Literature DB >> 29993996

Pulmonary Artery-Vein Classification in CT Images Using Deep Learning.

Pietro Nardelli, Daniel Jimenez-Carretero, David Bermejo-Pelaez, George R Washko, Farbod N Rahaghi, Maria J Ledesma-Carbayo, Raul San Jose Estepar.   

Abstract

Recent studies show that pulmonary vascular diseases may specifically affect arteries or veins through different physiologic mechanisms. To detect changes in the two vascular trees, physicians manually analyze the chest computed tomography (CT) image of the patients in search of abnormalities. This process is time consuming, difficult to standardize, and thus not feasible for large clinical studies or useful in real-world clinical decision making. Therefore, automatic separation of arteries and veins in CT images is becoming of great interest, as it may help physicians to accurately diagnose pathological conditions. In this paper, we present a novel, fully automatic approach to classify vessels from chest CT images into arteries and veins. The algorithm follows three main steps: first, a scale-space particles segmentation to isolate vessels; then a 3-D convolutional neural network (CNN) to obtain a first classification of vessels; finally, graph-cuts' optimization to refine the results. To justify the usage of the proposed CNN architecture, we compared different 2-D and 3-D CNNs that may use local information from bronchus- and vessel-enhanced images provided to the network with different strategies. We also compared the proposed CNN approach with a random forests (RFs) classifier. The methodology was trained and evaluated on the superior and inferior lobes of the right lung of 18 clinical cases with noncontrast chest CT scans, in comparison with manual classification. The proposed algorithm achieves an overall accuracy of 94%, which is higher than the accuracy obtained using other CNN architectures and RF. Our method was also validated with contrast-enhanced CT scans of patients with chronic thromboembolic pulmonary hypertension to demonstrate that our model generalizes well to contrast-enhanced modalities. The proposed method outperforms state-of-the-art methods, paving the way for future use of 3-D CNN for artery/vein classification in CT images.

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Year:  2018        PMID: 29993996      PMCID: PMC6214740          DOI: 10.1109/TMI.2018.2833385

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  19 in total

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Journal:  J Comput Assist Tomogr       Date:  2016 Nov/Dec       Impact factor: 1.826

Review 2.  A review of 3D vessel lumen segmentation techniques: models, features and extraction schemes.

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Journal:  Med Image Anal       Date:  2009-08-12       Impact factor: 8.545

3.  Computed tomographic measures of pulmonary vascular morphology in smokers and their clinical implications.

Authors:  Raúl San José Estépar; Gregory L Kinney; Jennifer L Black-Shinn; Russell P Bowler; Gordon L Kindlmann; James C Ross; Ron Kikinis; Meilan K Han; Carolyn E Come; Alejandro A Diaz; Michael H Cho; Craig P Hersh; Joyce D Schroeder; John J Reilly; David A Lynch; James D Crapo; J Michael Wells; Mark T Dransfield; John E Hokanson; George R Washko
Journal:  Am J Respir Crit Care Med       Date:  2013-07-15       Impact factor: 21.405

4.  Pulmonary vascular morphology as an imaging biomarker in chronic thromboembolic pulmonary hypertension.

Authors:  F N Rahaghi; J C Ross; M Agarwal; G González; C E Come; A A Diaz; G Vegas-Sánchez-Ferrero; A Hunsaker; R San José Estépar; A B Waxman; G R Washko
Journal:  Pulm Circ       Date:  2016-03       Impact factor: 3.017

5.  Morphometry of the human pulmonary vasculature.

Authors:  W Huang; R T Yen; M McLaurine; G Bledsoe
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Review 6.  Deep learning.

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Review 7.  Quantitative computed tomography of chronic obstructive pulmonary disease.

Authors:  Harvey O Coxson; Robert M Rogers
Journal:  Acad Radiol       Date:  2005-11       Impact factor: 3.173

8.  Lung extraction, lobe segmentation and hierarchical region assessment for quantitative analysis on high resolution computed tomography images.

Authors:  James C Ross; Raúl San José Estépar; Alejandro Díaz; Carl-Fredrik Westin; Ron Kikinis; Edwin K Silverman; George R Washko
Journal:  Med Image Comput Comput Assist Interv       Date:  2009

9.  A new paradigm of interactive artery/vein separation in noncontrast pulmonary CT imaging using multiscale topomorphologic opening.

Authors:  Zhiyun Gao; Randall W Grout; Colin Holtze; Eric A Hoffman; Punam K Saha
Journal:  IEEE Trans Biomed Eng       Date:  2012-08-10       Impact factor: 4.538

10.  Automatic multiscale enhancement and segmentation of pulmonary vessels in CT pulmonary angiography images for CAD applications.

