Dipartimento di Scienze Fisiche, Università di Napoli Federico II, I-80126 Napoli, Italy.
Phys Med Biol. 2011 Apr 7;56(7):1947-65. doi: 10.1088/0031-9155/56/7/003. Epub 2011 Mar 2.
The first performance tests are presented of a carbon-14 ((14)C) beta-particle digital autoradiography system with an energy-sensitive hybrid silicon pixel detector based on the Timepix readout circuit. Timepix was developed by the Medipix2 Collaboration and it is similar to the photon-counting Medipix2 circuit, except for an added time-based synchronization logic which allows derivation of energy information from the time-over-threshold signal. This feature permits direct energy measurements in each pixel of the detector array. Timepix is bump-bonded to a 300 µm thick silicon detector with 256 × 256 pixels of 55 µm pitch. Since an energetic beta-particle could release its kinetic energy in more than one detector pixel as it slows down in the semiconductor detector, an off-line image analysis procedure was adopted in which the single-particle cluster of hit pixels is recognized; its total energy is calculated and the position of interaction on the detector surface is attributed to the centre of the charge cluster. Measurements reported are detector sensitivity, (4.11 ± 0.03) × 10(-3) cps mm(-2) kBq(-1) g, background level, (3.59 ± 0.01) × 10(-5) cps mm(-2), and minimum detectable activity, 0.0077 Bq. The spatial resolution is 76.9 µm full-width at half-maximum. These figures are compared with several digital imaging detectors for (14)C beta-particle digital autoradiography.
首次展示了一种基于 Timepix 读出电路的碳-14((14)C)β粒子数字放射自显影系统的性能测试,该系统具有能量敏感型混合硅像素探测器。Timepix 是由 Medipix2 合作研发的,与光子计数型 Medipix2 电路类似,只是增加了基于时间的同步逻辑,可以从过阈值信号中得出能量信息。该功能允许在探测器阵列的每个像素中进行直接能量测量。Timepix 通过凸块键合到一个 300 µm 厚的硅探测器上,该探测器具有 256×256 个 55 µm 间距的像素。由于在半导体探测器中减速时,一个高能β粒子可能会在多个探测器像素中释放其动能,因此采用了离线图像分析程序,其中识别单个粒子击中像素的簇;计算其总能量,并将相互作用的位置归因于电荷簇的中心。报告的测量结果包括探测器灵敏度(4.11 ± 0.03)×10(-3)cps mm(-2)kBq(-1)g,背景水平(3.59 ± 0.01)×10(-5)cps mm(-2),和最小可检测活度 0.0077 Bq。空间分辨率为 76.9 µm 半峰全宽。这些数字与几种用于 (14)Cβ粒子数字放射自显影的数字成像探测器进行了比较。