钙在癌症非创伤性成像中的作用:当前和现代成像技术综述。

Lyndsay Simmons, Lisa Feng, Ali Fatemi-Ardekani, Michael D Noseworthy
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引用次数: 0

摘要

在过去的十年里,癌症诊断的前景发生了重大变化。有了这些变化,就有可能对乳腺良性和恶性钙化进行全面评估。全面检查癌症和钙化的生物化学,以描述更好地表征由碳酸钙、草酸钙或羟基磷灰石钙组成的不同钙盐的潜力及其相关的预后影响。将传统的乳房X光成像技术与现有的技术进行比较,包括乳房断层合成和对比增强乳房X光摄影。讨论了计算机断层扫描和磁共振成像的其他方法。描述了使用磁共振成像特别是磁化率来表征钙化物的生化特征的概念。正如我们所知,磁共振成像是安全的,并且没有电离辐射。讨论了磁共振磁化率成像技术的实验结果,以说明整合该技术以提供磁化率定量评估的潜力。在正确的磁共振成像条件下,不同类型的钙盐之间分离出不同的相位变化。
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The Role of Calcium in Non-Invasively Imaging Breast Cancer: An Overview of Current and Modern Imaging Techniques.

The landscape of breast cancer diagnostics has significantly evolved over the past decade. With these changes, it is possible to provide a comprehensive assessment of both benign and malignant breast calcifications. The biochemistry of breast cancer and calcifications are thoroughly examined to describe the potential to characterize better different calcium salts composed of calcium carbonate, calcium oxalate, or calcium hydroxyapatite and their associated prognostic implications. Conventional mammographic imaging techniques are compared to available ones, including breast tomosynthesis and contrast-enhanced mammography. Additional methods in computed tomography and magnetic resonance imaging are discussed. The concept of using magnetic resonance imaging particularly magnetic susceptibility to characterize the biochemical characteristics of calcifications is described. As we know magnetic resonance imaging is safe and there is no ionization radiation. Experimental findings through magnetic resonance susceptibility imaging techniques are discussed to illustrate the potential for integrating this technique to provide a quantitative assessment of magnetic susceptibility. Under the right magnetic resonance imaging conditions, a distinct phase variability was isolated amongst different types of calcium salts.

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来源期刊
Critical Reviews in Biomedical Engineering
Critical Reviews in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
1.80
自引率
0.00%
发文量
25
期刊介绍: Biomedical engineering has been characterized as the application of concepts drawn from engineering, computing, communications, mathematics, and the physical sciences to scientific and applied problems in the field of medicine and biology. Concepts and methodologies in biomedical engineering extend throughout the medical and biological sciences. This journal attempts to critically review a wide range of research and applied activities in the field. More often than not, topics chosen for inclusion are concerned with research and practice issues of current interest. Experts writing each review bring together current knowledge and historical information that has led to the current state-of-the-art.
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