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Small hepatocellular carcinoma: relationship of signal intensity to histopathologic findings and metal content of the tumor and surrounding hepatic parenchyma.

机译:小肝细胞癌:信号强度与肿瘤和周围肝实质的组织病理学发现和金属含量的关系。

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摘要

PURPOSE: To investigate the relationship between the metal content of hepatocellular carcinoma (HCC) and the signal intensity pattern on magnetic resonance images. MATERIALS AND METHODS: The signal intensity patterns of 59 HCCs 3 cm in diameter or smaller were correlated with histologic findings and metal content. RESULTS: HCCs with high signal intensity on T1-weighted images demonstrated more steatosis (P = .035) and higher copper content (P = .008) than did surrounding hepatic parenchyma. HCCs with high signal intensity on T2-weighted images demonstrated more clear cells (P = .001) than did surrounding hepatic parenchyma. The higher signal intensities on T1-weighted and T2-weighted images were related to a higher and a lower degree of histologic differentiation, respectively. Multivariate analysis showed that the contrast-to-noise ratio between the HCC and surrounding hepatic parenchyma was affected by intratumoral copper content (P = .0338), zinc content of surrounding hepatic parenchyma (P = .0379), and the degree of histologic differentiation on T1-weighted (P = .0031) and T2-weighted (P = .0062) images. CONCLUSION: The signal intensity of HCC on T1-weighted images is related to the degree of histologic differentiation, intratumoral copper content, and zinc content of surrounding hepatic parenchyma, whereas the signal intensity on T2-weighted images is related to the degree of histologic differentiation.
机译:目的:探讨肝细胞癌(HCC)的金属含量与磁共振图像信号强度模式的关系。材料与方法:59个直径3 cm或更小的HCC的信号强度模式与组织学发现和金属含量相关。结果:与周围肝实质相比,在T1加权图像上具有高信号强度的HCC表现出更多的脂肪变性(P = .035)和更高的铜含量(P = .008)。在T2加权图像上具有高信号强度的HCC表现出比周围肝实质更为清晰的细胞(P = .001)。 T1加权和T2加权图像上较高的信号强度分别与较高的组织学分化程度和较低的组织学分化程度有关。多变量分析表明,肝癌与周围肝实质之间的对比噪声比受瘤内铜含量(P = .0338),周围肝实质锌含量(P = .0379)和组织学分化程度的影响在T1加权(P = .0031)和T2加权(P = .0062)图像上。结论:T1加权图像上HCC的信号强度与周围肝实质的组织学分化程度,瘤内铜含量和锌含量有关,而T2加权图像上HCC的信号强度与组织学分化程度有关。 。

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