Compared vulnerabilities to small cardiac motions between different cameras used for myocardial perfusion imaging

J Nucl Cardiol. 2019 Aug;26(4):1313-1322. doi: 10.1007/s12350-017-1175-6. Epub 2018 Jan 11.

Abstract

This phantom-based study was aimed to determine whether cardiac CZT-cameras, which provide an enhanced spatial resolution and image contrast compared to Anger cameras, are similarly affected by small cardiac motions. Translations of a left ventricular (LV) insert at half-SPECT acquisitions through six possible orthogonal directions and with 5- or 10-mm amplitude were simulated on the Discovery NM-530c and DSPECT CZT-cameras and on an Anger Symbia T2 camera equipped with an astigmatic (IQ.SPECT) or conventional parallel-hole collimator (Conv.SPECT). SPECT images were initially reconstructed as currently recommended for clinical routine. The heterogeneity in recorded activity from the 17 LV segments gradually increased between baseline and motions simulated at 5- and 10-mm amplitudes with all cameras, although being higher for Anger- than CZT-cameras at each step and resulting in a higher mean number of artifactual abnormal segments (at 10-mm amplitude, Conv.SPECT: 3.7; IQ.SPECT: 1.8, Discovery: 0.7, DSPECT: 0). However, this vulnerability to motion was markedly (1) decreased for Conv.SPECT reconstructed without the recommended Resolution Recovery algorithm and (2) increased for DSPECT reconstructed without the recommended cardiac model. CZT-cameras and especially the DSPECT appear less vulnerable to small cardiac motions than Anger-cameras although these differences are strongly dependent on reconstruction parameters.

Keywords: CZT-cameras; anger-cameras; artifacts; myocardial perfusion imaging; patient motions.

Publication types

  • Comparative Study

MeSH terms

  • Artifacts
  • Heart / diagnostic imaging*
  • Humans
  • Models, Cardiovascular
  • Motion*
  • Myocardial Perfusion Imaging / instrumentation*
  • Phantoms, Imaging
  • Reproducibility of Results
  • Tomography, Emission-Computed, Single-Photon / instrumentation*