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Imaging tumor oxyhemoglobin and deoxyhemoglobin concentrations with ultrasound-guided diffuse optical tomography.

机译:用超声引导的漫射光学层析成像成像肿瘤氧合血红蛋白和脱氧血红蛋白的浓度。

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摘要

We present an ultrasound (US)-guided diffuse optical tomography for mapping tumor deoxyhemoglobin (deoxyHb) and oxyhemoglobin (oxyHb) concentrations in blood phantoms and in in-vivo patients. Because oxyHb and deoxyHb respond differently at different wavelengths, four laser diodes of wavelengths 740 nm, 780 nm, 808 nm and 830 nm were used in the study. Tumor model experiments were performed using phantoms of different hemoglobin oxygen saturations (14%-89%) representing hemoglobin oxygenation in tissue. Targets of different sizes and located at different depths were used to validate the accuracy of oxygen saturation estimation. The absolute deviations between the estimated hemoglobin oxygen saturations obtained from reconstructed absorption maps and oxygen measurements obtained using a pO2 electrode were less than 8% over the measured range of oxygen saturation. An inhomogeneous concentric blood phantom of deoxygenated center core and oxygenated outer shell was imaged and deoxyHb and oxyHb maps revealed corresponding distributions which correlated well with inhomogeneous deoxy- and oxy- distributions frequently seen in breast cancers. Clinical examples are given to demonstrate the utility of US-guided optical tomography in mapping heterogeneous deoxyHb and oxyHb distributions in breast cancers.
机译:我们提出了一种超声(美国)引导的漫射光学层析成像技术,用于绘制血液幻影和体内患者中的肿瘤脱氧血红蛋白(deoxyHb)和氧合血红蛋白(oxyHb)的浓度。由于oxyHb和deoxyHb在不同波长下的响应不同,因此在研究中使用了四个波长为740 nm,780 nm,808 nm和830 nm的激光二极管。使用代表组织中血红蛋白氧合的不同血红蛋白氧饱和度(14%-89%)的体模进行肿瘤模型实验。使用大小不同且位于不同深度的目标来验证氧饱和度估算的准确性。在测量的氧饱和度范围内,从重建的吸收图获得的估计血红蛋白氧饱和度与使用pO2电极获得的氧测量值之间的绝对偏差小于8%。拍摄了脱氧中心核和氧化外壳的不均匀同心血液幻像,deoxyHb和oxyHb图谱揭示了相应的分布,这些分布与乳腺癌中经常见到的不均匀的脱氧和氧分布密切相关。给出了临床实例,以证明美国引导式光学断层扫描在绘制乳腺癌中异质性脱氧Hb和oxyHb分布图方面的实用性。

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