使用多重灵敏度编码的前列腺高分辨率扩散加权成像:与传统和缩小视野技术的比较。

Atsushi Nakamoto, Hiromitsu Onishi, Takahiro Tsuboyama, Hideyuki Fukui, Takashi Ota, Keigo Yano, Kengo Kiso, Toru Honda, Hiroyuki Tarewaki, Yoshihiro Koyama, Mitsuaki Tatsumi, Noriyuki Tomiyama
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引用次数: 0

摘要

目的:比较前列腺MRI中高分辨率复用灵敏度编码扩散加权成像(MUSE-DWI)与常规DWI(c-DWI)和低FOV DWI(rFOV DWI)的客观和主观图像质量、病变显著性和表观扩散系数(ADC)。方法:对47例接受前列腺MRI检查的患者进行回顾性评价,包括c-DWI、rFOV DWI和MUSE-DWI。对正常前列腺组织的信噪比(SNR)和ADC、癌症前列腺(PCa)的对比噪声比(CNR)和ADC。两名放射科医生使用5分制对图像质量和病变显著性进行独立评分,并在三个序列之间进行比较。结果:rFOV DWI技术对正常前列腺组织的信噪比显著高于其他两种DWI技术(P ≤ rFOV DWI组PCa的CNR明显高于MUSE-DWI组(P 结论:与c-DWI相比,高分辨率MUSE-DWI显示出更高的图像质量和更低的失真,同时保持了较宽的FOV和相似的ADC量化,尽管在病变显著性方面没有观察到差异。
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High-resolution Diffusion-weighted Imaging of the Prostate Using Multiplexed Sensitivity-encoding: Comparison with the Conventional and Reduced Field-of-view Techniques.

Purpose: To compare objective and subjective image quality, lesion conspicuity, and apparent diffusion coefficient (ADC) of high-resolution multiplexed sensitivity-encoding diffusion-weighted imaging (MUSE-DWI) with conventional DWI (c-DWI) and reduced FOV DWI (rFOV-DWI) in prostate MRI.

Methods: Forty-seven patients who underwent prostate MRI, including c-DWI, rFOV-DWI, and MUSE-DWI, were retrospectively evaluated. SNR and ADC of normal prostate tissue and contrast-to-noise ratio (CNR) and ADC of prostate cancer (PCa) were measured and compared between the three sequences. Image quality and lesion conspicuity were independently graded by two radiologists using a 5-point scale and compared between the three sequences.

Results: The SNR of normal prostate tissue was significantly higher with rFOV-DWI than with the other two DWI techniques (P ≤ 0.01). The CNR of the PCa was significantly higher with rFOV-DWI than with MUSE-DWI (P < 0.05). The ADC of normal prostate tissue measured by rFOV-DWI was lower than that measured by MUSE-DWI and c-DWI (P < 0.01), while there was no difference in the ADC of cancers. In the qualitative analysis, MUSE-DWI showed significantly higher scores than rFOV-DWI and c-DWI for visibility of anatomy and overall image quality in both readers, and significantly higher scores for distortion in one of the two readers (P < 0.001). There was no difference in lesion conspicuity between the three sequences.

Conclusion: High-resolution MUSE-DWI showed higher image quality and reduced distortion compared to c-DWI, while maintaining a wide FOV and similar ADC quantification, although no difference in lesion conspicuity was observed.

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