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HURRA滤波器:一种消除高能γ相机图像中准直器伪影的简便方法。

The HURRA filter: An easy method to eliminate collimator artifacts in high-energy gamma camera images.

作者信息

Perez-Garcia H, Barquero R

机构信息

Radiofísica y Protección Radiológica, Hospital Clínico Universitario de Valladolid, Spain.

Radiofísica y Protección Radiológica, Hospital Clínico Universitario de Valladolid, Spain.

出版信息

Rev Esp Med Nucl Imagen Mol. 2017 Jan-Feb;36(1):27-36. doi: 10.1016/j.remn.2016.06.003. Epub 2016 Jul 16.

Abstract

PURPOSE

The correct determination and delineation of tumor/organ size is crucial in 2-D imaging in I therapy. These images are usually obtained using a system composed of a Gamma camera and high-energy collimator, although the system can produce artifacts in the image. This article analyses these artifacts and describes a correction filter that can eliminate those collimator artifacts.

METHODS

Using free software, ImageJ, a central profile in the image is obtained and analyzed. Two components can be seen in the fluctuation of the profile: one associated with the stochastic nature of the radiation, plus electronic noise and the other periodically across the position in space due to the collimator. These frequencies are analytically obtained and compared with the frequencies in the Fourier transform of the profile. A specially developed filter removes the artifacts in the 2D Fourier transform of the DICOM image. This filter is tested using a 15-cm-diameter Petri dish with I radioactive water (big object size) image, a I clinical pill (small object size) image, and an image of the remainder of the lesion of two patients treated with 3.7GBq (100mCi), and 4.44GBq (120mCi) of I, respectively, after thyroidectomy.

RESULTS

The artifact is due to the hexagonal periodic structure of the collimator. The use of the filter on large-sized images reduces the fluctuation by 5.8-3.5%. In small-sized images, the FWHM can be determined in the filtered image, while this is impossible in the unfiltered image. The definition of tumor boundary and the visualization of the activity distribution inside patient lesions improve drastically when the filter is applied to the corresponding images obtained with HE gamma camera.

CONCLUSION

The HURRA filter removes the artifact of high-energy collimator artifacts in planar images obtained with a Gamma camera without reducing the image resolution. It can be applied in any study of patient quantification because the number of counts remains invariant. The filter makes possible the definition and delimitation of small uptakes, such as those presented in treatments with I.

摘要

目的

在碘治疗的二维成像中,正确测定和描绘肿瘤/器官大小至关重要。这些图像通常使用由伽马相机和高能准直器组成的系统获取,尽管该系统会在图像中产生伪影。本文分析了这些伪影,并描述了一种可消除那些准直器伪影的校正滤波器。

方法

使用免费软件ImageJ获取并分析图像中的中心轮廓。在轮廓波动中可看到两个成分:一个与辐射的随机性质、电子噪声相关,另一个由于准直器而在空间位置上呈周期性。通过分析获得这些频率,并与轮廓的傅里叶变换中的频率进行比较。一个专门开发的滤波器可去除DICOM图像二维傅里叶变换中的伪影。使用直径15厘米的培养皿装碘放射性水(大物体尺寸)图像、碘临床药丸(小物体尺寸)图像以及分别用3.7GBq(100mCi)和4.44GBq(120mCi)碘治疗的两名患者甲状腺切除术后病变剩余部分的图像对该滤波器进行测试。

结果

伪影是由准直器的六边形周期性结构引起的。在大尺寸图像上使用该滤波器可使波动降低5.8 - 3.5%。在小尺寸图像中,可在滤波后的图像中确定半高宽,而在未滤波的图像中则无法做到。当将该滤波器应用于用高能伽马相机获得的相应图像时,肿瘤边界的清晰度以及患者病变内活性分布的可视化得到显著改善。

结论

HURRA滤波器可去除伽马相机获取的平面图像中高能准直器伪影,且不降低图像分辨率。它可应用于任何患者定量研究,因为计数数量保持不变。该滤波器使得定义和界定小的摄取成为可能,例如碘治疗中出现的那些摄取。

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