Dept. of Med. & Phys., Queen's Univ., Kingston, Ont.
IEEE Trans Med Imaging. 1994;13(1):176-85. doi: 10.1109/42.276156.
QPET is a positron imaging system developed at Queen's University for high-resolution, 3D imaging of small volumes; it includes a pair of planar gamma-ray detectors 25.4 cm square, which rotate about a central axis with a quasi-cylindrical geometry. The authors describe the performance of this system. Basic characteristics of the detectors are evaluated: a spatial sampling of 1 mm, a quantum efficiency of 9.3% (for 511 keV gamma rays with normal incidence), and a time resolution of 88 ns. Models are developed to characterize the system deadtime and the sensitivity in terms of the noise-equivalent counting rate. With an 8 cm diameter spherical source, the noise-equivalent counting rate reaches a maximum at just over 3 kcps for an activity concentration of 2 muCi/cc; the random coincidence events and the deadtime losses both contribute significantly and the scatter contribution is small. Spatial resolution and uniformity over the field of view are evaluated by imaging short and long line sources; a spatial resolution of 2.7 mm in the transverse directions and 2.0 mm in the axial direction is achieved, with excellent uniformity throughout the field of view. The detector response is amplitude invariant across a 20 cm transverse diameter and a 9 cm axial length with the acceptance angle limited to +/-25 degrees in the axial direction. As an example of the imaging capabilities of QPET, the authors show 3D images of (18)F uptake in the bones of a rat, showing the excellent spatial resolution. This system is best suited to limited-volume applications where high counting rates are not necessary, but where high spatial resolution and uniform detector response are priorities.
QPET 是一款由皇后大学开发的正电子成像系统,用于对小体积进行高分辨率、3D 成像;它包括一对 25.4 厘米见方的平面伽马射线探测器,绕着一个具有准圆柱几何形状的中心轴旋转。作者描述了该系统的性能。评估了探测器的基本特性:空间采样为 1 毫米、量子效率为 9.3%(对于正常入射的 511keV 伽马射线)和时间分辨率为 88ns。开发了模型来描述系统的死时间和灵敏度,以噪声等效计数率为单位。对于直径为 8 厘米的球形源,在活动浓度为 2μCi/cc 时,噪声等效计数率在略高于 3 kcps 时达到最大值;随机符合事件和死时间损失都有很大的贡献,而散射贡献较小。通过对短和长线源成像来评估空间分辨率和视场中的均匀性;在横向方向上达到了 2.7 毫米的空间分辨率和在轴向方向上达到了 2.0 毫米的空间分辨率,整个视场中具有极好的均匀性。在轴向方向上接受角限制为 +/-25 度的情况下,探测器的响应在 20 厘米的横向直径和 9 厘米的轴向长度内是幅度不变的。作为 QPET 成像能力的一个示例,作者展示了在一只老鼠的骨骼中摄取(18)F 的 3D 图像,显示了极好的空间分辨率。该系统最适合于不需要高计数率但需要高空间分辨率和均匀探测器响应的有限体积应用。