Medical electrical equipment. Characteristics of digital X-ray imaging devices - Determination of the detective quantum efficiency. Detectors used in dynamic imaging

Medical electrical equipment. Characteristics of digital X-ray imaging devices - Determination of the detective quantum efficiency. Detectors used in dynamic imaging

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BS EN 62220-1-3:2008 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Determination of the detective quantum efficiency. Detectors used in dynamic imaging

BS EN 62220-1-3 specifies the method for the determination of the DETECTIVE QUANTUM EFFICIENCY (DQE) of DIGITAL X-RAY IMAGING DEVICES as a function of AIR KERMA and of SPATIAL FREQUENCY for the working conditions in the range of the medical application as specified by the MANUFACTURER. BS EN 62220-1-3 is intended for manufacturers and well equipped test laboratories.

BS EN 62220-1-3 is restricted to DIGITAL X-RAY IMAGING DEVICES that are used for dynamic imaging such as, but not exclusively, direct and indirect flat panel-detector based systems.

BS EN 62220-1-3 is not recommended for digital X-RAY IMAGE INTENSIFIER-based systems.

BS EN 62220-1-3 does not apply to:

  • DIGITAL X-RAY IMAGING DEVICES intended to be used in mammography or in dental radiography
  • COMPUTED TOMOGRAPHY
  • Systems in which the X-ray field is scanned across the patient.

Contents of BS EN 62220-1-3:

  • Introduction
  • Scope
  • Normative references
  • Terms and definitions
  • Requirements
  • Operating conditions
  • X-RAY EQUIPMENT
  • RADIATION QUALITY
  • TEST DEVICE
  • Geometry
  • IRRADIATION conditions
  • General conditions
  • AIR KERMA measurement
  • LAG EFFECTS
  • IRRADIATION to obtain the CONVERSION FUNCTION
  • IRRADIATION for determination of the NOISE POWER SPECTRUM and LAG
  • EFFECTS
  • IRRADIATION with TEST DEVICE in the RADIATION BEAM
  • Overview of all necessary IRRADIATIONS Corrections of RAW DATA
  • Determination of the DETECTIVE QUANTUM EFFICIENCY
  • Definition and formula of DQE(u,v)
  • Parameters to be used for evaluation
  • Determination of different parameters from the images
  • Linearization of data
  • The LAG EFFECTS corrected NOISE POWER SPECTRUM (NPS)
  • Determination of the MODULATION TRANSFER FUNCTION (MTF
  • Format of conformance statement
  • Accuracy
  • Annex A (informative) Determination of LAG EFFECTS
  • Annex B (informative) Calculation of the input NOISE POWER SPECTRUM
  • Bibliography
  • Index of defined terms