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标准剂量和低剂量非增强头部CT中ADMIRE、SAFIRE和滤波反投影的比较

Comparison of ADMIRE, SAFIRE, and Filtered Back Projection in Standard and Low-Dose Non-Enhanced Head CT.

作者信息

Gohla Georg, Örgel Anja, Klose Uwe, Brendlin Andreas, Bongers Malte Niklas, Bender Benjamin, Staber Deborah, Ernemann Ulrike, Hauser Till-Karsten, Ruff Christer

机构信息

Department of Diagnostic and Interventional Neuroradiology, Eberhard Karls-University Tuebingen, D-72076 Tuebingen, Germany.

MVZ Radiologie Karlsruhe GbR, Karlstraße 104-106, D-76137 Karlsruhe, Germany.

出版信息

Diagnostics (Basel). 2025 Jun 17;15(12):1541. doi: 10.3390/diagnostics15121541.

Abstract

: Iterative reconstruction (IR) techniques were developed to address the shortcomings of filtered back projection (FBP), yet research comparing different types of IR is still missing. This work investigates how reducing radiation dose influences both image quality and noise profiles when using two iterative reconstruction techniques-Sinogram-Affirmed Iterative Reconstruction (SAFIRE) and Advanced Modeled Iterative Reconstruction (ADMIRE)-in comparison to filtered back projection (FBP) in non-enhanced head CT (NECT). : In this retrospective single-center study, 21 consecutive patients underwent standard NECT on a 128-slice CT scanner. Raw data simulated dose reductions to 90% and 70% of the original dose via ReconCT software. For each dose level, images were reconstructed with FBP, SAFIRE 3, and ADMIRE 3. Image noise power spectra quantified objective image noise. Two blinded neuroradiologists scored overall image quality, image noise, image contrast, detail, and artifacts on a 10-point Likert scale in a consensus reading. Quantitative Hounsfield unit (HU) measurements were obtained in white and gray matter regions. Statistical analyses included the Wilcoxon signed-rank test, mixed-effects modeling, ANOVA, and post hoc pairwise comparisons with Bonferroni correction. : Both iterative reconstructions significantly reduced image noise compared to FBP across all dose levels ( < 0.001). ADMIRE exhibited superior image noise suppression at low (<0.51 1/mm) and high (>1.31 1/mm) spatial frequencies, whereas SAFIRE performed better in the mid-frequency range (0.51-1.31 1/mm). Subjective scores for overall quality, image noise, image contrast, and detail were higher for ADMIRE and SAFIRE versus FBP at the original dose and simulated doses of 90% and 70% (all < 0.001). ADMIRE outperformed SAFIRE in artifact reduction ( < 0.001), while SAFIRE achieved slightly higher image contrast scores ( < 0.001). Objective HU values remained stable across reconstruction methods, although SAFIRE yielded marginally higher gray and white matter (WM) attenuations ( < 0.01). : Both IR techniques-ADMIRE and SAFIRE-achieved substantial noise reduction and improved image quality relative to FBP in non-enhanced head CT at standard and reduced dose levels on the specific CT system and reconstruction strength tested. ADMIRE showed enhanced suppression of low- and high-frequency image noise and fewer artifacts, while SAFIRE preserved image contrast and reduced mid-frequency noise. These findings support the potential of iterative reconstruction to optimize radiation dose in NECT protocols in line with the ALARA principle, although broader validation in multi-vendor, multi-center settings is warranted.

摘要

迭代重建(IR)技术的发展是为了解决滤波反投影(FBP)的缺点,但比较不同类型IR的研究仍然缺乏。这项工作研究了在非增强头部CT(NECT)中,与滤波反投影(FBP)相比,使用两种迭代重建技术——正弦图确认迭代重建(SAFIRE)和高级模型迭代重建(ADMIRE)时,降低辐射剂量如何影响图像质量和噪声分布。

在这项回顾性单中心研究中,21例连续患者在128层CT扫描仪上接受了标准NECT检查。通过ReconCT软件将原始数据模拟剂量降低至原始剂量的90%和70%。对于每个剂量水平,使用FBP、SAFIRE 3和ADMIRE 3重建图像。图像噪声功率谱量化了客观图像噪声。两位盲法神经放射科医生在共识阅读中,以10分李克特量表对整体图像质量、图像噪声、图像对比度、细节和伪影进行评分。在白质和灰质区域获得定量Hounsfield单位(HU)测量值。统计分析包括Wilcoxon符号秩检验、混合效应建模、方差分析以及使用Bonferroni校正的事后成对比较。

与FBP相比,在所有剂量水平下,两种迭代重建均显著降低了图像噪声(P<0.001)。ADMIRE在低(<0.51 1/mm)和高(>1.31 1/mm)空间频率下表现出更好的图像噪声抑制,而SAFIRE在中频范围(0.51 - 1.31 1/mm)表现更好。在原始剂量以及模拟剂量90%和70%时,ADMIRE和SAFIRE在整体质量、图像噪声、图像对比度和细节方面的主观评分均高于FBP(均P<0.001)。ADMIRE在减少伪影方面优于SAFIRE(P<0.001),而SAFIRE获得了略高的图像对比度评分(P<0.001)。尽管SAFIRE产生的灰质和白质衰减略高(P<0.01),但客观HU值在各重建方法之间保持稳定。

在特定CT系统和测试的重建强度下,在标准剂量和降低剂量水平的非增强头部CT中,ADMIRE和SAFIRE这两种IR技术相对于FBP均实现了显著的噪声降低和图像质量改善。ADMIRE表现出对低频和高频图像噪声的增强抑制以及更少的伪影,而SAFIRE保留了图像对比度并降低了中频噪声。这些发现支持了迭代重建根据ALARA原则优化NECT方案中辐射剂量的潜力,尽管需要在多厂商、多中心环境中进行更广泛的验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b31e/12192471/b640000bdd73/diagnostics-15-01541-g001.jpg

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