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Accurate detection of metabolically active 'brown' and 'white' adipose tissues with computed tomography

机译:用计算机断层扫描准确检测代谢活跃的“棕色”和“白色”脂肪组织

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Background: Adipose tissues (AT) are highly metabolically active complex endocrine organs and are classified into white (WAT) and brown AT (BAT) with proinflammatory and anti-inflammatory characteristics. The current study investigated the accuracy of computed tomography (CT) to quantitatively detect BAT and WAT based on Hounsfield unit (HU) threshold compared to standardized uptake values (SUVs) of corresponding AT with the use of positron emission tomography (PET). Methods: One hundred twenty-four patients who underwent whole-body 18F-fluorodeoxyglucose (18F-FDG) PET/CT were studied. The SUVs and HUs of regions of BAT and WAT were measured and compared in these scans. The receiver operator characteristic (ROC) analysis was used to detect the HU threshold values for the detection of BAT and WAT. Results: The CT HU of BAT, with high 18F-FDG uptake, was significantly higher compared to WAT (-67.1±8.2 [-10 to -87] versus -93.5±10.1 [-88 to -190], P=.0006). Generalized linear-regression models revealed that mean CT HU of BAT was 26.4 HU higher than that of WAT (P=.001). A strong agreement between CT HU and PET SUV in measuring metabolically active AT (r2=0.81, P=.0001) was observed. The ROC curve showed that the optimal cutoff value of CT HU to detect BAT was HU≥-87 with sensitivity of 83.3% and specificity of 100%, and the negative CT HU below -87 is highly specific for WAT. Conclusion: In our study, CT can accurately and quantitatively detect BAT and WAT based on CT HU threshold, which is -10 to -87 forBAT and -88 to -190 for WAT.
机译:背景:脂肪组织(AT)是具有高代谢活性的复杂内分泌器官,分为具有促炎和抗炎特性的白色(WAT)和棕色AT(BAT)。当前的研究调查了计算机断层扫描(CT)的准确性,该方法基于Hounsfield单位(HU)阈值与使用AT的相应AT的标准摄取值(SUVs)进行定量检测,并使用正电子发射断层扫描(PET)来定量检测BAT和WAT。方法:对124例行全身18F-氟脱氧葡萄糖(18F-FDG)PET / CT检查的患者进行研究。在这些扫描中测量并比较了BAT和WAT地区的SUV和HU。接收器操作员特征(ROC)分析用于检测HU阈值,以检测BAT和WAT。结果:BAT的CT HU具有较高的18F-FDG摄取,与WAT相比显着更高(-67.1±8.2 [-10至-87]与-93.5±10.1 [-88至-190],P = .0006 )。广义线性回归模型显示,BAT的平均CT HU比WAT高26.4 HU(P = .001)。观察到CT HU和PET SUV在测量代谢活性AT之间有很强的一致性(r2 = 0.81,P = .0001)。 ROC曲线显示,CT HU检测BAT的最佳截止值为HU≥-87,灵敏度为83.3%,特异性为100%,而-87以下的负CT HU对WAT具有高度特异性。结论:在我们的研究中,CT可以基于CT HU阈值准确定量地检测BAT和WAT,BAT的范围为-10至-87,WAT的范围为-88至-190。

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