Cargando…

Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules

OBJECTIVE: Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a new quantitative technique to measure tissue stiffness. The study was aimed to assess the usefulness of VTQ in the diagnosis of thyroid nodules. METHODS: 173 pathologically proven thyroid nodules in...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Yi-Feng, Xu, Hui-Xiong, He, Yong, Liu, Chang, Guo, Le-Hang, Liu, Lin-Na, Xu, Jun-Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496737/
https://www.ncbi.nlm.nih.gov/pubmed/23152855
http://dx.doi.org/10.1371/journal.pone.0049094
_version_ 1782249675042062336
author Zhang, Yi-Feng
Xu, Hui-Xiong
He, Yong
Liu, Chang
Guo, Le-Hang
Liu, Lin-Na
Xu, Jun-Mei
author_facet Zhang, Yi-Feng
Xu, Hui-Xiong
He, Yong
Liu, Chang
Guo, Le-Hang
Liu, Lin-Na
Xu, Jun-Mei
author_sort Zhang, Yi-Feng
collection PubMed
description OBJECTIVE: Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a new quantitative technique to measure tissue stiffness. The study was aimed to assess the usefulness of VTQ in the diagnosis of thyroid nodules. METHODS: 173 pathologically proven thyroid nodules in 142 patients were included and all were examined by conventional ultrasound (US), conventional elasticity imaging (EI) and VTQ of ARFI. The tissue stiffness for VTQ was expressed as shear wave velocity (SWV) (m/s). Receiver-operating characteristic curve (ROC) analyses were performed to assess the diagnostic performance. Intra- and inter-observer reproducibility of VTQ measurement was assessed. RESULTS: The SWVs of benign and malignant thyroid nodules were 2.34±1.17 m/s (range: 0.61–9.00 m/s) and 4.82±2.53 m/s (range: 2.32–9.00 m/s) respectively (P<0.001). The mean SWV ratios between each nodule and the adjacent thyroid tissue were 1.19±0.67 (range: 0.31–6.87) for benign and 2.50±1.54 (range: 0.85–6.69) for malignant nodules (P<0.001). ROC analyses indicated that the area under the curve was 0.861 (95% CI : 0.804, 0.918) (P<0.001) for SWV and 0.831(95% CI : 0.761, 0.900)(P<0.001) for the SWV ratio. The cutoff points for the differential diagnosis were 2.87 m/s for SWV and 1.59 for SWV ratio. The sensitivity, specificity, accuracy, positive predictive value, and negative predictive value for EI were 65.9%, 66.7%, 66.5%, 40.3%, and 85.1%, respectively, and were 63.6%–75%, 82.2%–88.4%, 80.3%–82.1%, 58.9%–65.1%, and 87.7%–90.5%, respectively, for VTQ. The diagnostic value of VTQ is the highest for nodules >20 mm and lowest for those ≤10 mm. The correlation coefficients were 0.904 for intraobserver measurement and 0.864 for interobserver measurement. CONCLUSIONS: VTQ of ARFI provides quantitative and reproducible information about the tissue stiffness, which is useful for the differentiation between benign and malignant thyroid nodules. The diagnostic performance of VTQ is higher than that of conventional EI.
format Online
Article
Text
id pubmed-3496737
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34967372012-11-14 Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules Zhang, Yi-Feng Xu, Hui-Xiong He, Yong Liu, Chang Guo, Le-Hang Liu, Lin-Na Xu, Jun-Mei PLoS One Research Article OBJECTIVE: Virtual touch tissue quantification (VTQ) of acoustic radiation force impulse (ARFI) is a new quantitative technique to measure tissue stiffness. The study was aimed to assess the usefulness of VTQ in the diagnosis of thyroid nodules. METHODS: 173 pathologically proven thyroid nodules in 142 patients were included and all were examined by conventional ultrasound (US), conventional elasticity imaging (EI) and VTQ of ARFI. The tissue stiffness for VTQ was expressed as shear wave velocity (SWV) (m/s). Receiver-operating characteristic curve (ROC) analyses were performed to assess the diagnostic performance. Intra- and inter-observer reproducibility of VTQ measurement was assessed. RESULTS: The SWVs of benign and malignant thyroid nodules were 2.34±1.17 m/s (range: 0.61–9.00 m/s) and 4.82±2.53 m/s (range: 2.32–9.00 m/s) respectively (P<0.001). The mean SWV ratios between each nodule and the adjacent thyroid tissue were 1.19±0.67 (range: 0.31–6.87) for benign and 2.50±1.54 (range: 0.85–6.69) for malignant nodules (P<0.001). ROC analyses indicated that the area under the curve was 0.861 (95% CI : 0.804, 0.918) (P<0.001) for SWV and 0.831(95% CI : 0.761, 0.900)(P<0.001) for the SWV ratio. The cutoff points for the differential diagnosis were 2.87 m/s for SWV and 1.59 for SWV ratio. The sensitivity, specificity, accuracy, positive predictive value, and negative predictive value for EI were 65.9%, 66.7%, 66.5%, 40.3%, and 85.1%, respectively, and were 63.6%–75%, 82.2%–88.4%, 80.3%–82.1%, 58.9%–65.1%, and 87.7%–90.5%, respectively, for VTQ. The diagnostic value of VTQ is the highest for nodules >20 mm and lowest for those ≤10 mm. The correlation coefficients were 0.904 for intraobserver measurement and 0.864 for interobserver measurement. CONCLUSIONS: VTQ of ARFI provides quantitative and reproducible information about the tissue stiffness, which is useful for the differentiation between benign and malignant thyroid nodules. The diagnostic performance of VTQ is higher than that of conventional EI. Public Library of Science 2012-11-13 /pmc/articles/PMC3496737/ /pubmed/23152855 http://dx.doi.org/10.1371/journal.pone.0049094 Text en © 2012 Zhang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhang, Yi-Feng
Xu, Hui-Xiong
He, Yong
Liu, Chang
Guo, Le-Hang
Liu, Lin-Na
Xu, Jun-Mei
Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title_full Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title_fullStr Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title_full_unstemmed Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title_short Virtual Touch Tissue Quantification of Acoustic Radiation Force Impulse: A New Ultrasound Elastic Imaging in the Diagnosis of Thyroid Nodules
title_sort virtual touch tissue quantification of acoustic radiation force impulse: a new ultrasound elastic imaging in the diagnosis of thyroid nodules
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496737/
https://www.ncbi.nlm.nih.gov/pubmed/23152855
http://dx.doi.org/10.1371/journal.pone.0049094
work_keys_str_mv AT zhangyifeng virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT xuhuixiong virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT heyong virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT liuchang virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT guolehang virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT liulinna virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules
AT xujunmei virtualtouchtissuequantificationofacousticradiationforceimpulseanewultrasoundelasticimaginginthediagnosisofthyroidnodules