TY - JOUR
T1 - Validation of Endoscopic Ultrasound Measured Flow Rate in the Azygos Vein Using a Flow Phantom
AU - Hoskins, Peter
AU - Anderson, Thomas
AU - Inglis, S.
AU - Fortune, S.
AU - Soldan, M.
AU - Plevris, John
PY - 2010/11
Y1 - 2010/11
N2 - Increase in flow rate within the azygos vein may be used as an indicator of the degree of liver cirrhosis. The aim of this study was to evaluate the error in measurement of flow rate using a commercial endoscopic ultrasound system, using a flow phantom that mimicked azygos vein depth, diameter and flow rate. Diameter was underestimated in all cases, with an average underestimation of 0.09 cm. Maximum velocity was overestimated, by 4 +/- 4% at 50 degrees, 11 +/- 3% at 60 degrees and 23 +/- 7% at 70 degrees. The increase in error with beam-vessel angle is consistent with the error as arising from geometric spectral broadening. Flow was underestimated by amounts up to 33%, and it is noted that the overestimation caused by geometric spectral broadening is in part compensated by underestimation of diameter. It was concluded that measurement of flow rate using a commercially available endoscopic ultrasound system is dependent on the beam-vessel angle, with errors up to 33% for typical vessel depths, diameter and beam-vessel angle. ( E-mail: P. [email protected]) (C) 2010 World Federation for Ultrasound in Medicine & Biology.
AB - Increase in flow rate within the azygos vein may be used as an indicator of the degree of liver cirrhosis. The aim of this study was to evaluate the error in measurement of flow rate using a commercial endoscopic ultrasound system, using a flow phantom that mimicked azygos vein depth, diameter and flow rate. Diameter was underestimated in all cases, with an average underestimation of 0.09 cm. Maximum velocity was overestimated, by 4 +/- 4% at 50 degrees, 11 +/- 3% at 60 degrees and 23 +/- 7% at 70 degrees. The increase in error with beam-vessel angle is consistent with the error as arising from geometric spectral broadening. Flow was underestimated by amounts up to 33%, and it is noted that the overestimation caused by geometric spectral broadening is in part compensated by underestimation of diameter. It was concluded that measurement of flow rate using a commercially available endoscopic ultrasound system is dependent on the beam-vessel angle, with errors up to 33% for typical vessel depths, diameter and beam-vessel angle. ( E-mail: P. [email protected]) (C) 2010 World Federation for Ultrasound in Medicine & Biology.
UR - http://www.scopus.com/inward/record.url?scp=77958168122&partnerID=8YFLogxK
U2 - 10.1016/j.ultrasmedbio.2010.06.018
DO - 10.1016/j.ultrasmedbio.2010.06.018
M3 - Article
SN - 0301-5629
VL - 36
SP - 1957
EP - 1964
JO - Ultrasound in Medicine and Biology (UMB)
JF - Ultrasound in Medicine and Biology (UMB)
IS - 11
ER -