几何因子加权小波去噪在加多辛酸增强肝胆期MR成像中的应用。

IF 2.5 3区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Shota Kondo, Yuko Nakamura, Toru Higaki, Takashi Nishihara, Masahiro Takizawa, Toru Shirai, Motoshi Fujimori, Yoshitaka Bito, Keigo Narita, Takahiro Sueoka, Yukiko Honda, Chihiro Tani, Kazuo Awai
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引用次数: 0

摘要

目的:基于几何因子加权的小波去噪(g-去噪)方法可以适应并行成像引起的空间噪声水平的变化,从而降低图像噪声。本研究的目的是探讨加多乙酸对肝胆期(HBP)图像进行g去噪的临床适用性。方法:对53例疑似肝肿瘤病变患者行加多辛酸增强HBP成像(g+HBP和g-HBP)。为了避免延长扫描时间,g+HBP图像减小了矩阵尺寸。两名放射科医生计算了相对于肝实质(肝-门静脉和肝-肌肉CNR)的信噪比、门静脉和脊柱旁肌肉的噪比(CNR)。另外两名放射科医生使用5分制对肝脏边缘的清晰度、肝内血管的可见性、图像噪声、肝脏实质的均匀性和整体图像质量进行了独立评分。g-HBP和g+HBP图像的差异采用双侧Wilcoxon符号秩检验。结果:g+HBP-图像的肝到门静脉、肝到肌肉的CNR和信噪比明显高于g-HBP (P < 0.01),图像噪声、肝实质均匀性和整体图像质量的定性评分也明显高于g-HBP (P < 0.01)。虽然肝边缘锐度评分和肝内血管可见性评分没有显著差异(P = 0.05, 0.43),但在g+HBP组中,有3例患者肝边缘锐度评分较低,有6例患者肝内血管可见性评分较低。结论:在加多辛酸增强的HBP成像中,g-去噪可以获得比常规HBP成像更好的图像质量,尽管可能会降低解剖细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Utility of Wavelet Denoising with Geometry Factor Weighting for Gadoxetic Acid-enhanced Hepatobiliary-phase MR Imaging.

Utility of Wavelet Denoising with Geometry Factor Weighting for Gadoxetic Acid-enhanced Hepatobiliary-phase MR Imaging.

Utility of Wavelet Denoising with Geometry Factor Weighting for Gadoxetic Acid-enhanced Hepatobiliary-phase MR Imaging.

Utility of Wavelet Denoising with Geometry Factor Weighting for Gadoxetic Acid-enhanced Hepatobiliary-phase MR Imaging.

Purpose: The wavelet denoising with geometry factor weighting (g-denoising) method can reduce the image noise by adapting to spatially varying noise levels induced by parallel imaging. The aim of this study was to investigate the clinical applicability of g-denoising on hepatobiliary-phase (HBP) images with gadoxetic acid.

Methods: We subjected 53 patients suspected of harboring hepatic neoplastic lesions to gadoxetic acid-enhanced HBP imaging with and without g-denoising (g+HBP and g-HBP). The matrix size was reduced for g+HBP images to avoid prolonging the scanning time. Two radiologists calculated the SNR, the portal vein-, and paraspinal muscle contrast-to-noise ratio (CNR) relative to the hepatic parenchyma (liver-to-portal vein- and liver-to-muscle CNR). Two other radiologists independently graded the sharpness of the liver edge, the visibility of intrahepatic vessels, the image noise, the homogeneity of liver parenchyma, and the overall image quality using a 5-point scale. Differences between g-HBP and g+HBP images were determined with the two-sided Wilcoxon signed-rank test.

Results: The liver-to-portal- and liver-to-muscle CNR and the SNR were significantly higher on g+HBP- than g-HBP images (P < 0.01), as was the qualitative score for the image noise, homogeneity of liver parenchyma, and overall image quality (P < 0.01). Although there were no significant differences in the scores for the sharpness of the liver edge or the score assigned for the visibility of intrahepatic vessels (P = 0.05, 0.43), with g+HBP the score was lower in three patients for the sharpness of the liver edge and in six patients for the visibility of intrahepatic vessels.

Conclusion: At gadoxetic acid-enhanced HBP imaging, g-denoising yielded a better image quality than conventional HBP imaging although the anatomic details may be degraded.

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来源期刊
Magnetic Resonance in Medical Sciences
Magnetic Resonance in Medical Sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
5.80
自引率
20.00%
发文量
71
审稿时长
>12 weeks
期刊介绍: Magnetic Resonance in Medical Sciences (MRMS or Magn Reson Med Sci) is an international journal pursuing the publication of original articles contributing to the progress of magnetic resonance in the field of biomedical sciences including technical developments and clinical applications. MRMS is an official journal of the Japanese Society for Magnetic Resonance in Medicine (JSMRM).
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