An evaluation of the reproducibility and responsiveness of four 'state-of-the-art' ultrasonic heel bone measurement systems using phantoms

This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms, ranging in porosity from 50% to 83%, were used to evaluate the range of values of broadband ultrasonic attenuation (BUA), speed of sound (SOS) and...

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Published inOsteoporosis international Vol. 8; no. 2; pp. 104 - 109
Main Authors STRELITZKI, R, TRUSCOTT, J. G
Format Journal Article
LanguageEnglish
Published London Springer 01.01.1998
Springer Nature B.V
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Abstract This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms, ranging in porosity from 50% to 83%, were used to evaluate the range of values of broadband ultrasonic attenuation (BUA), speed of sound (SOS) and Stiffness/quantitative ultrasound index (where available) from each machine. Differences in inter-system variability between the lowest and highest porosity phantoms up to a factor of 3.8 were demonstrated. The reproducibility of each system was measured using a single phantom and gave values of 0.03-0.15% for SOS, 0.39-1.6% for BUA and 0.73-1.11% for Stiffness. This contrasted with values of range normalized standard deviation (CX) of 0.2-1.19% for SOS, 0.71-1.86% for BUA and 0.83-1.12% for Stiffness when the output range of the measurement is taken into account. Measures of all quantities differed between machines and care should be taken when expressing and comparing results from different systems.
AbstractList This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms, ranging in porosity from 50% to 83%, were used to evaluate the range of values of broadband ultrasonic attenuation (BUA), speed of sound (SOS) and Stiffness/quantitative ultrasound index (where available) from each machine. Differences in inter-system variability between the lowest and highest porosity phantoms up to a factor of 3.8 were demonstrated. The reproducibility of each system was measured using a single phantom and gave values of 0.03-0.15% for SOS, 0.39-1.6% for BUA and 0.73-1.11% for Stiffness. This contrasted with values of range normalized standard deviation (CX) of 0.2-1.19% for SOS, 0.71-1.86% for BUA and 0.83-1.12% for Stiffness when the output range of the measurement is taken into account. Measures of all quantities differed between machines and care should be taken when expressing and comparing results from different systems.
This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms, ranging in porosity from 50% to 83%, were used to evaluate the range of values of broadband ultrasonic attenuation (BUA), speed of sound (SOS) and Stiffness/quantitative ultrasound index (where available) from each machine. Differences in inter-system variability between the lowest and highest porosity phantoms up to a factor of 3.8 were demonstrated. The reproducibility of each system was measured using a single phantom and gave values of 0.03-0.15% for SOS, 0.39-1.6% for BUA and 0.73-1.1% for Stiffness. This contrasted with values of range normalized standard deviation (CX) of 0.2-:1.19% for SOS, 0.71%ndash; 1.86% for BUA and 0.83-1.12% for Stiffness when the output range of the measurement is taken into account. Measures of all quantities differed between machines and care should be taken when expressing and comparing results from different systems.
This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms, ranging in porosity from 50% to 83%, were used to evaluate the range of values of broadband ultrasonic attenuation (BUA), speed of sound (SOS) and Stiffness/quantitative ultrasound index (where available) from each machine. Differences in inter-system variability between the lowest and highest porosity phantoms up to a factor of 3.8 were demonstrated. The reproducibility of each system was measured using a single phantom and gave values of 0.03-0.15% for SOS, 0.39-1.6% for BUA and 0.73-1.11% for Stiffness. This contrasted with values of range normalized standard deviation (CX) of 0.2-1.19% for SOS, 0.71-1.86% for BUA and 0.83-1.12% for Stiffness when the output range of the measurement is taken into account. Measures of all quantities differed between machines and care should be taken when expressing and comparing results from different systems.[PUBLICATION ABSTRACT]
Author TRUSCOTT, J. G
STRELITZKI, R
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Issue 2
Keywords Sonography
Methodology
Ultrasound imaging
Heel
Lower limb
Calcaneum
Density
Foot
Osteoarticular system
Reproducibility
Models
Bone
Technique
Technical equipment
Quantitative analysis
Test object
Language English
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PublicationTitle Osteoporosis international
PublicationTitleAlternate Osteoporos Int
PublicationYear 1998
Publisher Springer
Springer Nature B.V
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– ident: BF02672504_CR9
– ident: BF02672504_CR8
– volume: 39
  start-page: 1677
  year: 1994
  ident: BF02672504_CR7
  publication-title: Phys Med Biol
  doi: 10.1088/0031-9155/39/10/011
  contributor:
    fullname: AJ Clarke
– volume: 16
  start-page: 65
  year: 1994
  ident: BF02672504_CR18
  publication-title: Ultrasonic Imaging
  doi: 10.1006/uimg.1994.1004
  contributor:
    fullname: P Laugier
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Snippet This paper evaluates four modern ultrasonic heel bone scanners: the Osteometer DTU-one, Hologic Sahara, CUBA Clinical and Lunar Achilles+. Six phantoms,...
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StartPage 104
SubjectTerms Biological and medical sciences
Bone and Bones - diagnostic imaging
Evaluation Studies as Topic
Heel - diagnostic imaging
Investigative techniques, diagnostic techniques (general aspects)
Joints
Medical sciences
Phantoms, Imaging
Reproducibility of Results
Standard deviation
Ultrasonic investigative techniques
Ultrasonography - instrumentation
Title An evaluation of the reproducibility and responsiveness of four 'state-of-the-art' ultrasonic heel bone measurement systems using phantoms
URI https://www.ncbi.nlm.nih.gov/pubmed/9666931
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