Matsunari Ichiro, Miyazaki Yoshiharu, Kobayashi Masato, Nishi Kodai, Mizutani Asuka, Kawai Keiichi, Hayashi Akiko, Komatsu Ryoko, Yonezawa Shoko, Kinuya Seigo
Clinical Research Department, The Medical and Pharmacological Research Center Foundation, Wo 32, Inoyama, Hakui, Ishikawa, 925-0613, Japan,
Ann Nucl Med. 2014 Jun;28(5):484-97. doi: 10.1007/s12149-014-0828-7. Epub 2014 Mar 8.
The eXplore speCZT is a recently introduced cadmium zinc telluride-based preclinical SPECT system that has a stationary detector design with interchangeable rotating collimators. Our aim was to evaluate the performance of the eXplore speCZT using 99mTc-sources. In particular, the image quality was assessed using the National Electrical Manufacturers Association NU-4 image quality phantom as well as an in vivo mouse.
Energy resolution, sensitivity and spatial resolution were measured using 99mTc sources. Image quality was assessed using NU-4 image quality phantom. The measurements were performed for 4 available collimators: (1) mouse 7-pinhole collimator (mouse PH); (2) mouse 8-slit collimator (mouse SL); (3) rat 5-pinhole collimator (rat PH); and (4) rat 5-slit collimator (rat SL). Furthermore, a mouse bone imaging study was performed using mouse PH and mouse SL.
The system achieved the energy resolution of 5.5% in full-width at half maximum (FWHM) at 140 keV using a 99mTc source. Without resolution recovery function, the system provided a near millimeter transaxial and axial spatial resolution using mouse PH. Mouse SL and rat SL provided reasonably good transaxial (1.79-2.00 mm in FWHM), but much worse axial resolutions (4.55-4.96 mm in FWHM). The use of resolution recovery significantly improved spatial resolution by in average 31±3 or 35±4% in FWHM or full-width at tenth maximum, respectively. In particular, a sub-millimeter resolution of 0.71 mm in FWHM was achieved in either transaxial or axial direction with mouse PH. Using NU-4 phantom, the uniformity of slit collimators as expressed as percentage standard deviation was generally better than that of pinhole collimators. The use of resolution recovery substantially improved uniformity for all the collimators tested, but caused some overestimation in recovery coefficient. Reconstruction settings such as iteration or subset number significantly affected image quality measures. Finally, bone images of acceptable quality were obtained in in vivo mouse using mouse PH with resolution recovery.
The overall performance shows that the eXplore speCZT system is suitable for preclinical imaging-based research using small-animals.
eXplore speCZT是最近推出的一种基于碲化镉锌的临床前单光子发射计算机断层显像(SPECT)系统,其探测器设计固定,准直器可旋转。我们的目的是使用99mTc源评估eXplore speCZT的性能。特别是,使用美国国家电气制造商协会(National Electrical Manufacturers Association)的NU-4图像质量体模以及活体小鼠来评估图像质量。
使用99mTc源测量能量分辨率、灵敏度和空间分辨率。使用NU-4图像质量体模评估图像质量。对4种可用准直器进行测量:(1)小鼠7针孔准直器(小鼠PH);(2)小鼠8狭缝准直器(小鼠SL);(3)大鼠5针孔准直器(大鼠PH);以及(4)大鼠5狭缝准直器(大鼠SL)。此外,使用小鼠PH和小鼠SL进行了小鼠骨成像研究。
使用99mTc源时,该系统在140 keV能量下的半高宽(FWHM)能量分辨率达到5.5%。在没有分辨率恢复功能的情况下,使用小鼠PH时,该系统提供了接近毫米级的横向和轴向空间分辨率。小鼠SL和大鼠SL提供了相当好的横向分辨率(FWHM为1.79 - 2.00 mm),但轴向分辨率要差得多(FWHM为4.55 - 4.96 mm)。使用分辨率恢复功能分别使横向或十分之一最大宽度处的空间分辨率在FWHM中平均显著提高31±3%或在十分之一最大宽度处平均显著提高35±4%。特别是,使用小鼠PH时,在横向或轴向方向上FWHM均实现了0.71 mm的亚毫米级分辨率。使用NU-4体模时,狭缝准直器以标准偏差百分比表示的均匀性通常优于针孔准直器。使用分辨率恢复功能显著提高了所有测试准直器的均匀性,但在恢复系数方面导致了一些高估。诸如迭代或子集数量等重建设置显著影响图像质量测量。最后,使用具有分辨率恢复功能的小鼠PH在活体小鼠中获得了质量可接受的骨图像。
总体性能表明,eXplore speCZT系统适用于基于小动物的临床前成像研究。