首页> 外文会议>Bioelectronics, biomedical, and bioinspired systems V; and Nanotechnology V >Design of a smart SiPM based on focal-plane processing elements for improved spatial resolution in PET
【24h】

Design of a smart SiPM based on focal-plane processing elements for improved spatial resolution in PET

机译:基于焦平面处理元件的智能SiPM设计,可提高PET中的空间分辨率

获取原文
获取原文并翻译 | 示例

摘要

Single-photon avalanche diodes are compatible with standard CMOS. It means that photo-multipliers for scintillation detectors in nuclear medicine (i. e. PET, SPECT) can be built in inexpensive technologies. These silicon photo-multipliers consist in arrays of, usually passively-quenched, SPADs whose output current is sensed by some analog readout circuitry. In addition to the implementation of photosensors that are sensitive to singlephoton events, analog, digital and mixed-signal processing circuitry can be included in the same CMOS chip. For instance, the SPAD can be employed as an event detector, and with the help of some in-pixel circuitry, a digitized photo-multiplier can be built in which every single-photon detection event is summed up by a counter. Moreover, this concurrent processing circuitry can be employed to realize low level image processing tasks. They can be efficiently implemented by this architecture given their intrinsic parallelism. Our proposal is to operate onto the light-induced signal at the focal plane in order to obtain a more elaborated record of the detection. For instance, by providing some characterization of the light spot. Information about the depth-of-interaction, in scintillation detectors, can be derived from the position and shape of the scintillation light distribution. This will ultimately have an impact on the spatial resolution that can be achieved. We are presenting the design in CMOS of an array of detector cells. Each cell contains a SPAD, an MOS-based passive quenching circuit and drivers for the column and row detection lines
机译:单光子雪崩二极管与标准CMOS兼容。这意味着可以用廉价的技术来制造用于核医学中的闪烁检测器的光电倍增器(即,PET,SPECT)。这些硅光电倍增管由通常无源调压的SPAD阵列组成,其输出电流由某些模拟读出电路感测。除了实现对单光子事件敏感的光电传感器之外,模拟,数字和混合信号处理电路也可以包含在同一CMOS芯片中。例如,SPAD可以用作事件检测器,借助一些像素内电路,可以构建一个数字化的光电倍增器,其中每个单光子检测事件都由一个计数器求和。而且,该并发处理电路可以用来实现低级图像处理任务。鉴于其固有的并行性,可以通过此体系结构有效地实现它们。我们的建议是对焦平面处的光感应信号进行操作,以获得更详细的检测记录。例如,通过提供光斑的某些特征。可以从闪烁光分布的位置和形状中得出有关闪烁检测器中相互作用深度的信息。这最终将对可以实现的空间分辨率产生影响。我们将在CMOS阵列中展示探测器单元的设计。每个单元包含一个SPAD,一个基于MOS的无源淬灭电路以及用于行和行检测线的驱动器

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号