用一种新的成像生物标志物DDVD(扩散衍生血管密度)评估腮腺肿瘤灌注:有希望的初步结果。

IF 1.3 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Dian-Qi Yao, Ann Dorothy King, Rongli Zhang, Ben-Heng Xiao, Lun M Wong, Yì Xiáng J Wáng
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引用次数: 0

摘要

DDVD(扩散衍生血管密度)是每单位组织面积微血管面积的MRI替代物。DDVD的计算公式为:DDVD(b0b20) = Sb0/ROIarea0 - Sb20/ROIarea20,其中Sb0和Sb20为b为0或20 s/mm2时的组织信号。本研究应用DDVD评估腮腺肿瘤的灌注。3.0T行MRI检查。24例多形性腺瘤(PA)、16例沃辛氏瘤(WT)和14例恶性肿瘤(MT)的弥散加权图像b值分别为0、20、1000 s/mm2。DDVDr为肿瘤的DDVD除以无瘤腮腺组织的DDVD。对腮腺肿瘤灌注成像研究进行了系统的文献检索。PA、MT、WT的灌注参数按PA值归一化,假设PA值的比值为1。将经PA DDVDr进一步归一化的MT DDVDr和WT DDVDr比值结果与文献结果进行比较。此外,在b= 0,1000 s/mm2的情况下,计算表观扩散系数(ADC)。多数肿瘤相对于原发腮腺组织呈高血管性,DDVDr值为bbb1,其中PA、MT、WT的平均DDVDr值分别为1.753±0.462、2.731±2.254、4.324±3.203。MT/PA和WT/PA的DDVDr比值与文献中采用非dwi方法得到的灌注结果一致,尤其与CT灌注血容量结果一致。PA、MT和WT的ADC值分别为1.485±0.36、0.969±0.194和0.772±0.070 (×10-3 mm2/s)。WT具有非常高的DDVDr和低ADC,而PA具有中等高的DDVDr和非常高的ADC。大多数MTs具有中等高的DDVDr和低ADC。ADC和DDVDr联合检查可在很大程度上区分PA和wt, ddvd结果与腮腺灌注成像文献数据基本一致。结合DDVD和ADC可能支持腮腺肿瘤组织特征。·DDVD作为一种直接的弥散性MRI生物标志物,可用于评估腮腺肿瘤灌注。·Warthin肿瘤具有非常高的DDVD和低ADC。·多形性腺瘤具有中等高的DDVDr和很高的ADC。·ADC和DDVDr联合应用可在很大程度上区分多形性腺瘤和Warthin肿瘤。·姚D,王AD,张瑞等。用一种新的成像生物标志物DDVD(扩散衍生血管密度)评估腮腺肿瘤灌注:有希望的初步结果。Rofo 2024;DOI 10.1055 / - 2543 - 3305。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing parotid gland tumor perfusion with a new imaging biomarker DDVD (diffusion-derived vessel density): promising initial results.

DDVD (diffusion-derived vessel density) is an MRI surrogate of the area of micro-vessels per unit tissue area. DDVD is calculated according to: DDVD(b0b20) = Sb0/ROIarea0 - Sb20/ROIarea20, where Sb0 and Sb20 refer to the tissue signal when b is 0 or 20 s/mm2. This study applied DDVD to assess the perfusion of parotid gland tumors.MRI was performed at 3.0T. Diffusion-weighted images with b-values of 0, 20, 1000 s/mm2 were acquired for 24 pleomorphic adenomas (PA), 16 Warthin's tumors (WT), and 14 malignant tumors (MT). DDVDr was DDVD of the tumor divided by DDVD of tumor-free parotid gland tissue. A systematic literature search was conducted for parotid gland tumor perfusion imaging studies. Perfusion parameters of PA, MT, and WT were normalized by PA value, and thus the ratio for PA value was assumed to be 1. The ratio results of MT DDVDr and WT DDVDr further normalized by PA DDVDr were compared with the literature results. In addition, the ADC (apparent diffusion coefficient) was calculated with b=0, 1000 s/mm2 images.Most of the tumors were hyper-vascular relative to native parotid gland tissue with DDVDr >1, with PA, MT, and WT having mean DDVDr values of 1.753±0.462, 2.731±2.254, and 4.324 ±3.203, respectively. DDVDr ratios of MT/PA and WT/PA agreed with the literature perfusion results derived with non-DWI methods, particularly consistent with CT perfusion blood volume results. PA, MT, and WT had ADC values of 1.485 ±0.36, 0.969± 0.194, and 0.772± 0.070 (×10-3 mm2/s), respectively. WT had very high DDVDr and low ADC, while PA had moderately high DDVDr and very high ADC. Most of the MTs had moderately high DDVDr and low ADC. A combination of ADC and DDVDr can largely differentiate between PA and WT.DDVD results approximately agree with parotid gland perfusion imaging literature data. A combination of DDVD and ADC may support parotid gland tumor tissue characterization. · As a straightforward diffusion MRI biomarker, DDVD can be used to assess parotid gland tumor perfusion.. · Warthin's tumors have very high DDVD and low ADC.. · Pleomorphic adenomas have moderately high DDVDr and very high ADC.. · A combination of ADC and DDVDr can largely differentiate between pleomorphic adenoma and Warthin's tumor.. · Yao D, King AD, Zhang R etal. Assessing parotid gland tumor perfusion with a new imaging biomarker DDVD (diffusion-derived vessel density): promising initial results. Rofo 2024; DOI 10.1055/a-2543-3305.

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