An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated b...An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated by the transmitting-mode decomposition of the TR operator(DORT) method employing the signal subspace. Then, the TR multiple signal classification(TR-MUSIC)method employing the noise subspace is used in the estimated target area to get the superresolution imaging of targets. Two examples with homogeneous and inhomogeneous background mediums are considered, respectively. The results show that the proposed hybrid method has advantages in CPU time and memory cost because of the combination of rough and fine imaging.展开更多
A new segmentation method has been developed for PET fast imaging. The technique automatically segments the transmission images into different anatomical regions, it efficiently reduced the PET transmission scan time....A new segmentation method has been developed for PET fast imaging. The technique automatically segments the transmission images into different anatomical regions, it efficiently reduced the PET transmission scan time. The result shows that this method gives only 3 min-scan time which is perfect for attenuation correction of the PET images instead of the original 15-30 min-scan time. This approach has been successfully tested both on phantom and clinical data.展开更多
为了研究时间反转超声成像对乳腺微钙化检测的有效性,通过FieldⅡ超声仿真软件,分析相关参数设置对时间反转超声成像分辨率的影响,设置点散射子模拟乳腺微钙化,对比研究理想条件及不同噪声条件下时间反转超声成像算法对乳腺微钙化检测...为了研究时间反转超声成像对乳腺微钙化检测的有效性,通过FieldⅡ超声仿真软件,分析相关参数设置对时间反转超声成像分辨率的影响,设置点散射子模拟乳腺微钙化,对比研究理想条件及不同噪声条件下时间反转超声成像算法对乳腺微钙化检测的有效性.无论是理想条件下或是不同噪声条件下,时间反转超声成像均能突破传统B超成像分辨率极限,能够分辨出距离较近的点散射子,有效抑制噪声,而传统B超成像则对噪声较为敏感.时间反转超声成像可提高传统B超成像检测乳腺微钙化点的成像分辨率和抗噪能力.其中,时间反转多信号分类(time reversal with multiple signal classification,TR-MUSIC)成像能准确定位点散射子,但纵向分辨率低;相位相干时间反转多信号分类(phase-coherent with multiple signal classification,PC-MUSIC)提高了TR-MUSIC的纵向分辨率,但不能准确定位,需进行相位补偿.展开更多
基金supported by the National Natural Science Foundation of China(6130127161331007)+2 种基金the Specialized Research Fund for the Doctoral Program of Higher Education of China(2011018512000820120185130001)the Fundamental Research Funds for Central Universities(ZYGX2012J043)
文摘An efficient hybrid time reversal(TR) imaging method based on signal subspace and noise subspace is proposed for electromagnetic superresolution detecting and imaging. First, the locations of targets are estimated by the transmitting-mode decomposition of the TR operator(DORT) method employing the signal subspace. Then, the TR multiple signal classification(TR-MUSIC)method employing the noise subspace is used in the estimated target area to get the superresolution imaging of targets. Two examples with homogeneous and inhomogeneous background mediums are considered, respectively. The results show that the proposed hybrid method has advantages in CPU time and memory cost because of the combination of rough and fine imaging.
文摘A new segmentation method has been developed for PET fast imaging. The technique automatically segments the transmission images into different anatomical regions, it efficiently reduced the PET transmission scan time. The result shows that this method gives only 3 min-scan time which is perfect for attenuation correction of the PET images instead of the original 15-30 min-scan time. This approach has been successfully tested both on phantom and clinical data.
文摘为了研究时间反转超声成像对乳腺微钙化检测的有效性,通过FieldⅡ超声仿真软件,分析相关参数设置对时间反转超声成像分辨率的影响,设置点散射子模拟乳腺微钙化,对比研究理想条件及不同噪声条件下时间反转超声成像算法对乳腺微钙化检测的有效性.无论是理想条件下或是不同噪声条件下,时间反转超声成像均能突破传统B超成像分辨率极限,能够分辨出距离较近的点散射子,有效抑制噪声,而传统B超成像则对噪声较为敏感.时间反转超声成像可提高传统B超成像检测乳腺微钙化点的成像分辨率和抗噪能力.其中,时间反转多信号分类(time reversal with multiple signal classification,TR-MUSIC)成像能准确定位点散射子,但纵向分辨率低;相位相干时间反转多信号分类(phase-coherent with multiple signal classification,PC-MUSIC)提高了TR-MUSIC的纵向分辨率,但不能准确定位,需进行相位补偿.