CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Microenvironmental Factors in Oral Cavity Squamous Cell Carcinoma Undergoing Surgery: Correlation with Diffusion Kurtosis Imaging and Dynamic Contrast-Enhanced MRI.
Microenvironmental Factors in Oral Cavity Squamous Cell Carcinoma Undergoing Surgery: Correlation with Diffusion Kurtosis Imaging and Dynamic Contrast-Enhanced MRI.
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尽管需要进一步研究,这些发现为 OSCCs 提供了更全面的生物学特征描述,并可能有助于更好地理解 DKI 衍生参数,其生物物理意义仍未完全明确。
在这项前瞻性研究中,我们假设磁共振成像(MRI)不仅能显示肿瘤本身,还能反映其微环境,从而体现肿瘤的异质性和微结构复杂性。我们探讨了扩散峰度成像(DKI)和动态对比增强(DCE)-MRI与口腔鳞状细胞癌(OSCCs)病理因素之间的相关性。
共37例新诊断的OSCC患者接受了3T系统的MR检查。对扩散系数(D)、峰度参数(K)、转运常数K trans和K ep以及血管外细胞外间隙体积v e进行了定量。提出了一种基于直方图的方法,以基于组织学和免疫化学研究影像学与病理因素之间的关联。
DCE-MRI和DKI参数与炎性浸润、肿瘤分级、角化和促纤维增生反应之间存在显著差异。TIL(肿瘤浸润淋巴细胞)(TILs)与DKI之间出现了相关关系,较低的D值和较高的K值与TILs增加相关。
In this prospective study, we hypothesized that magnetic resonance imaging (MRI) may represent not only the tumor but also the microenvironment, reflecting the heterogeneity and microstructural complexity of neoplasms. We investigated the correlation between both diffusion kurtosis imaging (DKI) and dynamic contrast-enhanced (DCE)-MRI with the pathological factors in oral cavity squamous cell carcinomas (OSCCs).
A total of 37 patients with newly diagnosed OSCCs underwent an MR examination on a 3T system. The diffusion coefficient (D), the kurtosis parameter (K), the transfer constants K trans and K ep and the volume of extravascular extracellular space v e were quantified. A histogram-based approach was proposed to investigate the associations between the imaging and the pathological factors based on the histology and immunochemistry.
Significant differences in the DCE-MRI and DKI parameters were found in relation to the inflammatory infiltrate, tumor grading, keratinization and desmoplastic reaction. Relevant relationships emerged between tumor-infiltrating lymphocytes (TILs) and DKI, with lower D and higher K values being associated with increased TILs.
Although a further investigation is needed, these findings provide a more comprehensive biological characterization of OSCCs and may contribute to a better understanding of DKI-derived parameters, whose biophysical meaning is still not well-defined.
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