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Hemodynamic signature of breast cancer under fractional mammographic compression using a dynamic diffuse optical tomography system

机译:使用动态扩散光学X线断层摄影系统在部分乳房X线压缩下乳腺癌的血液动力学特征

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摘要

Near infrared dynamic diffuse optical tomography measurements of breast hemodynamics during fractional mammographic compression offer a novel contrast mechanism for detecting breast cancer and monitoring chemotherapy. Tissue viscoelastic relaxation during the compression period leads to a slow reduction in the compression force and reveals biomechanical and metabolic differences between healthy and lesion tissue. We measured both the absolute values and the temporal evolution of hemoglobin concentration during 25-35 N of compression for 22 stage II and III breast cancer patients scheduled to undergo neoadjuvant chemotherapy. 17 patients were included in the group analysis (average tumor size 3.2 cm, range: 1.3-5.7 cm). We observed a statistically significant differential decrease in total and oxy-hemoglobin, as well as in hemoglobin oxygen saturation in tumor areas vs. healthy tissue, as early as 30 seconds into the compression period. The hemodynamic contrast is likely driven by the higher tumor stiffness and different viscoelastic relaxation rate, as well as the higher tumor oxygen metabolism rate.
机译:乳房X线摄影压缩过程中乳房血流动力学的近红外动态漫射光学层析成像测量提供了一种新型的对比机制,用于检测乳腺癌和监测化疗。压迫期间的组织粘弹性松弛导致压迫力的缓慢降低,并揭示了健康组织和病变组织之间的生物力学和代谢差异。对于计划接受新辅助化疗的22位II期和III期乳腺癌患者,我们在25-35 N压缩时测量了血红蛋白浓度的绝对值和时间变化。 17例患者被纳入组分析(平均肿瘤大小3.2厘米,范围:1.3-5.7厘米)。我们观察到,从压缩开始到30秒,肿瘤区域与健康组织的总血红蛋白和氧合血红蛋白以及血红蛋白氧饱和度之间的差异均有统计学意义。更高的肿瘤刚度和不同的粘弹性松弛率以及更高的肿瘤氧代谢率可能会驱动血液动力学对比。

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