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基于平板探测器的 X 射线透视成像系统中帧率转换的辐射剂量降低:基础研究和临床回顾性分析。

Radiation dose reduction with frame rate conversion in X-ray fluoroscopic imaging systems with flat panel detector: basic study and clinical retrospective analysis.

机构信息

Department of Radiology, The University of Tokyo Hospital, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8655, Japan.

出版信息

Eur Radiol. 2019 Feb;29(2):985-992. doi: 10.1007/s00330-018-5620-y. Epub 2018 Jul 9.

Abstract

OBJECTIVES

To (a) evaluate the interpolation frames of frame rate conversion (FRC) compared with fluoroscopic frames of conventional method, and (b) compare radiation dose and fluoroscopy time between various clinical examinations without and with FRC retrospectively.

METHODS

This study consisted of a basic study and a clinical retrospective analysis. The radiation dosimetry, visual assessment and measurements of contrast to noise ratio were examined. Similarity between interpolation frames and fluoroscopic frames was evaluated using normalised cross-correlation values. In the clinical retrospective analysis approved by the institutional review board, we extracted 270 examinations performed without FRC (conventional group, 12.5 pulses/s) and with FRC (FRC group, 6.25 pulses/s) from 23 May to 31 December 2016. The fluoroscopy parameters and demographics of the two groups of the clinical examinations were compared. Statistical analyses were performed with Wilcoxon signed-rank test, Brunner-Munzel test and χ test.

RESULTS

In the basic study, the only significant difference was that the radiation dose of FRC was approximately half that of the conventional method in the same fluoroscopy time (p = .031). The interpolation frames of FRC were similar to the fluoroscopic frames of the conventional method. In the clinical retrospective analysis, the only significant difference was that FRC reduced the fluoroscopy dose by 48% and the total dose by 31% compared with the conventional method (p < .001). There was no significant difference in the others.

CONCLUSION

FRC significantly reduced the radiation dose without extending the fluoroscopy time and maintaining the image quality compared to the conventional method.

KEY POINTS

• Although X-ray fluoroscopic techniques are widely used for various clinical purposes, X-ray fluoroscopic examinations have radiation risks. • Frame rate conversion is an image processing technique for radiation dose reduction. • Clinical retrospective analysis showed that FRC reduces radiation doses of patients.

摘要

目的

(a)评估帧率转换(FRC)的插值帧与传统方法的透视帧相比,(b)回顾性比较有无 FRC 的各种临床检查的辐射剂量和透视时间。

方法

本研究包括基础研究和临床回顾性分析。检查了辐射剂量学、视觉评估和对比噪声比测量。使用归一化互相关值评估插值帧与透视帧之间的相似性。在机构审查委员会批准的临床回顾性分析中,我们从 2016 年 5 月 23 日至 12 月 31 日提取了 270 次无 FRC(常规组,12.5 脉冲/秒)和有 FRC(FRC 组,6.25 脉冲/秒)的检查。比较了两组临床检查的透视参数和人口统计学特征。使用 Wilcoxon 符号秩检验、Brunner-Munzel 检验和 χ 检验进行统计分析。

结果

在基础研究中,唯一的显著差异是在相同透视时间内,FRC 的辐射剂量约为传统方法的一半(p =.031)。FRC 的插值帧与传统方法的透视帧相似。在临床回顾性分析中,唯一的显著差异是与传统方法相比,FRC 降低了 48%的透视剂量和 31%的总剂量(p <.001)。其他方面没有显著差异。

结论

与传统方法相比,FRC 在不延长透视时间和保持图像质量的情况下,显著降低了辐射剂量。

关键点

• 尽管 X 射线透视技术广泛应用于各种临床目的,但 X 射线透视检查存在辐射风险。• 帧率转换是一种用于降低辐射剂量的图像处理技术。• 临床回顾性分析表明,FRC 降低了患者的辐射剂量。

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