IEC 61391-1:2017
Ultrasonics - Pulse-echo scanners - Part 1: Techniques for calibrating spatial measurement systems and measurement of system point-spread function response

Standard No.
IEC 61391-1:2017
Release Date
2017
Published By
International Electrotechnical Commission (IEC)
Status
 2017-07
Replace By
IEC 61391-1:2006/AMD1:2017
Latest
IEC 61391-1:2006/AMD1:2017
Scope
This International Standard describes methods of calibrating the spatial measurement facilities and point-spread function of ultrasonic imaging equipment in the ultrasonic frequency range 0,5 MHz to 15 MHz. This standard is relevant for ultrasonic scanners based on the pulse-echo principle of the types listed below: mechanical sector scanners; electronic phased-array sector scanners; electronic linear-array scanners; electronic curved-array sector scanners; water-bath scanners based on any of the above four scanning mechanisms; 3D-volume reconstruction systems.

IEC 61391-1:2017 Referenced Document

  • IEC 60050-801:1994 International Electrotechnical Vocabulary - Chapter 801: Acoustics and electroacoustics
  • IEC 60050-802:2011 International Electrotechnical Vocabulary - Part 802: Ultrasonics
  • IEC 61685:2001 Ultrasonics - Flow Measurement Systems - Flow Test Object (Edition 1.0)
  • IEC 62127-1:2007 Ultrasonics - Hydrophones - Part 1: Measurement and characterization of medical ultrasonic fields up to 40 MHz

IEC 61391-1:2017 history

  • 2017 IEC 61391-1:2006/AMD1:2017 Ultrasonics - Pulse-echo scanners - Part 1: Techniques for calibrating spatial measurement systems and measurement of system point-spread function response
  • 2017 IEC 61391-1:2017 Ultrasonics - Pulse-echo scanners - Part 1: Techniques for calibrating spatial measurement systems and measurement of system point-spread function response
  • 2006 IEC 61391-1:2006 Ultrasonics - Pulse echo scanners - Part 1: Techniques for calibrating spatial measurement systems and measurement of system point-spread function response
Ultrasonics - Pulse-echo scanners - Part 1: Techniques for calibrating spatial measurement systems and measurement of system point-spread function response



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