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Mechanical and hemodynamic responses of breast tissue under mammographic-like compression during functional dynamic optical imaging

机译:功能性动态光学成像期间乳房X X X X XM X线乳房组织机械和血液动力学响应

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摘要

Studying tissue hemodynamics following breast compression has the potential to reveal new contrast mechanisms for evaluating breast cancer. However, how compression will be distributed and, consequently, how hemodynamics will be altered inside the compressed breast remain unclear. To explore the effect of compression, 12 healthy volunteers were studied by applying a step compression increase (4.5–53.4 N) using an optical imaging system capable of concurrently measuring pressure distribution and hemodynamic responses. Finite element analysis was used to predict the distribution of internal fluid pressure (IFP) in breast models. Comparisons between the measured pressure distribution and the reconstructed hemodynamic images for the healthy volunteers indicated significant (p < 0.05) negative correlations. The findings from a breast cancer patient showed that IFP distribution during compression strongly correlates with the observed differential hemodynamic images. We concluded that dynamic breast compression results in non-uniform internal pressure distribution throughout the breast that could potentially drive directed blood flow. The encouraging results obtained highlight the promise of developing dynamic optical imaging biomarkers for breast cancer by interpreting differential hemodynamic images of breast tissue during compression in the context of measured pressure distribution and predicted IFP.
机译:研究乳腺压缩后的组织血流动力学有可能揭示用于评估乳腺癌的新对比机制。然而,压缩是如何分布的,因此,如何在压缩乳房内改变血流动力学如何仍然尚不清楚。为了探讨压缩的效果,通过使用能够同时测量压力分布和血液动力学反应的光学成像系统来研究12步压缩增加(4.5-53.4 n)来研究12个健康的志愿者。有限元分析用于预测乳房模型中内部流体压力(IFP)的分布。测量的压力分布与健康志愿者的重建血流动力学图像之间的比较表明了显着的(P <0.05)负相关。乳腺癌患者的发现表明,压缩期间的IFP分布与观察到的差分血液动力学图像强烈相关。我们得出结论,动态乳房压缩导致整个乳房的非均匀内压分布,可能潜在地驱动导向血液流动。通过在测量压力分布的背景下解释压缩期间乳腺组织的差异血流动力学图像,突出了令人鼓舞的结果突出了开发乳腺癌动态光学成像生物标志物的承诺。

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