Schob Stefan, Münch Benno, Dieckow Julia, Quäschling Ulf, Hoffmann Karl-Titus, Richter Cindy, Garnov Nikita, Frydrychowicz Clara, Krause Matthias, Meyer Hans-Jonas, Surov Alexey
Department for Neuroradiology, University Hospital Leipzig, Leipzig, Germany.
Department for Neuroradiology, University Hospital Leipzig, Leipzig, Germany.
Transl Oncol. 2018 Apr;11(2):504-510. doi: 10.1016/j.tranon.2018.02.006. Epub 2018 Mar 6.
Diffusion weighted imaging (DWI) quantifies motion of hydrogen nuclei in biological tissues and hereby has been used to assess the underlying tissue microarchitecture. Histogram-profiling of DWI provides more detailed information on diffusion characteristics of a lesion than the standardly calculated values of the apparent diffusion coefficient (ADC)-minimum, mean and maximum. Hence, the aim of our study was to investigate, which parameters of histogram-profiling of DWI in primary central nervous system lymphoma can be used to specifically predict features like cellular density, chromatin content and proliferative activity.
Pre-treatment ADC maps of 21 PCNSL patients (8 female, 13 male, 28-89 years) from a 1.5T system were used for Matlab-based histogram profiling. Results of histopathology (H&E staining) and immunohistochemistry (Ki-67 expression) were quantified. Correlations between histogram-profiling parameters and neuropathologic examination were calculated using SPSS 23.0.
The lower percentiles (p10 and p25) showed significant correlations with structural parameters of the neuropathologic examination (cellular density, chromatin content). The highest percentile, p90, correlated significantly with Ki-67 expression, resembling proliferative activity. Kurtosis of the ADC histogram correlated significantly with cellular density.
Histogram-profiling of DWI in PCNSL provides a comprehensible set of parameters, which reflect distinct tumor-architectural and tumor-biological features, and hence, are promising biomarkers for treatment response and prognosis.
扩散加权成像(DWI)可量化生物组织中氢核的运动,因此已被用于评估潜在的组织微观结构。与表观扩散系数(ADC)的标准计算值(最小值、平均值和最大值)相比,DWI的直方图分析能提供有关病变扩散特征的更详细信息。因此,我们研究的目的是探讨原发性中枢神经系统淋巴瘤DWI直方图分析的哪些参数可用于特异性预测细胞密度、染色质含量和增殖活性等特征。
使用来自1.5T系统的21例原发性中枢神经系统淋巴瘤患者(8例女性,13例男性,年龄28 - 89岁)的治疗前ADC图进行基于Matlab的直方图分析。对组织病理学(苏木精 - 伊红染色)和免疫组织化学(Ki - 67表达)结果进行量化。使用SPSS 23.0计算直方图分析参数与神经病理学检查之间的相关性。
较低百分位数(p10和p25)与神经病理学检查的结构参数(细胞密度、染色质含量)显示出显著相关性。最高百分位数p90与Ki - 67表达显著相关,类似于增殖活性。ADC直方图的峰度与细胞密度显著相关。
原发性中枢神经系统淋巴瘤中DWI的直方图分析提供了一组可理解的参数,这些参数反映了不同的肿瘤结构和肿瘤生物学特征,因此有望成为治疗反应和预后的生物标志物。