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Hepatocellular carcinoma angiogenesis assessment-role of ultrasound and mathematical modelling

机译:肝细胞癌血管生成评估的超声作用和数学建模

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Hepatocellular carcinoma is one of the five most common cancers worldwide. Experimental and clinical data indicate that in human hepatocellular carcinoma (HCC) tumor progression is associated with angiogenesis and that an increase in microvascular density is associated with a poor prognosis. Ultrasound is an attractive modality for imaging angiogenesis because of the ease with which it can be repeated without exposing the patient to any risk. The ready repeatability of ultrasound is proving useful in following tumour response to conventional and novel antitumour drugs. The tumour growth and its treatment response are the subjects of present interest which concerns the oncologic community worldwide. Cancer research has undergone radical changes in the past few years. The next big step will be to implement mathematical modeling approaches to interrogate the enormous amount of data being produced and extract useful answers. In summary, this paper illustrates how mathematical models mighty be used to investigate promising US techniques for an in vivo, non-invasive, globally quantification of tumour's morphological and functional changes.
机译:肝细胞癌是全球五种最常见的癌症之一。实验和临床数据表明,在人类肝细胞癌(HCC)中,肿瘤的进展与血管生成有关,而微血管密度的增加与不良预后有关。超声是用于血管生成成像的一种有吸引力的方式,因为它可以轻松地重复进行而不会使患者面临任何风险。超声的现成的重复性被证明可用于追踪肿瘤对常规和新型抗肿瘤药物的反应。肿瘤的生长及其治疗反应是当前关注的主题,涉及全世界的肿瘤学界。在过去的几年中,癌症研究发生了翻天覆地的变化。下一步将是实施数学建模方法,以询问正在生成的大量数据并提取有用的答案。总而言之,本文说明了如何使用数学模型来研究有前途的美国技术,以对肿瘤的形态和功能变化进行体内,非侵入性,全球量化。

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