Niimi Takanaga, Nanasato Mamoru, Sugimoto Mitsuo, Maeda Hisatoshi
1Department of Radiological Technology, Nagoya Daini Red Cross Hospital, 2-9 Myouken-cho, Showa-ku, Nagoya, 466-8650 Japan.
2Cardiovascular Center, Nagoya Daini Red Cross Hospital, 2-9 Myouken-cho, Showa-ku, Nagoya, 466-8650 Japan.
Nucl Med Mol Imaging. 2019 Feb;53(1):57-63. doi: 10.1007/s13139-018-0559-0. Epub 2018 Dec 12.
A recently introduced single-photon emission computed tomography (SPECT), based on cadmium-zinc-telluride (CZT) detectors (D-SPECT), supports high energy resolution for cardiac imaging. Importantly, the high energy resolution may allow simultaneous dual-isotope (SDI) imaging (e.g., using Tc-99m and I-123). We quantitatively evaluated Tc-99m/I-123 SDI imaging by D-SPECT in comparison with conventional T1-201/I-123.
Energy resolution was measured as a percentage of the full width at half maximum (FWHM) for Tc-99m, I-123, and Tl-201. The impact of cross-talk and reconstructed image contrast were quantified by measuring the contrast-to-noise ratio (CNR), and the transmural defect contrast in the left ventricle wall ( ) induced by a difference in energy, for combinations of Tc-99m/I-123 or Tl-201/I-123, using an RH-2 cardiac phantom. Corresponding measurement was also carried out in Anger SPECT (A-SPECT).
The energy resolution of the D-SPECT system was 5.4%/5.1% for Tc-99m/I-123 and 5.4%/5.3% for Tl-201/I-123, which was approximately two times higher than the A-SPECT. No notable difference was confirmed in the CNRs of the two systems, but T1-201/I-123 showed overall higher value than Tc-99m/I-123. Compared to A-SPECT, of D-SPECT significantly increased with both Tc-99m/I-123 and T1-201/I-123 ( < 0.05). In DSPECT, the combination of Tc-99m/I-123 had a slightly better than T1-201/I-123. In addition, of Tc-99m/I-123 was improved with scatter correction at both nuclides ( < 0.05), but in Tl-201/I-123, no significant improvement was confirmed in I-123 ( > 0.05).
D-SPECT was considered to be capable of performing high-quality SDI imaging using Tc-99m/I-123.
最近推出的一种基于碲镉锌(CZT)探测器的单光子发射计算机断层扫描(SPECT)(D-SPECT),支持心脏成像的高能量分辨率。重要的是,高能量分辨率可能允许同时进行双同位素(SDI)成像(例如,使用锝-99m和碘-123)。我们通过D-SPECT对锝-99m/碘-123 SDI成像进行了定量评估,并与传统的铊-201/碘-123成像进行了比较。
测量锝-99m、碘-123和铊-201的能量分辨率,以半高宽(FWHM)的百分比表示。使用RH-2心脏模型,通过测量对比度噪声比(CNR)以及因能量差异导致的左心室壁透壁缺损对比度( ),对串扰和重建图像对比度的影响进行量化,用于锝-99m/碘-123或铊-201/碘-123的组合。在安格SPECT(A-SPECT)中也进行了相应测量。
D-SPECT系统对于锝-99m/碘-123的能量分辨率为5.4%/5.1%,对于铊-201/碘-123为5.4%/5.3%,约为A-SPECT的两倍。两个系统的CNR未确认有显著差异,但铊-201/碘-123总体上比锝-99m/碘-123的值更高。与A-SPECT相比,D-SPECT在锝-99m/碘-123和铊-201/碘-123时的 均显著增加( <0.05)。在D-SPECT中,锝-99m/碘-123的组合比铊-201/碘-123的 略好。此外,对两种核素进行散射校正后,锝-99m/碘-123的 有所改善( <0.05),但在铊-201/碘-123中,碘-123未确认有显著改善( >0.05)。
D-SPECT被认为能够使用锝-99m/碘-1