| Literature DB >> 24361222 |
Teresa Fontanilla1, Teresa Cañas2, Araceli Macia3, Marta Alfageme4, Carolina Gutierrez Junquera5, Ana Malalana5, Maria Luz Cilleruelo5, Enriqueta Roman5, Maria Miralles4.
Abstract
Acoustic radiation force impulse (ARFI) is an image-guided ultrasound elastography method that allows quantification of liver stiffness by measurement of shear wave velocity. One purpose of the work described in this article was to determine the normal liver stiffness values of healthy children using ARFI with two different probes, 4 C1 and 9 L4. Another purpose was to evaluate the effects of site of measurement, age, gender and body mass index on liver stiffness values. This prospective study included 60 healthy children (newborn to 14 y) divided into four age groups. One thousand two hundred ARFI measurements were performed, that is, 20 measurements per patient (5 measurements in each lobe, with each probe). Means, standard deviations (SD) and confidence intervals for velocity were calculated for each hepatic lobe and each probe in each age group and for the whole group. Mean shear wave velocity measured in the right lobe was 1.19 ± 0.04 m/s (SD = 0.13) with the 4 C1 transducer and 1.15 ± 0.04 m/s (SD = 0.15) with the 9 L4 transducer. Age had a small effect on shear wave measurements. Body mass index and sex had no significant effects on ARFI values, whereas site of measurement had a significant effect, with lower ARFI values in the right hepatic lobe. ARFI is a non-invasive technique that is feasible to perform in children with both the 4 C1 and 9 L4 probes. The aforementioned velocity values obtained in the right lobe may be used as reference values for normal liver stiffness in children. Published by Elsevier Inc.Entities:
Keywords: Acoustic radiation force impulse; Children; Convex probe; Linear probe; Liver elastography; Shear wave velocity; Ultrasound
Mesh:
Year: 2013 PMID: 24361222 DOI: 10.1016/j.ultrasmedbio.2013.10.024
Source DB: PubMed Journal: Ultrasound Med Biol ISSN: 0301-5629 Impact factor: 2.998