图像分辨率
准直器
核医学
单光子发射计算机断层摄影术
成像体模
正电子发射断层摄影术
Spect成像
发射计算机断层扫描
分子成像
毫米
临床前影像学
光学
物理
材料科学
生物医学工程
医学
体内
生物技术
生物
作者
Oleksandra Ivashchenko,Frans van der Have,José L. Villena,Harald C. Groen,Ruud M. Ramakers,Harrie Weinans,Freek J. Beekman
出处
期刊:Molecular Imaging
[SAGE Publishing]
日期:2015-01-01
卷期号:14 (1)
被引量:51
标识
DOI:10.2310/7290.2014.00053
摘要
Limited spatial resolution of preclinical positron emission tomography (PET) and single-photon emission computed tomography (SPECT) has slowed down applications of molecular imaging in small animals. Here we present the latest-generation U-SPECT system (U-SPECT⁺, MILabs, Utrecht, the Netherlands) enabling radionuclide imaging of mice with quarter-millimeter resolution. The system was equipped with the newest high-resolution collimator with 0.25 mm diameter circular pinholes. It was calibrated with technetium-99 m point source measurements from which the system matrix was calculated. Images were reconstructed using pixel-based ordered subset expectation maximization (OSEM). Various phantoms and mouse SPECT scans were acquired. The reconstructed spatial resolution (the smallest visible capillary diameter in a hot-rod resolution phantom) was 0.25 mm. Knee joint images show tiny structures such as the femur epicondyle sulcus, as well as a clear separation between cortical and trabecular bone structures. In addition, time-activity curves of the lumbar spine illustrated that tracer dynamics in tiny tissue amounts could be measured. U-SPECT⁺ allows discrimination between molecular concentrations in adjacent volumes of as small as 0.015 μL, which is significantly better than can be imaged by any existing SPECT or PET system. This increase in the level of detail makes it more and more attractive to replace ex vivo methods and allows monitoring biological processes in tiny parts of organs in vivo.
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