1. The effect of water intake on ultrasound tissue characteristics and hemodynamics of adult livers
- Author
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Rebecca Lee, Jason Lee, Todd Erpelding, Roger L. Siddoway, and Jing Gao
- Subjects
shear wave elastography ,Original Paper ,Hepatology ,medicine.diagnostic_test ,ultrasound ,business.industry ,Ultrasound ,Diastole ,Repeated measures design ,Hemodynamics ,liver ,medicine.anatomical_structure ,Medicine ,Elastography ,Water intake ,business ,Nuclear medicine ,Body mass index ,Doppler sonography ,Artery - Abstract
Aim of the study To assess the effect of water intake on ultrasound tissue characteristics and hemodynamics of adult livers. Material and methods In February 2020, we prospectively performed ultrasound shear wave elastography and attenuation imaging (ATI) of the liver parenchyma, and spectral Doppler sonography of the portal vein and hepatic artery in 19 adult healthy volunteers (10 men and 9 women, mean age 27 years, mean body mass index 24.65 kg/m2). We measured liver shear wave velocity (SWV, m/s), shear wave dispersion (SWD, m/s/kHz), attenuation coefficient (dB/cm/MHz), main portal vein velocity (PVV, cm/s), hepatic artery peak systolic velocity (PSV, cm/s), and end diastolic velocity (EDV, cm/s) immediately before and at different time points (15, 30, 45, and 60 minutes) after water intake (1.0 l water and 1.5 l water for body weight < 150 lbs. and ≥ 150 lbs., respectively). Results The differences in SWV, PVV, hepatic artery PSV and EDV before and after water intake were significant (p < 0.01) whereas the differences in SWD and ATI were not (p > 0.05) based on repeated measures ANOVA tests. The values of SWV, PVV, PSV, and EDV reached a peak at 30-45 minutes and returned to baseline 60 minutes after water intake. We observed positive correlations of SWV with PVV, PSV, and EDV in linear regression analyses (r2 > 0.73). Conclusions Water intake affects the liver stiffness and hemodynamics. No water intake at least one hour prior to liver ultrasound elastography and Doppler sonography is recommended.
- Published
- 2021
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