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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Image metric-based correction (autofocusing) of motion artifacts in high-resolution trabecular bone imaging.
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Image metric-based correction (autofocusing) of motion artifacts in high-resolution trabecular bone imaging.

机译:高分辨率小梁骨成像中基于图像度量的运动伪影校正(自动聚焦)。

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PURPOSE: To evaluate the performance of the autofocusing (AF) motion correction technique in high-resolution trabecular bone imaging where image signal-to noise ratio (SNR) is limited. MATERIALS AND METHODS: Raw data from 26 clinical three-dimensional (3D) wrist exams were motion corrected using AF for both in-plane rotation and translation. Changes in image metrics (a measurement of image sharpness) and structural parameters subsequently computed, were used to gauge the performance of the AF algorithm, and comparisons were made with translation-only navigator-corrected results. RESULTS: On average, AF generated images with higher image sharpness compared to the navigator echo technique. The average normalized gradient squared (NGS) metric improved by 0.40%, 0.73%, and 0.84%, respectively, following translation-only navigator, translation-only AF and combined rotation/translation AF. For all structural parameters, the rotation/translation AF resulted in an approximately two-fold greater change comparedto the navigator technique. CONCLUSION: The data provide evidence that errors from subtle translational and rotational motion in the structural parameters in high-resolution trabecular bone images are alleviated by AF and that the resulting improvements are superior to translation-only 2D navigator correction.
机译:目的:评估自动聚焦(AF)运动校正技术在高分辨率小梁骨成像中的性能,该技术在图像信噪比(SNR)受限制的情况下。材料与方法:使用AF对平面内旋转和平移的运动进行了26次临床三维(3D)手腕检查的原始数据进行了运动校正。随后计算图像指标(图像清晰度的度量)和结构参数的变化,以衡量AF算法的性能,并与仅翻译的导航仪校正结果进行比较。结果:与导航回波技术相比,平均而言,AF生成的图像具有更高的图像清晰度。使用仅翻译的导航器,仅翻译的AF和组合的旋转/翻译AF,平均归一化梯度平方(NGS)指标分别提高了0.40%,0.73%和0.84%。对于所有结构参数,与导航技术相比,旋转/平移AF导致的变化大约大两倍。结论:这些数据提供了证据,通过AF可以缓解高分辨率小梁骨图像中结构参数的细微平移和旋转运动带来的误差,并且所产生的改进优于仅平移的2D导航器校正。

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