿瘤组织的疗效中起着关键作用。然而,由于氧测量技术的复杂性,在常规使用中对其进行体内测量仍然难以实现。在照射期间会诱导出光谱范围很宽的切伦科夫光发射,当这种光从辐射沉积点穿过组织时,组织吸收和散射会使光谱发生变化。这些变化可以通过信号的漫反射光谱拟合来量化。因此,首次在体外对切伦科夫发射光谱进行了定量研究,并在体内进行了定性研究,并且在充分表征和开发后,具有在放射治疗期间实时在线跟踪组织氧的潜力。