To access the full text documents, please follow this link: http://hdl.handle.net/2445/125608

Clinical feasibility of quantitative ultrasound texture analysis: A robustness study using fetal lung ultrasound images
Pérez Moreno, Álvaro; Dominguez, Mara; Migliorelli, Federico; Gratacós Solsona, Eduard; Palacio i Riera, Montserrat; Bonet Carné, Elisenda
OBJECTIVES: To compare the robustness of several methods based on quantitative ultrasound (US) texture analysis to evaluate its feasibility for extracting features from US images to use as a clinical diagnostic tool. METHODS: We compared, ranked, and validated the robustness of 5 texture-based methods for extracting textural features from US images acquired under different conditions. For comparison and ranking purposes, we used 13,171 non-US images from widely known available databases (OUTEX [University of Oulu, Oulu, Finland] and PHOTEX [Texture Lab, Heriot-Watt University, Edinburgh, Scotland]), which were specifically acquired under different controlled parameters (illumination, resolution, and rotation) from 103 textures. The robustness of those methods with better results from the non-US images was validated by using 666 fetal lung US images acquired from singleton pregnancies. In this study, 2 similarity measurements (correlation and Chebyshev distances) were used to evaluate the repeatability of the features extracted from the same tissue images. RESULTS: Three of the 5 methods (gray-level co-occurrence matrix, local binary patterns, and rotation-invariant local phase quantization) had favorably robust performance when using the non-US database. In fact, these methods showed similarity values close to 0 for the acquisition variations and delineations. Results from the US database confirmed robustness for all of the evaluated methods (gray-level co-occurrence matrix, local binary patterns, and rotation-invariant local phase quantization) when comparing the same texture obtained from different regions of the image (proximal/distal lungs and US machine brand stratification). CONCLUSIONS: Our results confirmed that texture analysis can be robust (high similarity for different condition acquisitions) with potential to be included as a clinical tool.
-Ecografia fetal
-Fetal ultrasonic imaging
(c) American Institute of Ultrasound in Medicine, 2018
Article
Article - Accepted version
American Institute of Ultrasound in Medicine
         

Show full item record

Related documents

Other documents of the same author

Perez Moreno, Álvaro; Dominguez, Mara; Migliorelli, Federico; Gratacós Solsona, Eduard; Palacio i Riera, Montserrat; Bonet Carné, Elisenda
Palacio i Riera, Montserrat; Bonet Carné, Elisenda; Cobo Cobo, María Teresa; Pérez Moreno, Álvaro; Sabrià Rius, Joan; Richter, Jute; Kacerovsky, Marian; Jacobsson, Bo; García Posada, Raúl A.; Bugatto, Fernando; Santisteve, Ramon; Vives, Àngels; Parra Cordero, Mauro C.; Hernández Andrade, Edgar; Bartha, José Luis; Carretero Lucena, Pilar; Tan, Kai L.; Cruz Martínez, Rogelio; Burke, Minke; Vavilala, Suseela; Iruretagoyena, Igor; Delgado, Juan Luis; Schenone, Mauro; Vilanova, Josep; Botet Mussons, Francisco; Yeo, George SH.; Hyett, Jon; Deprest, Jan; Romero, Roberto; Gratacós Solsona, Eduard; Fetal Lung Texture Team.
Sanz-Cortes; Ratta, Giuseppe A.; Figueras Retuerta, Francesc; Bonet Carné, Elisenda; Padilla Gomes, Nelly; Arranz Betegón, Ángela; Bargalló Alabart, Núria​; Gratacós Solsona, Eduard
Sanz Cortés, Magdalena; Ratta, Giuseppe A.; Figueras Retuerta, Francesc; Bonet Carné, Elisenda; Padilla Gomes, Nelly; Arranz Betegón, Ángela; Bargalló Alabart, Núria​; Gratacós Solsona, Eduard
Cobo Cobo, María Teresa; Jacobsson, Bo; Kacerovsky, Marian; Hougaard, David M.; Skogstrand, Kristin; Gratacós Solsona, Eduard; Palacio i Riera, Montserrat
 

Coordination

 

Supporters