Authors:  Chuan Zhou; Heang-Ping Chan; Berkman Sahiner; Lubomir M Hadjiiski; Aamer Chughtai; Smita Patel; Jun Wei; Jun Ge; Philip N Cascade; Ella A Kazerooni
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  35 in total

1.  SDFN: Segmentation-based deep fusion network for thoracic disease classification in chest X-ray images.

Authors:  Han Liu; Lei Wang; Yandong Nan; Faguang Jin; Qi Wang; Jiantao Pu
Journal:  Comput Med Imaging Graph       Date:  2019-05-28       Impact factor: 4.790

2.  Smaller Left Ventricle Size at Noncontrast CT Is Associated with Lower Mortality in COPDGene Participants.

Authors:  George R Washko; Pietro Nardelli; Samuel Y Ash; Farbod N Rahaghi; Gonzalo Vegas Sanchez-Ferrero; Carolyn E Come; Mark T Dransfield; Ravi Kalhan; MeiLan K Han; Surya P Bhatt; J Michael Wells; Carrie L Pistenmaa; Alejandro A Diaz; James C Ross; Stephen Rennard; Gabriela Querejeta Roca; Amil M Shah; Kendra Young; Gregory L Kinney; John E Hokanson; Alvar Agustí; Raúl San José Estépar
Journal:  Radiology       Date:  2020-05-05       Impact factor: 11.105

3.  Quantification and Significance of Pulmonary Vascular Volume in Predicting Response to Ultrasound-Facilitated, Catheter-Directed Fibrinolysis in Acute Pulmonary Embolism (SEATTLE-3D).

Authors:  Farbod N Rahaghi; Raúl San José Estépar; Samuel Z Goldhaber; Jasleen K Minhas; Pietro Nardelli; Gonzalo Vegas Sanchez-Ferrero; Isaac De La Bruere; Syed M Hassan; Stefanie Mason; Samuel Y Ash; Carolyn E Come; George R Washko; Gregory Piazza
Journal:  Circ Cardiovasc Imaging       Date:  2019-12-17       Impact factor: 7.792

4.  Pulmonary vascular density: comparison of findings on computed tomography imaging with histology.

Authors:  Farbod N Rahaghi; Gemma Argemí; Pietro Nardelli; David Domínguez-Fandos; Pedro Arguis; Víctor I Peinado; James C Ross; Samuel Y Ash; Isaac de La Bruere; Carolyn E Come; Alejandro A Diaz; Marcelo Sánchez; George R Washko; Joan Albert Barberà; Raúl San José Estépar
Journal:  Eur Respir J       Date:  2019-08-15       Impact factor: 16.671

5.  Arterial Vascular Pruning, Right Ventricular Size, and Clinical Outcomes in Chronic Obstructive Pulmonary Disease. A Longitudinal Observational Study.

Authors:  George R Washko; Pietro Nardelli; Samuel Y Ash; Gonzalo Vegas Sanchez-Ferrero; Farbod N Rahaghi; Carolyn E Come; Mark T Dransfield; Ravi Kalhan; MeiLan K Han; Surya P Bhatt; J Michael Wells; Carrie Pistenmaa Aaron; Alejandro A Diaz; James C Ross; Michael J Cuttica; Wassim W Labaki; Gabriela Querejeta Roca; Amil M Shah; Kendra Young; Gregory L Kinney; John E Hokanson; Alvar Agustí; Raúl San José Estépar
Journal:  Am J Respir Crit Care Med       Date:  2019-08-15       Impact factor: 21.405

6.  AI Techniques for COVID-19.

Authors:  Adedoyin Ahmed Hussain; Ouns Bouachir; Fadi Al-Turjman; Moayad Aloqaily
Journal:  IEEE Access       Date:  2020-07-08       Impact factor: 3.367

7.  Abdominal artery segmentation method from CT volumes using fully convolutional neural network.

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Journal:  Int J Comput Assist Radiol Surg       Date:  2019-09-06       Impact factor: 2.924

8.  Cerebral Artery and Vein Segmentation in Four-dimensional CT Angiography Using Convolutional Neural Networks.

Authors:  Midas Meijs; Sjoert A H Pegge; Maria H E Vos; Ajay Patel; Sil C van de Leemput; Kevin Koschmieder; Mathias Prokop; Frederick J A Meijer; Rashindra Manniesing
Journal:  Radiol Artif Intell       Date:  2020-07-29

Review 9.  A review of deep learning based methods for medical image multi-organ segmentation.

Authors:  Yabo Fu; Yang Lei; Tonghe Wang; Walter J Curran; Tian Liu; Xiaofeng Yang
Journal:  Phys Med       Date:  2021-05-13       Impact factor: 2.685

10.  Automated identification of pulmonary arteries and veins depicted in non-contrast chest CT scans.

Authors:  Jiantao Pu; Joseph K Leader; Jacob Sechrist; Cameron A Beeche; Jatin P Singh; Iclal K Ocak; Michael G Risbano
Journal:  Med Image Anal       Date:  2022-01-12       Impact factor: 8.545

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