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Gray Scale Ultrasound Phantom Model 047
For evaluating resolving power as a function of depth, size, and contrast.
Features
21 Testing objects: Diameters: 2.4, 4, & 6.4 mm
Contrast: Anechoic, -9, -6, -3, +3, +6, +9 dBDepth of test object varies continuously as phantom
is scanned laterallyScatter controlled independently from attenuation
Carry case included
Introducing a new design using proven, patented materials to permit rapid visualization of gray scale resolution power at continuous depths from 1 to 12 cm. Model 047 is a single simple tool to assess resolution of masses varying in size, depth and contrast. The Model 047 is usable on all diagnostic ultrasound machines thus allowing user evaluation of gray scale sensitivity with a wide range of transducer frequencies. This phantom is an ideal training tool for learning optimum system setup and evaluating system performance.
Masses may be viewed with either a circular or elliptical cross-section. The mass diameters were selected so the volume imaged would double as the diameter increased. The gray-scale levels were selected to achieve a doubling in signal intensity as you move from mass to mass. The anechoic masses comply with the ACR accreditation program.
Model 047 Specifications:
Dimensions:
35 cm x 13 cm x 17 cmWeight: 23 lbs.
Scanning Well: 1 cm deep
Material:
Zerdine®, solid elastic water-based polymer Freezing Point: 00 C,
Melting Point: Above 1000 CScanning Membrane: Saran-based laminate
Background:
Attenuation Coefficient:
0.50 dB/cm/MHz± 0.05 dB/cm/MHzSpeed of Sound: 1540 m/s ± 6 m/s
Contrast: 0 dB
Targets
Attenuation Coefficient:
0.50 dB/cm/MHz ± 0.05 dB/cm/MHzSpeed of Sound: 1540 m/s
Contrast: anechoic, -9, -6, -3, +3, +6, +9 dB
Diameters: 2.4, 4, and 6.4 mm
Depth Range:
3 mm: 1 cm - 6 cm
4 mm: 2 cm - 9 cm
6 mm: 3 cm - 12 cm
Gray Scale Phantom Procedure
For each probe combination scan laterally to detect maximum frequency of visualization.
Freeze image, measure depth from scan surface to top of target of last visualization.
Test objects have same speed and attenuation as background
Masses are angled for continuous assessment over a range of depth.
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