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Advances in molecular imaging for breast cancer detection and characterization

机译:用于乳腺癌检测和表征的分子成像技术的进展

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Advances in our ability to assay molecular processes, including gene expression, protein expression, and molecular and cellular biochemistry, have fueled advances in our understanding of breast cancer biology and have led to the identification of new treatments for patients with breast cancer. The ability to measure biologic processes without perturbing them in vivo allows the opportunity to better characterize tumor biology and to assess how biologic and cytotoxic therapies alter critical pathways of tumor response and resistance. By accurately characterizing tumor properties and biologic processes, molecular imaging plays an increasing role in breast cancer science, clinical care in diagnosis and staging, assessment of therapeutic targets, and evaluation of responses to therapies. This review describes the current role and potential of molecular imaging modalities for detection and characterization of breast cancer and focuses primarily on radionuclide-based methods.
机译:我们分析分子过程(包括基因表达,蛋白质表达以及分子和细胞生物化学)的能力的提高,推动了我们对乳腺癌生物学认识的提高,并导致了针对乳腺癌患者的新治疗方法的确定。在不干扰体内的情况下测量生物学过程的能力使人们有机会更好地表征肿瘤生物学,并评估生物学和细胞毒性疗法如何改变肿瘤反应和耐药性的关键途径。通过准确地表征肿瘤的性质和生物学过程,分子成像在乳腺癌科学,诊断和分期,治疗目标评估以及对治疗反应的评估中的临床护理中发挥着越来越重要的作用。这篇综述描述了分子影像学方法在乳腺癌的检测和表征中的当前作用和潜力,并且主要侧重于基于放射性核素的方法。

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