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Noninvasive investigation of blood oxygenation dynamics of tumors by near-infrared spectroscopy

机译:用近红外光谱技术无创研究血液中血氧动力学

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The measurement of dynamic changes in the blood oxygenation of tumor vasculature could be valuable for tumor prognosis and optimizing tumor treatment plans. In this study we employed near-infrared spectroscopy (NIRS) to measure changes in the total hemoglobin concentration together with the degree of hemoglobin oxygenation in the vascular bed of breast and prostate tumors implanted in rats. Measurements were made while inhaled gas was alternated between 33% oxygen and carbogen (95% O_(2), 5% CO_(2)). Significant dynamic changes, in tumor oxygenation were observed to accompany respiratory challenge, and these changes could be modeled with two exponential components, yielding two time constants. Following the Fick principle, we derived a simplified model to relate the time constants to tumor blood-perfusion rates. This study demonstrates that the NIRS technology can provide an efficient, real-time, noninvasive means of monitoring the vascular oxygenation dynamics of tumors and facilitate investigations of tumor vascular perfusion. This may have prognostic value and promises insight into tumor vascular development.
机译:测量肿瘤血管的血液氧合动态变化可能对肿瘤的预后和优化肿瘤治疗计划具有重要意义。在这项研究中,我们采用近红外光谱(NIRS)来测量大鼠体内植入的乳房和前列腺肿瘤的血管床中总血红蛋白浓度的变化以及血红蛋白的氧化程度。在将吸入的气体在33%的氧气和碳素(95%的O_(2),5%的CO_(2))之间交替时进行测量。观察到伴随呼吸挑战的肿瘤氧合中的显着动态变化,这些变化可以用两个指数成分建模,产生两个时间常数。遵循Fick原理,我们导出了一个简化的模型,将时间常数与肿瘤血液灌流速率相关联。这项研究表明,NIRS技术可以提供一种有效,实时,无创的手段来监测肿瘤的血管氧合动力学,并有助于研究肿瘤血管的灌注情况。这可能具有预后价值,并有望深入了解肿瘤血管的发育。

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