...
首页> 外文期刊>Medical Physics >A blind deconvolution method incorporated with anatomical‐based filtering for partial volume correction: Validations with 123 123 I‐mIBG cardiac SPECT/CT
【24h】

A blind deconvolution method incorporated with anatomical‐based filtering for partial volume correction: Validations with 123 123 I‐mIBG cardiac SPECT/CT

机译:一种盲解卷积方法,其具有基于解剖学的部分体积校正的滤波:123 123 I-MIBG心脏SPECT / CT的验证

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose Segmentation of contrast‐enhanced CT and measurement of SPECT point spread function (PSF) are usually required for conventional partial volume correction (PVC). This study was to develop a segmentation‐free method with blind deconvolution (BD) and anatomical‐based filtering for SPECT PVC. Methods The proposed method was implemented using an iterative BD algorithm to estimate the restored image and the PSF simultaneously. An anatomical‐based filtering was implemented at each iteration to reduce Gibbs artifact and suppress noise amplification in the deconvolution process. The proposed method was validated with 123 I‐metaiodobenzylguanidine ( 123 I‐mIBG) SPECT/CT imaging of NCAT phantoms with and without myocardial perfusion defect and a physical cardiac phantom. Fifteen heart‐to‐mediastinum ratios (HMRs) were configured in the NCAT and physical phantoms. Correlations between SPECT‐quantified and true HMRs were calculated from images without PVC as well as from BD restored images. The proposed method was also performed on a human 123 I‐mIBG study. Results Relative bias and standard deviation images of NCAT phantoms showed that the proposed method reduced both bias and noise. Mean relative bias in the simulated normal myocardium was markedly improved (?16.8%?±?0.4% versus ?0.8%?±?0.6% for low noise level; ?16.7%?±?0.7% versus ?2.3%?±?0.9% for high noise level). Mean relative bias in the simulated myocardial defect was also noticeably improved (?12.7%?±?1.2% versus 1.2%?±?1.6% for low noise level; ?13.5%?±?2.4% versus ?0.9%?±?2.8% for high noise level). The signal to noise ratio (SNR) of the defect was improved from 2.95?±?0.09 to 4.07?±?0.16 for low noise level (38% increase of mean), and from 2.56?±?0.15 to 3.62?±?0.22 for high noise level (41% increase of mean). For both NCAT and physical phantoms, HMRs calculated from images without PVC were underestimated (correlations between SPECT‐quantified and true HMRs: y?=?0.81x?+?0.1 for NCAT phantom; y?=?0.82x?+?0.14 for physical phantom). HMRs from BD restored images were markedly improved (correlations between SPECT‐quantified and true HMRs: y?=?x?+?0.05 for NCAT phantom; y?=?0.97x???0.12 for physical phantom). After applying the proposed PVC method, the estimation error between the SPECT‐quantified and true HMRs was significantly reduced from ?0.75?±?0.57 to 0.04?±?0.17 for NCAT phantom ( P ?=?8e‐05), and from ?0.68?±?0.67 to ?0.26?±?0.42 for physical phantom ( P ?=?0.005). The human study demonstrated that the HMR increased by 8% with PVC. Conclusions The proposed segmentation‐free PVC method has the potential of improving SPECT quantification accuracy and reducing noise without the need for premeasuring the image PSF.
机译:对于传统的部分体积校正(PVC),通常需要对比度增强CT的目的分割和SPECT点扩展功能(PSF)的测量。该研究是利用盲解卷积(BD)和基于解剖学的SPECT PVC过滤进行分割方法。方法使用迭代BD算法实现所提出的方法,以同时估计还原图像和PSF。在每次迭代中实现了基于解剖学的滤波,以减少吉布斯伪像并抑制解构过程中的噪声放大。该方法用123酮碘苄基胍(123Ⅰ-MIBG)SPECT / CT成像的NCAT幻影,具有和没有心肌灌注缺陷和物理心脏幻影。在NCAT和物理幻影中配置了十五个心肺〜Mapstinum比率(HMRS)。 SPECT定量和真正的HMR之间的相关性来自没有PVC的图像以及来自BD恢复的图像。该方法还对人123 I-MIBG研究进行了。结果NCAT幻像的相对偏差和标准偏差图像显示该方法减少了偏差和噪声。模拟正常心肌中的平均相对偏差显着改善(α±16.8%?±0.4%与Δ0≤0.8%?±0.6%,用于低噪声水平;?16.7%?±0.7%与?2.3%?±0.9高噪声水平的%)。模拟心肌缺陷中的平均相对偏见也明显改善(?12.7%?±1.2%与1.2%相比,低噪声水平;?13.5%?±2.2%与Δ0.9%?±2.8高噪声水平的%)。缺陷的信噪比(SNR)从2.95?±0.09至4.07?±0.16,用于低噪声水平(平均值增加38%),从2.56?±0.15到3.62?±0.22对于高噪声水平(平均值增加41%)。对于NCAT和物理模偶,低估了从没有PVC的图像计算的HMR(SPECT定量和真正的HMR之间的相关性:Y?=?0.81×+?0.1对于NCAT幻影; Y?=?0.82x?+ 0.14物理幻影)。来自BD恢复图像的HMRS显着改进(SPECT定量和真正的HMR之间的相关性:Y?=?x?+?0.05对于NCAT幻影; Y?=?0.97x为0.12的物理幻影)。在施加所提出的PVC方法后,SPECT定量和真正的HMR之间的估计误差从Δ0.75?±0.57〜0.04?±0.17至0.17°(p?=?8e-05),来自? 0.68?±0.67至α0.26?±0.42用于物理幻影(p?= 0.005)。人类研究证明,HMR随PVC增加了8%。结论所提出的无分割PVC方法具有提高SPECT定量精度和降低噪声的可能性,而无需更新图像PSF。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号