Energy calibration of a CdTe photon counting spectral detector with consideration of its non-convergent behavior

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Abstract

Fast and accurate energy calibration of photon counting spectral detectors (PCSDs) is essential for their biomedical applications to identify and characterize bio-components or contrast agents in tissues. Using the x-ray tube voltage as a reference for energy calibration is known to be an efficient method, but there has been no consideration in the energy calibration of non-convergent behavior of PCSDs. We observed that a single pixel mode (SPM) CdTe PCSD based on Medipix-2 shows some non-convergent behaviors in turning off the detector elements when a high enough threshold is applied to the comparator that produces a binary photon count pulse. More specifically, the detector elements are supposed to stop producing photon count pulses once the threshold reaches a point of the highest photon energy determined by the tube voltage. However, as the x-ray exposure time increases, the threshold giving 50% of off pixels also increases without converging to a point. We established a method to take account of the non-convergent behavior in the energy calibration. With the threshold-to-photon energy mapping function established by the proposed method, we could better identify iodine component in a phantom consisting of iodine and other components.

Figures

  • Figure 2. An example of the pixel responses to the exposure time. Only the pixels that have R2 value bigger than 0.999 at the linear fitting were used for the energy calibration.
  • Figure 2. An example of the pixel responses to the exposure time. Only the pixels that have R2 value bigger than 0.999 at the linear fitting were used for the energy calibration.
  • Table 1. Mean and variance of the photon counts at a good pixel in 400 measurements. The exposure
  • Figure 3. Fraction of OFF pixels with respect to the threshold DAC observed with the tube voltages of 40, 45, 50, 55 and 60 kVp. The tube current was 200 μA and the exposure time was 20 s.
  • Figure 6. The derived mapping function between the photon energy and the threshold DAC.
  • Figure 7. (a) A schematic illustration of the phantom consisting of two tubes filled with iodine solution and CuSO4 solution, respectively, and an aluminum bar. (b) A projection image of the phantom taken with a field of view marked as a dashed box at 60 kVp, 200 μA, 15 s.
  • Figure 8. The derivatives of the projection images at the regions of iodine, CuSO4, and aluminum.
  • Table 2. Iodine k-edge energies estimated from the mapping functions derived with different exposure times.

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CITATION STYLE

APA

Lee, J. S., Kang, D. G., Jin, S. O., Kim, I., & Lee, S. Y. (2016). Energy calibration of a CdTe photon counting spectral detector with consideration of its non-convergent behavior. Sensors (Switzerland), 16(4). https://doi.org/10.3390/s16040518

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