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Original Research

Cross Talk Experiment with Two-element CdTe Detector and Collimator for BNCT-SPECT

원문정보

초록

영어

Background: Boron Neutron Capture Therapy (BNCT) is a new radiation therapy. In BNCT, there exists some very critical problems that should be solved. One of the severest problems is that the treatment effect cannot be known during BNCT in real time. We are now developing a SPECT (single photon emission computed tomography) system (BNCT-SPECT), with a cadmium telluride (CdTe) semiconductor detector. BNCT-SPECT can obtain the BNCT treatment effect by measuring 478 keV gamma-rays emitted from the excited state of 7Li nucleus created by 10B(n,α) 7Li reaction. In the previous studies, we investigated the feasibility of the BNCTSPECT system. As a result, the S/N ratio did not meet the criterion of S/N > 1 because deterioration of the S/N ratio occurred caused by the influence of Compton scattering especially due to capture gamma-rays of hydrogen. Materials and Methods: We thus produced an arrayed detector with two CdTe crystals to test cross talk phenomenon and to examine an anti-coincidence detection possibility. For more precise analysis for the anti-coincidence detection, we designed and made a collimator having a similar performance to the real BNCT-SPECT. Results and discussion: We carried out experiments with the collimator to examine the effect of cross talk of scattering gamma-rays between CdTe elements more practically. As a result of measurement the coincidence events were successfully extracted. Conclusion: We are now planning to carry out evaluation of coincidence rate from the measurement and comparison of it with the numerical calculations.

목차

ABSTRACT
 Introduction
 Materials and Methods
  1. Two-element CdTe detector
  2. Collimator
  3. Experimental system
 Results and Discussion
 Conclusion
 References

저자정보

  • Masanobu Manabe Osaka University, Osaka, Japan
  • Ryosuke Ohya Osaka University, Osaka, Japan
  • Nobuhide Saraue Osaka University, Osaka, Japan
  • Fuminobu Sato Osaka University, Osaka, Japan
  • Isao Murata Osaka University, Osaka, Japan

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